Page last updated: 2024-12-06

tetrandrine

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Description

Tetrandrine is an alkaloid isolated from the roots of Stephania tetrandra, a plant traditionally used in Chinese medicine. It has been studied for its potential therapeutic properties in various diseases, including cancer, inflammation, and neurological disorders. Tetrandrine exhibits diverse pharmacological effects, including anti-inflammatory, antitumor, and neuroprotective activities. It has been shown to inhibit the growth of various cancer cells, suppress inflammation by inhibiting the production of inflammatory mediators, and protect neurons from damage caused by oxidative stress. The complex structure of tetrandrine poses challenges in its synthesis, and various synthetic approaches have been explored, including multi-step reactions and chiral resolution methods. Despite its potential therapeutic benefits, the clinical applications of tetrandrine are still under investigation, and further studies are needed to establish its safety and efficacy in humans.'

tetrandrine: a bisbenzylisoquinoline that exhibits antifibrogenic activity [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

Cross-References

ID SourceID
PubMed CID73078
CHEMBL ID176045
CHEBI ID49
SCHEMBL ID20119
MeSH IDM0054141

Synonyms (168)

Synonym
CBIOL_001914
MLS002153946 ,
BRD-K08078237-001-07-3
brd8237
brd-8237
nsc 91771
vs4w77h3sd ,
unii-vs4w77h3sd
berbaman, 6,6',7,12-trtramethoxy-2,2'-dimethyl-, (1beta)-(+-)-
tetrandrine, (+/-)-
dl-tetandrine
DIVK1C_006757
NCI60_041696
NCI60_042029
ff-0019
hanfangchin a
SDCCGMLS-0066758.P001
SPECTRUM_000315
BSPBIO_002297
BSPBIO_000739
BIO2_000679
BIO1_001178
BIO1_000689
BIO1_000200
BIO2_000199
PRESTWICK3_000670
d-tetrandrine
tetrandrin
NSC77037 ,
berbaman,6',7,12-tetramethoxy-2,2'-dimethyl-, (1.beta.)-
nsc-77037
nsc 77037
(.+-.)-tetrandrine
tetrandrine, (dl)
berbaman,6',7,12-trtramethoxy-2,2'-dimethyl-, (1.beta.)-(pm)-
(+-)-tetrandine
nsc-91771
BSPBIO_001479
PRESTWICK2_000670
IDI1_033949
HSCI1_000014
SPECTRUM5_001366
BPBIO1_000813
AB00513883
C09654
(+)-tetrandrine
518-34-3
tetrandrine
NSC91771 ,
23495-89-8
berbaman, 6,6',7,12-trtramethoxy-2,2'-dimethyl-, (1beta)-(pm)-
dl-tetrandine
(+/-)-tetrandine
MLS000728516
smr000445630
fanchinine
berbaman, 6,6',7,12-tetramethoxy-2,2'-dimethyl-, (1-beta)-
(s,s)-tetrandrine
(s,s)-(+)-tetrandrine
NCGC00142549-03
NCGC00142549-01
NCGC00142549-02
ccris 2705
sinomenine a
brn 0877811
berbaman, 6,6',7,12-tetramethoxy-2,2'-dimethyl-, (1beta)-
hanjisong
KBIO3_001517
KBIOGR_001178
KBIO2_005335
KBIO2_002767
KBIO2_003363
KBIO2_000795
KBIO1_001701
KBIO3_000397
KBIO2_000199
KBIO2_005931
KBIOSS_000795
KBIOGR_000199
KBIOSS_000199
KBIO3_000398
PRESTWICK0_000670
SPECPLUS_000661
SPECTRUM4_000619
SPBIO_002660
PRESTWICK1_000670
SPECTRUM2_000025
SPECTRUM3_000659
SPBIO_000089
SPECTRUM1504185
NCGC00142549-04
dl-tetrandrine
HMS1989J21
HMS1361J21
HMS1791J21
CHEMBL176045
chebi:49 ,
HMS1570E21
STK801908
(1beta)-6,6',7,12-tetramethoxy-2,2'-dimethylberbaman
AKOS004119881
NCGC00182717-01
NCGC00017376-06
NCGC00017376-05
NCGC00017376-04
NCGC00017376-02
NCGC00017376-03
HMS2097E21
TETRANDRINE - FANCHININE
s,s-(+)-tetrandrine
d-tetrandr
HMS2232C06
CCG-38342
unii-29ex23d5aj
29ex23d5aj ,
2-27-00-00889 (beilstein handbook reference)
s-(+)-tetrandrine
SR-01000779899-9
sr-01000779899
tetrandrine(fanchinine)
BCP0726000284
NCGC00017376-10
tetrandrine [who-dd]
tetrandrine [inci]
tetrandrine, (+)-
tetrandrine, d-
tetrandrine [mi]
(1.beta.)-6,6',7,12-tetramethoxy-2,2'-dimethylberbaman
CA-260
T3321
BBL029400
SCHEMBL20119
Q-100580
16h-1,24:6,9-dietheno-11,15-metheno-2h-pyrido[2',3':17,18][1,11]dioxacycloeicosino[2,3,4-ij]isoquinoline, 3,4,4a,5,16a,17,18,19-octahydro-12,21,22,26-tetramethoxy-4,17-dimethyl-, (4as,16as)-
WVTKBKWTSCPRNU-KYJUHHDHSA-N
(11s,31s)-16,36,37,54-tetramethoxy-12,32-dimethyl-11,12,13,14,31,32,33,34-octahydro-2,6-dioxa-1(7,1),3(8,1)-diisoquinolina-5(1,3),7(1,4)-dibenzenacyclooctaphane
HMS3402J21
DTXSID10178062
SR-01000779899-7
SR-01000779899-6
SR-01000779899-5
AC-7987
fanchinin
bdbm50478473
tetrandrine, european pharmacopoeia (ep) reference standard
tetrandrine, analytical standard, for drug analysis
(1s,14s)-9,20,21,25-tetramethoxy-15,30-dimethyl-7,23-dioxa-15,30-diazaheptacyc lo[22.6.2.2<3,6>.1<8,12>.1<14,18>.0<22,36>.0<27,31>]hexatriaconta-3(33),4,6(34 ),8(35),9,11,18(36),19,21,24,26,31-dodecaene
HY-13764
CS-0007782
tetrandine
(+/-)-tetrandrine
DTXSID70881383
tetrandrine (fanchinine)
S2403
DB14066
tetrandrine,(s)
AS-15343
Q7706612
16h-1,24:6,9-dietheno-11,15-metheno-2h-pyrido(2',3':17,18)(1,11)dioxacycloeicosino(2,3,4-ij)isoquinoline, 3,4,4a,5,16a,17,18,19-octahydro-12,21,22,26-tetramethoxy-4,17-dimethyl-, (4ar,16ar)-rel-
berbaman, 6,6',7,12-tetramethoxy-2,2'-dimethyl-, (1.beta.)-(+/-)-
BRD-K08078237-001-13-1
AMY507
A934539
NCGC00017376-12
(1s,14s)-9,20,21,25-tetramethoxy-15,30-dimethyl-7,23-dioxa-15,30-diazaheptacyclo[22.6.2.23,6.18,12.114,18.027,31.022,33]hexatriaconta-3(36),4,6(35),8,10,12(34),18,20,22(33),24,26,31-dodecaene
gtpl11859
6,6',7,12-tetramethoxy-2,2'-dimethyl-1-beta-berbaman
(1beta,1'xi)-6,6',7,12-tetramethoxy-2,2'-dimethylberbaman

Research Excerpts

Overview

Tetrandrine (TET) is a natural product isolated from the Chinese herb Stephania tetrandra S. It is known to be an antitumor drug, but little is known regarding its radiosensitization effect on nasopharyngeal carcinoma.

ExcerptReferenceRelevance
"Tetrandrine is a dibenzyltetrahydroisoquinoline alkaloid, isolated from traditional Chinese medicinal plant Stephania tetrandra, with anti-tumor activity. "( Design and synthesis of novel C
Ben-David, Y; Chen, C; Hu, S; Huang, L; Lan, J; Liu, T; Liu, Y; Lou, H; Luo, J; Pan, W; Song, J; Xia, B; Xia, L; Yao, Y; Zeng, X, 2018
)
1.92
"Tetrandrine(Tet) is an active ingredient extracted from the root of the Chinese medicinal plant Stephania tetrandra, which has been proved with a wide range of pharmacological effects including anti-tumor."( [Effects of tetrandrine on proliferation, migration, and invasion of glioblastoma cells].
Cui, HJ; Lu, XY; Wan, SC; Wang, ZZ; Zhao, EH, 2021
)
1.72
"Tetrandrine (Tet) is a small molecule in traditional Chinese medicine with proven primary efficacy against multiple cancers."( Enhanced Antitumor Efficacy of Novel Biomimetic Platelet Membrane-Coated Tetrandrine Nanoparticles in Nonsmall Cell Lung Cancer.
Chen, G; Fan, J; Jiang, H; Tang, C; Wang, L; Wang, Z; Wen, Y; Xu, H; Xu, M; Zhao, Q, 2023
)
1.86
"Tetrandrine is a bisbenzylisoquinoline alkaloid isolated from traditional herb Fangji."( Tetrandrine enhances glucocorticoid receptor translocation possibly via inhibition of P-glycoprotein in daunorubicin-resistant human T lymphoblastoid leukemia cells.
Chen, S; Hirano, T; Onda, K; Sugiyama, K; Tanaka, S; Wang, X; Wu, H; Xu, W; Yamada, H, 2020
)
2.72
"Tetrandrine (TET) is a typical dibenzylisoquinoline alkaloid with promising anti-tumor activity."( Discovery of tetrandrine derivatives as tumor migration, invasion and angiogenesis inhibitors.
Lan, JJ; Li, YJ; Liao, SG; Liu, JL; Pan, WD; Wang, L; Wang, S; Wang, YL; Xu, GB; Zhang, H; Zhang, RH; Zhao, YL; Zhou, M; Zhou, YH, 2020
)
1.65
"Tetrandrine is a natural metabolite isolated from herbal medicine Stephania tetrandra with various activities."( Tetrandrine ameliorated Alzheimer's disease through suppressing microglial inflammatory activation and neurotoxicity in the 5XFAD mouse.
Fu, Y; Jiang, C; Li, Z; Liu, J; Ren, D; Wang, H; Wang, L; Yuan, J; Zhong, X, 2021
)
2.79
"Tetrandrine (TET) is a natural product isolated from the Chinese herb Stephania tetrandra S. "( Tetrandrine inhibits the proliferation of human osteosarcoma cells by upregulating the PTEN pathway.
Chen, HQ; Deng, ZL; He, BC; Liu, Y; Luo, SH; Tian, DD; Wang, Y; Wu, N; Yuan, W; Zhang, RX, 2017
)
3.34
"Tetrandrine is known to be an antitumor drug, but little is known regarding its radiosensitization effect on nasopharyngeal carcinoma."( Tetrandrine enhances radiosensitivity through the CDC25C/CDK1/cyclin B1 pathway in nasopharyngeal carcinoma cells.
Chang, L; Huang, J; Huang, Z; Lai, X; Li, X; Wang, J; Wang, Z; Zhang, G, 2018
)
2.64
"Tetrandrine is a bisbenzylisoquinoline alkaloid isolated from the Chinese medicinal herb Stephania tetrandra S. "( The plant alkaloid tetrandrine inhibits metastasis via autophagy-dependent Wnt/β-catenin and metastatic tumor antigen 1 signaling in human liver cancer cells.
Li, K; Li, W; Liu, T; Yu, M; Zhang, Z, 2018
)
2.25
"Tetrandrine is an effective ingredient isolated from the roots of a frequently used medicinal plant Stephania tetrandra S. "(
Dai, Y; Dong, S; Hu, Q; Xia, Y; Yun, X, 2018
)
1.92
"Tetrandrine is a broadly used bisbenzylisoquinoline alkaloid component of traditional Chinese medicine that has antitumor effects in some cancer types. "( c-MYC and reactive oxygen species play roles in tetrandrine-induced leukemia differentiation.
Li, D; Li, H; Li, W; Li, Y; Liu, T; Wu, G, 2018
)
2.18
"Tetrandrine is a bisbenzylisoquinoline alkaloid known to exhibit anticancer activity against different cancers. "( Tetrandrine isolated from Cyclea peltata induces cytotoxicity and apoptosis through ROS and caspase pathways in breast and pancreatic cancer cells.
Chandrashekar, KR; N, B; Prabhu, A; Rekha, PD, 2019
)
3.4
"Tetrandrine is a cytotoxic compound capable of exerting remarkable antitumor activity against many cancer cells in vitro and in vivo. "( Tetrandrine triggers apoptosis and cell cycle arrest in human renal cell carcinoma cells.
Chen, T; Chen, Y; Ji, B, 2014
)
3.29
"Tetrandrine is an active constituent that is extracted from the root tuber of the Chinese herb Stephania tetrandra S. "( Preparation and characterization of tetrandrine-phospholipid complex loaded lipid nanocapsules as potential oral carriers.
Feng, NP; Liu, Y; Ma, C; Wang, LP; Zhao, K; Zhao, YQ, 2013
)
2.11
"Tetrandrine (TET) is a bisbenzylisoquinoline alkaloid that is isolated from the Stephania Tetrandra. "( Antinociceptive effect of tetrandrine on LPS-induced hyperalgesia via the inhibition of IKKβ phosphorylation and the COX-2/PGE₂ pathway in mice.
Li, H; Luo, F; Wan, J; Yi, Y; Zhang, L; Zhao, H, 2014
)
2.15
"Tetrandrine (TET) is a bisbenzylisoquinoline alkaloid extracted from Stephania tetrandra Moore. "( Tetrandrine suppresses lipopolysaccharide-induced microglial activation by inhibiting NF-κB and ERK signaling pathways in BV2 cells.
Dang, Y; Li, W; Sun, Y; Wu, W; Xu, Y; Yang, J; Zhang, C; Zhu, Y, 2014
)
3.29
"Tetrandrine (TTD) is a bis-benzylisoquinoline alkaloid isolated from the root of Stephania tetrandra (S, Moore) and is found to have a favorable effect against multidrug resistance (MDR) in chemotherapy."( Beneficial effect of tetrandrine on refractory epilepsy via suppressing P-glycoprotein.
Chen, Y; Hong, Z; Jiang, H; Wang, C; Xiao, X; Xu, G, 2015
)
1.46
"Tetrandrine is a bisbenzylisoquinoline alkaloid that was found in the Radix Stephania tetrandra S Moore. "( Tetrandrine induces apoptosis Via caspase-8, -9, and -3 and poly (ADP ribose) polymerase dependent pathways and autophagy through beclin-1/ LC3-I, II signaling pathways in human oral cancer HSC-3 cells.
Chang, SJ; Chen, JC; Chung, JG; Lin, MW; Lu, HF; Yang, JL; Yu, CS; Yu, FS, 2016
)
3.32
"Tetrandrine is a traditional Chinese medicinal herb extract with antitumor effects."( Tetrandrine induces autophagy and differentiation by activating ROS and Notch1 signaling in leukemia cells.
Huang, Z; Li, W; Liu, T; Liu, X; Men, Q; Wu, G; Yu, C, 2015
)
2.58
"Tetrandrine (TTD) is a calcium channel blocker with documented antifibrotic actions. "( Tetrandrine reverses human cardiac myofibroblast activation and myocardial fibrosis.
Belke, DD; Duff, HJ; Fedak, PW; Mewhort, HE; Svystonyuk, D; Teng, G; Turnbull, JD, 2015
)
3.3
"Tetrandrine is a natural chemical product purified from fourstamen stephania root which recently has been shown to act similarly as synthesized drug efflux pump inhibitor verapamil. "( Tetrandrine reverses drug resistance in isoniazid and ethambutol dual drug-resistant Mycobacterium tuberculosis clinical isolates.
Ji, Z; Li, L; Xu, K; Yan, J; Zhang, Z, 2015
)
3.3
"Tetrandrine is a diaryl ether-type bisbenzylisoquinoline alkaloid and has shown multiple pharmacological activities. "( CYP3A5 mediates bioactivation and cytotoxicity of tetrandrine.
Jiang, Y; Shen, Q; Shen, S; Tian, Y; Zeng, S; Zheng, J, 2016
)
2.13
"Tetrandrine is a bisbenzylisoquinoline alkaloid that can decrease blood pressure, inhibit the proliferation of vascular smooth muscle cells, and block cardiac hypertrophy, but whether it has a therapeutic effect on PAH remains poorly defined."( Tetrandrine prevents monocrotaline-induced pulmonary arterial hypertension in rats through regulation of the protein expression of inducible nitric oxide synthase and cyclic guanosine monophosphate-dependent protein kinase type 1.
Chen, C; Dong, W; Lin, X; Lv, S; Tong, G; Wang, X; Yang, D; Yang, Y, 2016
)
2.6
"Tetrandrine is an alkaloid constituent of the root of Stephania tetrandra S. "( Tetrandrine ameliorates collagen-induced arthritis in mice by restoring the balance between Th17 and Treg cells via the aryl hydrocarbon receptor.
Dai, Y; Dou, Y; Tong, B; Wei, Z; Wu, X; Yuan, X, 2016
)
3.32
"Tetrandrine is a major bisbenzylisoquinoline alkaloid isolated from Stephania tetrandrae S."( Tetrandrine suppresses articular inflammatory response by inhibiting pro-inflammatory factors via NF-κB inactivation.
Cui, YL; Feng, QS; Gao, LN; Wang, QS; Zhang, XF, 2016
)
2.6
"Tetrandrine is a bisbenzylisoquinoline alkaloid extracted from Stephania tetrandra, a traditional Chinese herbal medicine, which has been observed to exert anti‑inflammatory effects. "( Tetrandrine ameliorates sevoflurane‑induced cognitive impairment via the suppression of inflammation and apoptosis in aged rats.
Li, X; Ma, H; Pang, L; Yao, L; Yao, Q, 2016
)
3.32
"Tetrandrine is a bisbenzylisoquinoline alkaloid isolated from the roots of Stephania tetrandra S. "( Tetrandrine has anti-adipogenic effect on 3T3-L1 preadipocytes through the reduced expression and/or phosphorylation levels of C/EBP-α, PPAR-γ, FAS, perilipin A, and STAT-3.
Jang, BC, 2016
)
3.32
"Tetrandrine (TET) is a bis-benzylisoquinoline alkaloid, which is isolated from a Chinese medicinal herb with antioxidant and anti-inflammatory activities. "( Tetrandrine protects against oxygen-glucose-serum deprivation/reoxygenation-induced injury via PI3K/AKT/NF-κB signaling pathway in rat spinal cord astrocytes.
Bao, G; He, B; Li, C; Qi, L; Wang, N, 2016
)
3.32
"Tetrandrine (Tet) is a bis-benzylisoquinoline alkaloid."( TGF-β1/PTEN/PI3K signaling plays a critical role in the anti-proliferation effect of tetrandrine in human colon cancer cells.
Chen, QZ; He, BC; He, F; Hu, XL; Huang, M; Li, Y; Liu, RX; Ren, WY; Shao, Y; Sun, WJ; Wu, K; Zeng, YH; Zhou, LY, 2017
)
1.4
"Tetrandrine (Tet) is a Ca(2+) channel blocker and has antiarrhythmic effects. "( Inhibitory effects of tetrandrine on the Na(+) channel of human atrial fibrillation myocardium.
Chen, L; Li, QY; Li, ZW; Yang, Y; Zeng, XR, 2009
)
2.11
"Tetrandrine is a bisbenzylisoquinoline alkaloid isolated from the root of Stephania tetrandra."( Prenatal tetrandrine treatment can reverse the abnormal conditions in the lung of newborn with congenital diaphragmatic hernia.
Chen, Z; Ji, Y; Liu, W; Luo, M; Wang, X; Wang, Y; Xu, C, 2009
)
1.49
"Tetrandrine (Tet) is a bisbenzylisoquinoline alkaloid isolated from the root of Stephania tetrandra, which has been used in traditional Chinese medicine to treat patients with silicosis, asthma, and pulmonary hypertension, and others and can be used as a pulmonary therapeutic agent. "( Effect of prenatal tetrandrine administration on transforming growth factor-beta1 level in the lung of nitrofen-induced congenital diaphragmatic hernia rat model.
Chen, Z; Ji, Y; Liu, W; Wang, Y; Xiong, Z; Xu, C, 2009
)
2.12
"Tetrandrine is a radiosensitizer and also a multidrug resistance reversing agent."( The Potential of Tetrandrine against Gliomas.
Chen, Y; Tseng, SH, 2010
)
1.42
"Tetrandrine (TET) is a poorly water-soluble bisbenzylisoquinoline alkaloid. "( Preparation, characterization, pharmacokinetics and tissue distribution of solid lipid nanoparticles loaded with tetrandrine.
Cheng, G; Ji, Z; Li, S; Nie, X; Shi, Y; Zou, M, 2011
)
2.02
"Tetrandrine (TET) is a bis-benzylisoquinoline alkaloid derived from the radix of Stephania tetrandra S. "( The mechanism of antibacterial activity of tetrandrine against Staphylococcus aureus.
Han, SH; Kang, OH; Keum, JH; Kim, SB; Kim, YG; Kwon, DY; Lee, SH; Lee, YS; Mun, SH; Myung, NY; Park, CB; Seo, YS, 2012
)
2.08
"Tetrandrine citrate is a novel orally active tetrandrine salt with potent anti-tumor activity against IM-resistant K562 cells and CML cells. "( Tetrandrine citrate eliminates imatinib-resistant chronic myeloid leukemia cells in vitro and in vivo by inhibiting Bcr-Abl/β-catenin axis.
Chen, T; Gan, YC; Gu, Y; Tang, JF; Xie, YY; Xu, F; Xu, GB; Xu, RZ; Xu, XH; Zhao, XY; Zhou, H, 2012
)
3.26
"Tetrandrine (Tet) is an alkaloid isolated from the Chinese herb Radix of Stephaniae tetrandrae S Moore. "( Effects of tetrandrine on cardiac and vascular remodeling.
Rao, MR, 2002
)
2.15
"Tetrandrine is a principle from a traditional Chinese medicine of the root of Stephania tetrandra S Moore approved by State Drugs Administration of China as a new drug for the treatment of silicosis. "( Pharmacological actions of tetrandrine in inflammatory pulmonary diseases.
Bian, RL; Chen, JQ; Tang, HF; Xie, QM, 2002
)
2.05
"Tetrandrine (TET) is a well known naturally occurred nonspecific Ca(2+) channel blocker. "( Inhibitory effects of tetrandrine on the serum- and platelet-derived growth factor-BB-induced proliferation of rat aortic smooth muscle cells through inhibition of cell cycle progression, DNA synthesis, ERK1/2 activation and c-fos expression.
Du, GH; Fang, LH; Kim, TJ; Ku, BS; Ma, JJ; Yao, HY; Yun, YP; Zhang, YH, 2004
)
2.08
"Tetrandrine is an antitumor alkaloid isolated from the root of Stephania tetrandra. "( Tetrandrine induces early G1 arrest in human colon carcinoma cells by down-regulating the activity and inducing the degradation of G1-S-specific cyclin-dependent kinases and by inducing p53 and p21Cip1.
Hayward, L; Meng, LH; Pommier, Y; Shao, RG; Takemura, H; Zhang, H, 2004
)
3.21
"Tetrandrine is a bisbenzylisoquinoline alkaloid derived from the root of a Chinese herbal medicine Stephania tetrandra S. "( Tetrandrine inhibits activation of rat hepatic stellate cells stimulated by transforming growth factor-beta in vitro via up-regulation of Smad 7.
Chen, YW; Li, DG; Lu, HM; Wu, JX, 2005
)
3.21
"Tetrandrine is a potent abrogator for G2 checkpoint control and can sensitize the cells to radiation."( Tetrandrine: a potent abrogator of G2 checkpoint function in tumor cells and its mechanism.
Cheng, HY; Deng, YX; Ma, J; Shao, RG; Sun, XC, 2007
)
2.5
"Tetrandrine is a benzylisoquinoline alkaloid that has been used in China as an antifibrotic drug to treat the lesions of silicosis. "( Antioxidant activity of tetrandrine and its inhibition of quartz-induced lipid peroxidation.
Leonard, SS; Mao, Y; Rojanasakul, Y; Saffiotti, U; Shi, X; Vallyathan, V; Wang, L, 1995
)
2.04
"Tetrandrine is a natural alkaloid classified as a calcium antagonist. "( Effects of tetrandrine on Ca(2+)- and Na(+)-currents of single bullfrog cardiomyocytes.
Alvarez, JL; Garrido, G; Llanes, L; Rubio, LS, 1993
)
2.12
"Tetrandrine is an alkaloid from a Chinese herb which has been used to treat hypertension in humans. "( Mechanisms of action of 7-O-ethyl tetrandrine in isolated vascular smooth muscle of the rabbit aorta.
Su, JY, 1993
)
2.01
"Tetrandrine is a bisbenzylisoquinoline alkaloid isolated from a natural Chinese herbal medicine. "( Tetrandrine inhibits signal-induced NF-kappa B activation in rat alveolar macrophages.
Chen, F; Demers, LM; Gaydos, LJ; Kuhn, DC; Lu, Y; Shi, X; Sun, S, 1997
)
3.18
"Tetrandrine is a calcium channel antagonist with reported antihypertensive effect. "( Haemodynamic effects of chronic tetrandrine treatment in portal hypertensive rats.
Chen, CF; Cheng, YR; Hong, CY; Huang, YT; Lin, HC, 1997
)
2.02
"Tetrandrine is a calcium channel antagonist with reported anti-hypertensive effect. "( Hemodynamic effects of chronic tetrandrine treatment in Sprague-Dawley rats.
Chen, CF; Cheng, YR; Hong, CY; Huang, YT; Lin, HC, 1997
)
2.03
"Tetrandrine is a type of calcium channel blocker recently reported to reduce portal hypertension."( Haemodynamic effects of chronic octreotide and tetrandrine administration in portal hypertensive rats.
Chen, SM; Cheng, YR; Hong, CY; Huang, YT; Lin, HC, 1998
)
1.28
"Tetrandrine is a plant alkaloid from the chinese medical herb Stefania tetrandra."( Blockade of voltage-operated calcium channels, increase in spontaneous catecholamine release and elevation of intracellular calcium levels in bovine chromaffin cells by the plant alkaloid tetrandrine.
Bickmeyer, U; Müller, E; Weinsberg, F; Wiegand, H, 1998
)
1.21
"Tetrandrine is an antioxidant for both *OH and superoxide (O2-)radicals."( On the role of hydroxyl radical and the effect of tetrandrine on nuclear factor--kappaB activation by phorbol 12-myristate 13-acetate.
Ding, M; Rojanasakul, Y; Shi, X; Ye, J; Zhang, X, 2000
)
1.28
"Tetrandrine is a wide-range calcium antagonist of plant origin. "( Effect of tetrandrine on cellular electrophysiology and calcium uptake of myocardium in guinea pigs and dogs.
Guan, S; Lynch, C, 2001
)
2.16
"Tetrandrine is a bisbenzylisoquinoline alkaloid derived from the root of Stephania tetrandra S. "( Inhibition of proliferation and induction of apoptosis by tetrandrine in HepG2 cells.
Ko, WG; Lee, BH; Lee, BW; Lee, SJ; Moon, CK; Oh, SH; Yoo, SM, 2002
)
2
"Tetrandrine is a bisbenzylisoquinoline alkaloid which has been shown to exhibit antifibrotic activity against silicosis. "( Inhibitory action of tetrandrine on macrophage production of interleukin-1 (IL-1)-like activity and thymocyte proliferation.
Banks, DE; Castranova, V; Kang, JH; Lewis, DM; Ma, JK; Ma, JY; Rojanasakul, Y,
)
1.89
"Tetrandrine is an alkaloid obtained from the root of a medicinal herb which is employed in China as a treatment for silicosis. "( Inhibition of stimulant-induced activation of phagocytic cells with tetrandrine.
Castranova, V; Frazer, DG; Kang, JH; Moore, MD; Pailes, WH; Schwegler-Berry, D, 1991
)
1.96
"Tetrandrine is a potent arteriolar vasodilator drug with slight effects on AV conduction, but without significant negative inotropic effects in anesthetized dogs."( Kinetic disposition and hemodynamic effects of tetrandrine in anesthetized dogs.
Ogilvie, RI; Shaw, DH; Zeng, FD,
)
1.11
"Tetrandrine is an extract of the creeper Stephania tetrandra used in traditional Chinese medicine for the treatment of rheumatic diseases. "( In vitro immunosuppressive properties of the plant alkaloid tetrandrine.
Chalmers, AH; Ferrante, A; Goh, DB; Li, SY; Seow, WK; Thong, YH, 1988
)
1.96
"Tetrandrine is a plant alkaloid useful in the treatment of silicosis. "( Inhibitory effects of tetrandrine on human neutrophil and monocyte adherence.
Li, SY; Seow, WK; Thong, YH, 1986
)
2.03

Effects

Tetrandrine (TET) has a variety of nontumor-related effects and anticancer effects. It also has an antiangiogenic effect on LoVo cell xenografts in nude mice.

Tetrandrine (TT) has been shown to inhibit stimulant-induced macrophage respiratory burst and effectively reduce silica-induced lung injury. The mechanisms involved in its action have not been clearly established. Tetrandrone (Tet) has anticancer effect on some cancers.

ExcerptReferenceRelevance
"Tetrandrine (TET) has a variety of nontumor-related effects and anticancer effects, including antiangiogenic effects."( Synergistic antiangiogenic activity of tetrandrine combined with Endostar on the human umbilical vein endothelial cell model.
Li, R; Liu, B; Qian, X; Wei, J; Xie, L; Yan, B; Yu, L; Zhou, X, 2013
)
1.38
"Tetrandrine also has an antiangiogenic effect on LoVo cell xenografts in nude mice."( [Inhibitory effect of tetrandrine on angiogenesis].
Hu, J; Hu, WJ; Li, M; Liu, BR; Qian, XP; Sun, J; Yu, LX, 2008
)
1.38
"Tetrandrine has a direct inhibiting effect on the activation of rat HSCs in culture. "( Tetrandrine inhibits activation of rat hepatic stellate cells in vitro via transforming growth factor-beta signaling.
Chen, YW; Li, DG; Lu, HM; Wu, JX, 2005
)
3.21
"Tetrandrine has therapeutic potential in podocyte damage by blocking Ca"( Tetrandrine alleviates podocyte injury via calcium-dependent calpain-1 signaling blockade.
Ding, Y; Tang, X; Wang, Y; Yu, D; Yu, J; Zhu, C, 2021
)
3.51
"Tetrandrine (Tet) has been approved and used to treat rheumatoid arthritis for several decades, but its effect on OA has not been investigated."( Tetrandrine Represses Inflammation and Attenuates Osteoarthritis by Selective Inhibition of COX-2.
Chen, C; Gao, P; Gao, QY; Li, M; Rao, ZW; Shang, TZ; Sun, XY; Zhang, CL, 2023
)
3.07
"Tetrandrine (Tet), which has been widely used clinically, exhibits potential protective effects against stroke."( Tetrandrine attenuates ischemia/reperfusion‑induced neuronal damage in the subacute phase.
Bao, X; Cai, X; Lu, L; Tang, L; Wang, Y; Wu, Z; Xu, Y, 2021
)
2.79
"Tetrandrine (Tet) has anticancer effect on some cancers."( Autophagy inhibition enhances anti-pituitary adenoma effect of tetrandrine.
Chen, C; Hu, Y; Jiang, S; Jiang, Y; Lyu, L; Ma, W; Wang, L; Wang, M; Wang, X; Wang, Z; Ye, F; Yin, S; Zhou, P; Zhou, Y, 2021
)
1.58
"Tetrandrine (TET) has been proposed as a treatment for many diseases due to its strong anti-inflammatory, anti-angiogenic, and anti-fibrotic effects."( Tetrandrine inhibits the occurrence and development of frozen shoulder by inhibiting inflammation, angiogenesis, and fibrosis.
He, Y; Kong, L; Li, H; Ma, Y; Shen, J; Wu, Z; Zhao, H, 2021
)
2.79
"Tetrandrine has been known in the treatment of tuberculosis, hyperglycemia, negative ionotropic and chronotropic effects on myocardium, malaria, cancer and fever since years together. "( Tetrandrine and cancer - An overview on the molecular approach.
K R, C; N, B, 2018
)
3.37
"Tetrandrine (Tet) has been previously reported to induce apoptosis in several cancer cell lines. "( Characterization of the Uptake Efficiency and Cytotoxicity of Tetrandrine-Loaded Poly(N-vinylpyrrolidone)-Block-Poly(ε-caprolactone) (PVP-b-PCL) Nanoparticles in the A549 Lung Adenocarcinoma Cell Line.
Jin, Y; Kong, H; Li, X; Qi, Y; Wang, H; Xie, W; Xu, H; Zeng, X, 2016
)
2.12
"Tetrandrine (TET) has a variety of nontumor-related effects and anticancer effects, including antiangiogenic effects."( Synergistic antiangiogenic activity of tetrandrine combined with Endostar on the human umbilical vein endothelial cell model.
Li, R; Liu, B; Qian, X; Wei, J; Xie, L; Yan, B; Yu, L; Zhou, X, 2013
)
1.38
"Tetrandrine has been found to inhibit the growth of various types of tumor cells, but the underlying molecular mechanism remains to be determined. "( Tetrandrine Inhibits the Intracellular Calcium Ion Level and Upregulates the Expression of Brg1 and AHNAK in Hep-2 Cells.
Cui, X; Wang, P; Wang, X; Zhu, W, 2015
)
3.3
"Tetrandrine has been shown to reduce cancer cell proliferation and to inhibit metastatic effects in multiple cancer models in vitro and in vivo. "( Inhibitory effects of tetrandrine on epidermal growth factor-induced invasion and migration in HT29 human colorectal adenocarcinoma cells.
Chen, FA; Chiang, JH; Chiang, NN; Horng, CT; Lee, CF; Lu, CC; Yang, JS, 2016
)
2.19
"Tetrandrine also has an antiangiogenic effect on LoVo cell xenografts in nude mice."( [Inhibitory effect of tetrandrine on angiogenesis].
Hu, J; Hu, WJ; Li, M; Liu, BR; Qian, XP; Sun, J; Yu, LX, 2008
)
1.38
"Tetrandrine has potential as a treatment for gliomas."( Tetrandrine suppresses tumor growth and angiogenesis of gliomas in rats.
Chen, JC; Chen, Y; Tseng, SH, 2009
)
2.52
"Tetrandrine has potential either as a tumoricidal agent or as an adjunct to chemotherapy and radiotherapy."( Potential role of tetrandrine in cancer therapy.
Chen, YJ, 2002
)
1.37
"Tetrandrine has a direct inhibiting effect on the activation of rat HSCs in culture. "( Tetrandrine inhibits activation of rat hepatic stellate cells in vitro via transforming growth factor-beta signaling.
Chen, YW; Li, DG; Lu, HM; Wu, JX, 2005
)
3.21
"Tetrandrine has protective effect on neuronal cells, however, the mechanisms involved in its action have not been clearly established."( Effect of tetrandrine on calcium-dependent tumour necrosis factor-alpha production in glia-neurone mixed cultures.
Wang, B; Wang, M; Xiao, JG; Yan, HL; Yang, L, 2005
)
1.45
"Tetrandrine has been used clinically in China for centuries in the treatment of many diseases."( Tetrandrine: a new ligand to block voltage-dependent Ca2+ and Ca(+)-activated K+ channels.
Lemos, JR; Wang, G, 1995
)
2.46
"Tetrandrine (TT) has been shown to inhibit stimulant-induced macrophage respiratory burst and effectively reduce silica-induced lung injury."( Use of tetrandrine to differentiate between mechanisms involved in silica-versus bleomycin-induced fibrosis.
Barger, MW; Castranova, V; Hubbs, AF; Ma, JK; Ma, JY; Weber, SL, 1999
)
1.48
"Tetrandrine has been used for the treatment of silicosis in China. "( Genotoxicity and genotoxic enhancing effect of tetrandrine in Salmonella typhimurium.
Jiang, HX; Lu, CH; Ong, T; Stewart, JD; Whong, WZ, 1989
)
1.98

Actions

Tetrandrine plays the blocking action in the promoting cell proliferation induced by PDGF. It could enhance the antitumor effect of Paclitaxel (Ptx) by increasing intracellular Reactive Oxygen Species (ROS) levels.

ExcerptReferenceRelevance
"Tetrandrine could inhibit IL-6, IL-1β, and TNF-α expression via blocking the nuclear translocation of nuclear factor (NF)-κB p65 in LPS-induced RAW 264.7 cells."( Tetrandrine suppresses articular inflammatory response by inhibiting pro-inflammatory factors via NF-κB inactivation.
Cui, YL; Feng, QS; Gao, LN; Wang, QS; Zhang, XF, 2016
)
2.6
"Tetrandrine (Tet) could enhance the antitumor effect of Paclitaxel (Ptx) by increasing intracellular Reactive Oxygen Species (ROS) levels, which leads to the possibility of co-delivery of both drugs for synergistic antitumor effect. "( Efficient antitumor effect of co-drug-loaded nanoparticles with gelatin hydrogel by local implantation.
Li, X; Sun, W; Tian, Y; Xu, H; Zhang, H; Zheng, D; Zhu, Z, 2016
)
1.88
"Tetrandrine may produce multiple pharmacological effects against calcium channel antagonist, U46619, endothelin-1,angiotension II, and neuropeptide Y induced vasoconstriction in rat pulmonary arteries in varying extent and inhibition of leukotriene E4 rather than C4, D4, histamine, and 5-methyl furmethide induced contractile responses on rat tracheal segments. "( Effects of tetrandrine on smooth muscle contraction induced by mediators in pulmonary hypertension.
Chang, TH; Wang, HL; Zhang, XH, 2002
)
2.15
"Tetrandrine could inhibit the c-fos gene expression in nucleus accumbens, ventral tegmental and prefrontal cortex in place-preference model formed by morphine."( [Effect of the tetrandrine on morphine induced hyperactivity and reinforcement in mice].
Xue, CS; Zhou, QX; Zhu, Y, 2001
)
1.38
"Tetrandrine could inhibit the hyperactivity and conditioned place preference response induced by morphine, it might relate to reducing the c-fos gene expression in special area of brain in mice."( [Effect of the tetrandrine on morphine induced hyperactivity and reinforcement in mice].
Xue, CS; Zhou, QX; Zhu, Y, 2001
)
2.11
"Tetrandrine can obviously lower the express of P170 increase the express of Fas and the apoposis of drug resistant tumor cell. "( [The study of tetrandrine on reversion of P170 and apoptosis of obtained multi-drug resistance of mice S180's tumour cell].
Li, GH; Nie, XC; Sun, FJ; Yin, GP, 2005
)
2.13
"Tetrandrine could suppress the mRNA expression of ERCC1, TS, beta-tubulin III and tau."( Synergistic interaction between tetrandrine and chemotherapeutic agents and influence of tetrandrine on chemotherapeutic agent-associated genes in human gastric cancer cell lines.
Ding, Y; Liu, B; Qian, X; Wang, L; Wei, J; Yu, L, 2007
)
1.34
"Tetrandrine promotes the apoptosis of activated HSCs in vitro. "( Tetrandrine stimulates the apoptosis of hepatic stellate cells and ameliorates development of fibrosis in a thioacetamide rat model.
Lian, LH; Nan, JX; Piao, DM; Yin, MF, 2007
)
3.23
"Tetrandrine did not cause generation of nitric oxide."( Cytotoxicity to macrophages of tetrandrine, an antisilicosis alkaloid, accompanied by an overproduction of prostaglandins.
Hoult, JR; Pang, L, 1997
)
1.3
"Tetrandrine did not cause any change in the overall shape of the current-voltage relationship of I(Ca,L)."( Ionic mechanisms of tetrandrine in cultured rat aortic smooth muscle cells.
Hwang, TL; Jan, CR; Tseng, CJ; Wu, SN, 1997
)
1.34
"Tetrandrine plays the blocking action in the promoting cell proliferation induced by PDGF."( [Blocking action of tetrandrine on the cell proliferation induced by PDGF in human lung fibroblasts and liver Ito cell of rats].
Li, D; Liu, S; Tian, Z, 1997
)
2.06
"Tetrandrine plays a blocking action in the scar-collagen matrix contraction stimulated by TGF-beta, which was in a dose-dependent manner."( [Blocking action of tetrandrine on the scar-collagen matrix contraction stimulated by transforming growth factor beta].
Cao, Y; Li, G; Liu, D, 1998
)
2.07

Treatment

Tetrandrine pre-treatment also inhibited the expression of TLR4, p65, iNOS, and COX-2 in BV2 cells induced by Aβ 1-42. Treatment either 1 hour before or 1 hour after LPS injection reduced the mortality rate of the mice with LPS-induced endotoxemia.

ExcerptReferenceRelevance
"Tetrandrine pre-treatment also inhibited the expression of TLR4, p65, iNOS, and COX-2 in BV2 cells induced by Aβ 1-42."( Tetrandrine ameliorated Alzheimer's disease through suppressing microglial inflammatory activation and neurotoxicity in the 5XFAD mouse.
Fu, Y; Jiang, C; Li, Z; Liu, J; Ren, D; Wang, H; Wang, L; Yuan, J; Zhong, X, 2021
)
2.79
"Tetrandrine treatment showed growth inhibitory effects on RCC cells in a time- and dose-dependent manner."( Tetrandrine triggers apoptosis and cell cycle arrest in human renal cell carcinoma cells.
Chen, T; Chen, Y; Ji, B, 2014
)
2.57
"Tetrandrine treatment induced the levels of LC-3 II, Atg-5, beclin-1, p-S6, p-ULK, p-mTOR, p-Akt (S473) and raptor."( Tetrandrine induces cell death in SAS human oral cancer cells through caspase activation-dependent apoptosis and LC3-I and LC3-II activation-dependent autophagy.
Chang, SJ; Huang, AC; Lai, TY; Lien, JC; Lin, MW; Wu, PP; Yang, JS, 2013
)
2.55
"Tetrandrine treatment also caused intracellular accumulation of reactive oxygen species (ROS)."( Tetrandrine induces G1/S cell cycle arrest through the ROS/Akt pathway in EOMA cells and inhibits angiogenesis in vivo.
Huang, Z; Jiang, Y; Li, W; Liu, T; Liu, X; Men, Q; Xiao, W; Yuan, L, 2015
)
2.58
"Tetrandrine treatment inhibited the enzymatic activity of matrix metalloprotease (MMP)‑2 and MMP‑9 in a concentration‑dependent manner."( Inhibitory effects of tetrandrine on epidermal growth factor-induced invasion and migration in HT29 human colorectal adenocarcinoma cells.
Chen, FA; Chiang, JH; Chiang, NN; Horng, CT; Lee, CF; Lu, CC; Yang, JS, 2016
)
1.47
"Tetrandrine treatment also induced intracellular accumulation of reactive oxygen species (ROS)."( Tetrandrine induces programmed cell death in human oral cancer CAL 27 cells through the reactive oxygen species production and caspase-dependent pathways and associated with beclin-1-induced cell autophagy.
Chang, SJ; Chung, JG; Huang, AC; Lai, KC; Lien, JC; Lin, MW; Yu, FS, 2017
)
2.62
"Tetrandrine treatment prior to TNF-α reduced nuclear phosphorylated and total NF-κB p65, while the cytosolic IκB-α and NF-κB p65 levels significantly increased."( Tetrandrine regulates hepatic stellate cell activation via TAK1 and NF-κB signaling.
Jiang, S; Jin, Q; Li, X; Lian, LH; Nan, JX; Sun, P; Wu, YL; Zhang, DQ; Zhang, Y; Zhang, YJ, 2016
)
2.6
"Tetrandrine treatment either 1 hour before or 1 hour after LPS injection reduced the mortality rate of the mice with LPS-induced endotoxemia. "( Tetrandrine increased the survival rate of mice with lipopolysaccharide-induced endotoxemia.
Chen, JC; Chen, Y; Li, SJ; Lin, TY; Shieh, JS; Tseng, SH, 2009
)
3.24
"Tetrandrine treatment also induced intracellular accumulation of reactive oxygen species (ROS), and ROS scavengers (LNAC and GSH) completely blocked the effects of tetrandrine-induced apoptosis, suggesting that the generation of ROS plays an important role in tetrandrine-induced apoptosis."( Tetrandrine induces apoptosis by activating reactive oxygen species and repressing Akt activity in human hepatocellular carcinoma.
Gong, K; Li, W; Liu, C; Mao, X, 2011
)
2.53
"Tetrandrine treatment showed strong growth inhibitory and apoptotic effects on human bladder cancer 5637 and T24 cells in a concentration-dependent manner. "( Tetrandrine induces apoptosis and triggers caspase cascade in human bladder cancer cells.
He, D; Li, X; Liu, R; Su, B; Wu, D, 2011
)
3.25
"Tetrandrine treatment at doses of 25 and 50 microg/ml for 12 h induced apoptosis as confirmed by DNA fragmentation and increased sub-G1 DNA content as detected by flow cytometric analysis."( Tetrandrine induces apoptosis in hepatic stellate cells.
Kim, JY; Ko, G; Lee, SH; Park, EJ; Sohn, DH; Woo, SW; Zhao, YZ, 2004
)
2.49
"Both tetrandrine- and 5-FU-treated mice survived longer than mice in the untreated control group."( Inhibitory effect of tetrandrine on pulmonary metastases in CT26 colorectal adenocarcinoma-bearing BALB/c mice.
Chang, HH; Chang, KH; Chen, YJ; Chen, YY; Chou, CJ; Liao, HF; Yu, MC, 2004
)
1.1
"Tetrandrine treatment led to significant release of cytochrome c and downregulation of Bcl-X(L) accompanied by caspase 3 activation, and ultimately, DNA fragmentation."( Tetrandrine-induced apoptosis in rat primary hepatocytes is initiated from mitochondria: caspases and endonuclease G (Endo G) pathway.
Fang-Ping, C; Jin, R; Li-Kun, G; Lin-Lin, L; Xiang-Hong, L; Xin-Ming, Q; Xiong-Fei, W; Yan, C; Ying, X, 2006
)
2.5
"Treatment with tetrandrine not only mitigated cerebral neurological deficits (P < 0.05) and infarct size (P < 0.01), but also decreased brian edema in the ischemic brain (P < 0.05)."( Tetrandrine attenuated cerebral ischemia/reperfusion injury and induced differential proteomic changes in a MCAO mice model using 2-D DIGE.
Chen, HM; Gong, QJ; Huang, HS; Jin, WX; Li, XJ; Ruan, L, 2013
)
2.17
"Treatment with tetrandrine reduced the expression levels of COX‑2, IL‑1β, TNF‑α, NF‑κB, iNOS and caspase‑3, and increased the Bcl‑2 protein expression in sevoflurane‑treated aged rats."( Tetrandrine ameliorates sevoflurane‑induced cognitive impairment via the suppression of inflammation and apoptosis in aged rats.
Li, X; Ma, H; Pang, L; Yao, L; Yao, Q, 2016
)
2.22
"The treatment with tetrandrine resulted in downregulation of phospho NF-κB p65 expression and strikingly reduced the production of IL-1β and TNF-α."( Tetrandrine suppresses amyloid-β-induced inflammatory cytokines by inhibiting NF-κB pathway in murine BV2 microglial cells.
Cui, DJ; Gan, HT; He, FQ; Huang, XL; Li, TK; Qiu, BY; Xie, Q, 2011
)
2.13
"When treated alone, tetrandrine had a time- and concentration-dependent cytotoxic effect on TE1 cells."( Enhancement of radiosensitivity and the potential mechanism on human esophageal carcinoma cells by tetrandrine.
Liu, F; Sun, M; Sun, S; Sun, Z; Yu, J, 2011
)
0.9
"Upon treatment with tetrandrine, a time-dependent inhibition of cell growth was observed and cells developed many of the hallmark features of apoptosis."( Tetrandrine-induced cell cycle arrest and apoptosis in A549 human lung carcinoma cells.
Choi, BT; Choi, YH; Kang, GH; Kang, HS; Kim, KC; Kim, KM; Lee, JH; Lee, YT; Park, DI, 2002
)
2.07
"Mice treated with tetrandrine had 40.3% fewer metastases than vehicle-treated mice, and those treated with 5-FU had 36.9% fewer metastases than controls."( Inhibitory effect of tetrandrine on pulmonary metastases in CT26 colorectal adenocarcinoma-bearing BALB/c mice.
Chang, HH; Chang, KH; Chen, YJ; Chen, YY; Chou, CJ; Liao, HF; Yu, MC, 2004
)
0.97
"Treatment with tetrandrine (by gastric intubation, 50 mg/kg per day for 9 weeks) lowered systolic blood pressure, left ventricular weight, Ca2+ of mitochondria, and markedly decreased the density (Bmax) and total number of dihydropyridine binding sites in hypertrophic left ventricle (P < 0.001)."( Effects of tetrandrine on left ventricle hypertrophy in deoxycorticosterone acetate-salt hypertensive rats.
Rao, MR; Xu, Y, 1995
)
1.02
"Treatment with tetrandrine in fibrotic rats reduced serum aspartate aminotransferase, alanine aminotransferase, and alkaline phosphatase levels to 72%, 52% and 51% that of controls at 10 mg/kg/day, respectively."( Effect of tetrandrine on experimental hepatic fibrosis induced by bile duct ligation and scission in rats.
Kang, HC; Kim, JY; Ko, G; Nan, JX; Park, EJ; Park, PH; Sohn, DH, 2000
)
1.05

Toxicity

ExcerptReferenceRelevance
" Cardiotoxicity is the chief toxic effect that limits the clinical use of Dox."( Protective effect of tetrandrine on doxorubicin-induced cardiotoxicity in rats.
Chi, D; Sheng, L; Xu, M; Zeng, S; Zhang, GJ; Zhu, X,
)
0.45
"The overall fifindings of this study indicate that TET is relatively non-toxic from a single dose of 20, 100, 180, 260 or 340 mg/kg, and that up to 90 mg/kg daily for 14 consecutive days can be considered a safe application dose."( Acute and sub-chronic toxicity of tetrandrine in intravenously exposed female BALB/c mice.
Gao, AL; Li, SX; Ma, ZL; Shi, JP; Song, YJ; Zhang, H, 2016
)
0.71
" The underlying toxic targets and mechanism induced by TET remain unclear; there are no targeted detoxification strategies developed for TET-induced hepatotoxicity."( Ursolic acid alleviates tetrandrine-induced hepatotoxicity by competitively binding to the substrate-binding site of glutathione S-transferases.
Bai, G; Chu, S; Jiang, M; Liu, W; Lu, Y; Ma, X; Peng, J; Wang, X, 2022
)
1.03
"This study aims to explore toxic targets and mechanism of TET and present UA as a potential targeted therapy for alleviating TET-induced hepatotoxicity."( Ursolic acid alleviates tetrandrine-induced hepatotoxicity by competitively binding to the substrate-binding site of glutathione S-transferases.
Bai, G; Chu, S; Jiang, M; Liu, W; Lu, Y; Ma, X; Peng, J; Wang, X, 2022
)
1.03
" The covalent binding led to toxic metabolite accumulation and caused redox imbalance and liver injury."( Ursolic acid alleviates tetrandrine-induced hepatotoxicity by competitively binding to the substrate-binding site of glutathione S-transferases.
Bai, G; Chu, S; Jiang, M; Liu, W; Lu, Y; Ma, X; Peng, J; Wang, X, 2022
)
1.03

Pharmacokinetics

The safety, bioavailability and pharmacokinetic parameter studies on tetrandrine are very limited in animal models, especially in clinical settings. In this study, ultra-performance liquid chromatography (UHPLC) combined with quadrupole time-of-flight mass spectrometry (QTOF) was applied to simultaneously qualitative and quantitative analysis of paclitaxel.

ExcerptReferenceRelevance
" Our aims were to determine whether serum concentration of Tet, which was capable of blocking P-gp in vitro, could be safely achieved in mice and whether Tet induced pharmacokinetic alterations in serum doxorubicin disposition in mice."( Tetrandrine achieved plasma concentrations capable of reversing MDR in vitro and had no apparent effect on doxorubicin pharmacokinetics in mice.
Chen, LM; Dai, CL; Fu, LW; Liang, YJ; Tang, LF; Wang, XH; Xiong, HY; Zeng, MS; Zhang, X, 2007
)
1.78
" The plasma peak concentration of Tet was about 2 micromol/L and not less than 1 micromol/L until 18 h following Tet administration (i."( Tetrandrine achieved plasma concentrations capable of reversing MDR in vitro and had no apparent effect on doxorubicin pharmacokinetics in mice.
Chen, LM; Dai, CL; Fu, LW; Liang, YJ; Tang, LF; Wang, XH; Xiong, HY; Zeng, MS; Zhang, X, 2007
)
1.78
"A rapid and sensitive liquid chromatography-tandem mass spectrometric method (LC/MS/MS) for the determination of tetrandrine in rat plasma has been developed, fully validated and successfully applied to pharmacokinetic study in Sprague-Dawley (SD) rats after a single oral administration."( Establishment of a liquid chromatographic/mass spectrometry method for quantification of tetrandrine in rat plasma and its application to pharmacokinetic study.
Li, Q; Liu, C; Song, N; Zhang, S, 2008
)
0.78
" The values of AUC(0 → ∞), clearance (Cl(0 → ∞)), volume of distribution (Vd), and elimination half-life (t(1/2β)) of Tet were 59861."( The pharmacokinetical study of plant alkaloid tetrandrine with a simple HPLC method in rabbits.
Jiang, XH; Li, N; Wang, H; Yang, JQ; Zhou, QX, 2011
)
0.63
" In this study, ultra-performance liquid chromatography (UHPLC) combined with quadrupole time-of-flight mass spectrometry (QTOF) was applied to simultaneously qualitative and quantitative analysis of paclitaxel for the pharmacokinetic studies while combined with tetrandrine."( The development of a quantitative and qualitative method based on UHPLC-QTOF MS/MS for evaluation paclitaxel-tetrandrine interaction and its application to a pharmacokinetic study.
Cao, Z; Li, D; Liao, X; Liu, L; Yang, P, 2016
)
0.83
" The purpose of this study is to develop an UPLC-MS/MS method to quantify TET and its major metabolite and apply the method in a single dose human pharmacokinetic study."( An UPLC-MS/MS method for quantifying tetrandrine and its metabolite berbamine in human blood: Application to a human pharmacokinetic study.
Gao, S; Hu, M; Hu, P; Yang, G; Zhang, C; Zhu, M, 2017
)
0.73
" According to the pharmacokinetic parameters of mean residence time, half-life period and clearance rate, the 10-hydroxycamptothecin-tetrandrine liposome complexes prolongs the retention and circulation time of 10-hydroxycamptothecin in vivo, achieving a good sustained release effect."( Pharmacokinetics of 10-hydroxycamptothecin-tetrandrine liposome complexes in rat by a simple and sensitive ultra-high performance liquid chromatography with tandem mass spectrometry.
Mao, J; Ping, Y; Shuang, R; Wang, M; Zou, J, 2020
)
1.02
" However, the safety, bioavailability and pharmacokinetic parameter studies on tetrandrine are very limited in animal models, especially in clinical settings."( Tetrandrine: a review of its anticancer potentials, clinical settings, pharmacokinetics and drug delivery systems.
He, X; Luan, F; Zeng, N, 2020
)
2.23
" However, its pharmacokinetic characteristics in vivo are still unclear."( UHPLC-MS/MS Method for Quantifying Fangchinoline, Tetrandrine and Calycosin-7-O-β-D-Glucoside of Fangji Huangqi Decoction in Rat Plasma and Its Application to a Pharmacokinetic Study.
Chang, S; Feng, B; Guan, J; Ji, Y; Sang, Y; Wang, L; Zhang, T; Zhu, H, 2022
)
0.97

Compound-Compound Interactions

Tetrandrine tablets combined with matrine injection have some therapeutic effect on silicosis. Study was to investigate the mechanism to reverse the drug resistance of leukemia cells in Tet.

ExcerptReferenceRelevance
"Anticancer activities of a drug alone and a drug combination of Tet and Dox or Vin were determined by tetrazolium (MTT) method."( Synergistic anticancer effects of tetrandrine combined with doxorubicin or vincristine in vitro.
Cao, XF; Dai, BQ; Li, CY; Li, LF; Sun, AX; Xue, BY; Yang, Q; Ye, ZG, 1999
)
0.58
"0 when the 3 ratios of the 2 drugs in combination were used, and the shapes of isobolic curves obtained from the combination were concave."( Synergistic anticancer effects of tetrandrine combined with doxorubicin or vincristine in vitro.
Cao, XF; Dai, BQ; Li, CY; Li, LF; Sun, AX; Xue, BY; Yang, Q; Ye, ZG, 1999
)
0.58
"To study the correlation of the reversal effect of tetrandrine (Tet) in combination with droloxifene (DRL) on multidrug resistant cell line K562/A02 and induction apoptosis, the apoptosis of K562 cells and K562/A02 cells after the treatment of Tet and DRL alone or their combination was detected by flow cytometry (FCM)."( [Reversal effect of tetrandrine in combination with droloxifene on cell line K562/A02 and its correlation with inducted apoptosis].
Chen, BA; Cheng, J; Dong, Y; Gao, F; Sheng, M; Wang, T; Zhang, P; Zhou, Y, 2004
)
0.9
"To observe the effect of Tetrandrine (tet) combined with Droloxifen (DRL) on the expression of bcr/abl mRNA and P(210) BCR/ABL protein of K562 cell line, after K562 cells were cultured in the medium containing Tet (1 micromol/L), DRL (5 micromol/L) separately or in their combination for some time, the changes of bcr/abl mRNA and protein expression were detected by RT-PCR and Western blot respectively."( [Effect of tetrandrine combined with Droloxifen on the expression of bcr/abl of K562 at both mRNA and protein levels].
Chen, BA; Cheng, J; Gao, F; Qian, XJ, 2005
)
1.02
"The aim of this study was to investigate the mechanism to reverse the drug resistance of leukemia cells in tetrandrine (Tet) alone or in combination with droloxifen (Drol) by using protein chips and to lay the theoretical basis for the clinical applications."( [Using protein chips to study mechanism underlying reversion of drug resistance in leukemia cells in tetrandrine alone or in combination with droloxifene].
Chen, BA; Cheng, J; Du, J; Gao, F; Lu, ZH; Zhang, CX, 2005
)
0.76
" In this work, a simple, inexpensive and efficient liquid-phase microextraction (LPME) technology combined with high-performance liquid chromatography (HPLC) was developed for the simultaneous analysis of tetrandrine and fangchinoline in plasma samples."( Determination of tetrandrine and fangchinoline in plasma samples using hollow fiber liquid-phase microextraction combined with high-performance liquid chromatography.
Guo, L; Liu, M; Liu, X; Yang, C; Zhang, H, 2007
)
0.87
"To study the effect of tetrandrine (Tet) in combination with droloxifen (DRL) on the expression of nuclear factor kappa B (NF-kappaB) in K562 and K562/A02 cell lines and its reversal mechanism."( [Effect of tetrandrine in combination with droloxifen on the expression of NF-kappaB protein in K562 and K562/A02 cell lines].
Chen, BA; Chen, NN; Cheng, HY; Cheng, J; Ding, JH; Gao, C; Gao, F; Huang, CY; Shen, HL; Su, AL; Sun, XC; Sun, YY; Wang, J; Xu, WL; Zhao, G; Zhao, HH, 2008
)
1.05
"To study the anti-tumor effect of Tetrandrine (Tet) combined with Nedaplatin (Nap) on the human liver cancer cell line 7402, and explore its mechanism."( [The study of anti-tumor effect of Tetrandrine combined with Nedaplatin on human liver cancer cell line 7402].
Chen, XB; Deng, WY; Han, LL; Li, N; Luo, SX; Zhou, MQ, 2008
)
0.9
"Compared with Tet or Nap individual drug groups, Tet combined with Nap obviously increased the inhibitatory rate and apoptosis rate of the human liver cancer cell line 7402."( [The study of anti-tumor effect of Tetrandrine combined with Nedaplatin on human liver cancer cell line 7402].
Chen, XB; Deng, WY; Han, LL; Li, N; Luo, SX; Zhou, MQ, 2008
)
0.62
"Tet combined with Nap can obviously increase apoptosis-inducing effect, and its mechanism may be regulating cell cycle and increasing apoptosis-inducing effect which is regulated by several genes."( [The study of anti-tumor effect of Tetrandrine combined with Nedaplatin on human liver cancer cell line 7402].
Chen, XB; Deng, WY; Han, LL; Li, N; Luo, SX; Zhou, MQ, 2008
)
0.62
"This study was aimed to investigate the reversal effect of Tetrandrine (TET) combined with daunorubicin (DNR) on multidrug resistance (MDR) of K562/A02 cells and its relation to P21, P-gp and their genes so as to provide the new theoretic evidence for clinical use of TET."( [Effect of tetrandrine combined with daunorubicin on expressions of P21 and P-gp in K562/A02 cells].
Chen, BA; Chen, J; Ding, JH; Gao, C; Gao, F; Li, J; Sun, XC; Wang, XM; Wu, YN; Xu, WL; Zhu, MS, 2009
)
0.99
"This study was aimed to investigate the relevance of nilotinib in combination with tetrandrine (Tet) on reversing multidrug resistance and inducing apoptosis of K562/A02 cell line and its mechanism."( [Inducing apoptosis and reversal effect of nilotinib in combination with tetrandrine on multidrug resistance of K562/A02 cell line].
Bao, W; Chen, BA; Cheng, J; Cui, TY; Ding, JH; Gao, C; Gao, F; Schmitt, A; Schmitt, M; Shan, XY; Xia, GH; Zhong, YJ, 2011
)
0.83
"To observe the therapeutic efficacy of tetrandrine tablets combined with matrine injection in the treatment of silicosis."( [Therapeutic efficacy of tetrandrine tablets combined with matrine injection in treatment of silicosis].
Fang, ZH; Miao, RM; Yao, Y, 2012
)
0.95
"Tetrandrine tablets combined with matrine injection have some therapeutic effect on silicosis."( [Therapeutic efficacy of tetrandrine tablets combined with matrine injection in treatment of silicosis].
Fang, ZH; Miao, RM; Yao, Y, 2012
)
2.13
" Antiproliferative effects of TET combined with Endostar on human umbilical vein endothelial cells (HUVECs) and the human colon cancer cell line LoVo were evaluated by the 3-(4,5-dimethylthiazol-2-y)-2,5-diphenylterazolium bromide (MTT) assays."( Synergistic antiangiogenic activity of tetrandrine combined with Endostar on the human umbilical vein endothelial cell model.
Li, R; Liu, B; Qian, X; Wei, J; Xie, L; Yan, B; Yu, L; Zhou, X, 2013
)
0.66
" In this study, we investigated the synergistic antitumour activity of sorafenib in combination with tetrandrine."( Synergistic antitumour activity of sorafenib in combination with tetrandrine is mediated by reactive oxygen species (ROS)/Akt signaling.
Gong, K; Li, J; Li, W; Liu, T; Mei, L; Wan, J; Yu, C, 2013
)
0.84
"This was a two-part investigation that included the in vitro effects of sorafenib in combination with tetrandrine on cancer cells and the in vivo antitumour efficacy of this drug combination on tumour xenografts in nude mice."( Synergistic antitumour activity of sorafenib in combination with tetrandrine is mediated by reactive oxygen species (ROS)/Akt signaling.
Gong, K; Li, J; Li, W; Liu, T; Mei, L; Wan, J; Yu, C, 2013
)
0.84
"To observe the clinical efficacy of tetrandrine combined with acetylcysteine effervescent tablets in the treatment of silicosis."( [Clinical efficacy of tetrandrine combined with acetylcysteine effervescent tablets in treatment of silicosis].
Fang, ZH; Ji, J; Miao, RM; Qian, GL; Sun, XF; Wu, W; Zhang, YY; Zhao, DK; Zhao, R, 2013
)
0.98
" Both groups were given routine therapy including anti-inflammatory, antitussive, and antiasthmatic drugs, and the patients in treatment group were given tetrandrine combined with acetylcysteine effervescent tablets at the same time."( [Clinical efficacy of tetrandrine combined with acetylcysteine effervescent tablets in treatment of silicosis].
Fang, ZH; Ji, J; Miao, RM; Qian, GL; Sun, XF; Wu, W; Zhang, YY; Zhao, DK; Zhao, R, 2013
)
0.9
" However, tumor growth inhibition and therapeutic efficacy of TET combined with IR in vivo were identified to be synergistic, as monitored by tumor growth delay time, measured with a digital caliper."( Synergistic effects of tetrandrine combined with ionizing radiation on a murine colorectal carcinoma‑bearing mouse model.
Chen, YJ; Cheng, SY; Hwang, JJ; Leu, JD; Lin, WC; Lin, YH; Wang, WH, 2018
)
0.79
" The molecular mechanisms of tetrandrine in combination with colistin were analyzed using fluorometric assay and Real-time PCR."( Synergistic antibacterial activity of tetrandrine combined with colistin against MCR-mediated colistin-resistant Salmonella.
Hu, G; Liu, J; Liu, P; Liu, S; Luo, X; Pan, Y; Yan, F; Yi, K; Zhai, Y; Zhao, J, 2022
)
1.28
" The present study employed network pharmacology and molecular docking to determine the mechanism of action and the key active components of BYHWD of Tetrandrine in combination with BYHWD for silicosis."( Unraveling the mechanism of tetrandrine combined with Buyang Huanwu Decoction against silicosis using network pharmacology and molecular docking analyses.
He, S; Jiang, H; Li, Y; Lyu, Z; Zhao, Y, 2023
)
1.4

Bioavailability

TPC-LNCs system developed in this study is a promising carrier that improves the oral bioavailability of tetrandrine in rats.

ExcerptReferenceRelevance
" The im bioavailability of W198 in rats was 56."( [Pharmacokinetics of bromotetrandrin (W198) in rats and beagle dogs].
Liu, CX; Lu, R; Wang, FP; Wei, GL; Xiao, SH, 2004
)
0.32
"Other components in the ECG of Xiaoxuming decoction delayed the absorption rate of fangchinoline and tetrandrine, the bioavailability of two compounds were the same as that of the single dose of compound experiment."( [Pharmacokinetics of fangchinoline and tetrandrine in rats].
Cai, M; Du, G; Fan, X; Li, Z; Qiang, G; Yang, Z; Ying, J, 2009
)
0.84
" In this study, a newly emerging oral drug carrier of phospholipid complex loaded lipid nanocapsules was developed to improve the oral bioavailability of tetrandrine."( Preparation and characterization of tetrandrine-phospholipid complex loaded lipid nanocapsules as potential oral carriers.
Feng, NP; Liu, Y; Ma, C; Wang, LP; Zhao, K; Zhao, YQ, 2013
)
0.86
" The in vivo bioavailability of TPC-LNCs was studied and compared to tetrandrine tablets in rats."( Preparation and characterization of tetrandrine-phospholipid complex loaded lipid nanocapsules as potential oral carriers.
Feng, NP; Liu, Y; Ma, C; Wang, LP; Zhao, K; Zhao, YQ, 2013
)
0.9
" The relative bioavailability of TPC-LNCs compared to that of tablets was 208%, indicating a significant improvement in the oral absorption of tetrandrine."( Preparation and characterization of tetrandrine-phospholipid complex loaded lipid nanocapsules as potential oral carriers.
Feng, NP; Liu, Y; Ma, C; Wang, LP; Zhao, K; Zhao, YQ, 2013
)
0.87
"The TPC-LNCs system developed in this study is a promising carrier that improves the oral bioavailability of tetrandrine in rats."( Preparation and characterization of tetrandrine-phospholipid complex loaded lipid nanocapsules as potential oral carriers.
Feng, NP; Liu, Y; Ma, C; Wang, LP; Zhao, K; Zhao, YQ, 2013
)
0.88
" Recently, biodegradable polymeric nanoparticles with amphilic copolymers as drug carriers have shown better bioavailability against tumor as promising tumor-targeted drug delivery system."( Enhanced Pro-Apoptotic Effect of Tetrandrine Loaded Nanoparticles Against Osteosarcoma Cells.
Tian, Y; Xu, H; Yin, H, 2016
)
0.72
" Though, bioavailability of tetrandrine is a limiting factor, the anticancer activity was observed in animal models without changing any pharmacokinetic parameters."( Tetrandrine and cancer - An overview on the molecular approach.
K R, C; N, B, 2018
)
2.22
"The main purpose of this study was to investigate the potential of self-nanoemulsified drug delivery system (SNEDDS) to improve the oral bioavailability of tetrandrine (Tet)."( Self-Nanoemulsifying Drug Delivery System of Tetrandrine for Improved Bioavailability: Physicochemical Characterization and Pharmacokinetic Study.
Guo, W; Huang, X; Huang, Y; Li, G; Liu, C; Lv, L; Mo, L, 2018
)
0.94
" However, it has a series of medication problems in clinic such as poor water solubility, low oral bioavailability and short half-life in vivo."( Study on preparation, characterization and multidrug resistance reversal of red blood cell membrane-camouflaged tetrandrine-loaded PLGA nanoparticles.
Chen, J; Guo, P; Kamal, Z; Liu, S; Qiu, M; Que, X; Su, J; Xu, E, 2019
)
0.73
"The ATP-binding cassette transporter P-glycoprotein (P-gp) is known to limit both brain penetration and oral bioavailability of many chemotherapy drugs."( A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
Ambudkar, SV; Brimacombe, KR; Chen, L; Gottesman, MM; Guha, R; Hall, MD; Klumpp-Thomas, C; Lee, OW; Lee, TD; Lusvarghi, S; Robey, RW; Shen, M; Tebase, BG, 2019
)
0.51
" In order to improve the bioavailability and prolong the treatment time of the 10-hydroxycamptothecin in vivo, we prepared 10-hydroxycamptothecin-tetrandrine liposome complexes with 10-hydroxycamptothecin as the basic anticancer drug, tetrandrine and liposomes as carriers."( Pharmacokinetics of 10-hydroxycamptothecin-tetrandrine liposome complexes in rat by a simple and sensitive ultra-high performance liquid chromatography with tandem mass spectrometry.
Mao, J; Ping, Y; Shuang, R; Wang, M; Zou, J, 2020
)
1.02
" However, the safety, bioavailability and pharmacokinetic parameter studies on tetrandrine are very limited in animal models, especially in clinical settings."( Tetrandrine: a review of its anticancer potentials, clinical settings, pharmacokinetics and drug delivery systems.
He, X; Luan, F; Zeng, N, 2020
)
2.23

Dosage Studied

Delayed administration of tetrandrine, a novel broad-spectrum anti-inflammatory agent, to BB rats at a dosage schedule of 20 mg kg-1 day-1 from 79 days of age reduced the cumulative incidence of diabetes from 73. In vitro the release of t Petrandrine from sustained release dosage forms went on a time of 12 hours which fitted non-Fickian diffusion with matrix erosion.

ExcerptRelevanceReference
" Dose-response studies with 0, 5, 10, and 20 mg."( Prevention by tetrandrine of spontaneous development of diabetes mellitus in BB rats.
Lentz, DP; Lieberman, I; Seow, WK; Thong, YH; Trucco, GA, 1992
)
0.64
"5 and 25 mg/kg, the elimination of the drug from plasma was found to be in accord with linear kinetics, but when the dosage was 50 mg/kg, a non-linear kinetics was observed."( [Pharmacokinetics and distribution of isotetrandrine in rats].
Dai, SF; Han, GZ; Su, CY; Sun, H, 1990
)
0.54
" Similar dosage regimens significantly delayed the rejection of cardiac transplants."( Effect of tetrandrine on immunological responses and cardiac transplant rejection in mice.
Li, SY; Ling, LH; Seow, WK; Teh, BS; Thong, YH, 1989
)
0.68
"Delayed administration of tetrandrine, a novel broad-spectrum anti-inflammatory agent, to BB rats at a dosage schedule of 20 mg kg-1 day-1 from 79 days of age reduced the cumulative incidence of diabetes from 73."( Synergy between tetrandrine and FK506 in prevention of diabetes in BB rats.
Heil, BV; Lieberman, I; Seow, WK; Thong, YH, 1993
)
0.93
" The HA content in the supernatant of culture also decreased gradually with the increasing dosage of Tet or Chl after 24-h exposure."( Effects of tetrandrine and chlorpromazine on synthesis of collagen and hyaluronic acid in cultured human lung fibroblasts.
Jiang, ZM; Li, DG; Liu, HL; Lu, HM; Qi, F, 1995
)
0.68
" The dose-response curve of IL-1 alpha-induced uveitis was inhibited in a non-competitive manner."( Tetrandrine inhibits breakdown of blood-aqueous barrier induced by endotoxin and interleukin-1 alpha in rats.
Chiou, GC; Xiao, JG, 1996
)
1.74
" The fluctuation of the dose-response relaxation curves for the contraction of KCl induced by tetrandrine was observed with isolated rabbit corpus cavernosum tissue."( [The relaxation effects of tetrandrine on the corpus cavernosum tissue of rabbit in vitro].
Chen, J; Chen, Z; Liu, JH; Sun, CL; Wang, T; Xiao, HJ, 2003
)
0.83
" The dose-response curves of KCl were shifted to the right nonparallelly, and the maximal responses were depressed to (73."( [The relaxation effects of tetrandrine on the corpus cavernosum tissue of rabbit in vitro].
Chen, J; Chen, Z; Liu, JH; Sun, CL; Wang, T; Xiao, HJ, 2003
)
0.62
"Cellular model of multi-drug resistance was established in S180 tumor cell by means of the scheme of PFC chemotherapy at the dosage lower than that with curative effect."( [The effect of tetrandrine on the expression of the P170, LRP and TOPO II in S180's tumor cell induced by chemotherapy in the mice with acquired multi-drug resistance].
Li, GH; Li, WF; Li, XJ; Liu, MX; Sun, FJ; Wang, N; Yin, GP, 2005
)
0.68
" In vitro the release of tetrandrine from sustained release dosage forms went on a time of 12 hours which fitted non-Fickian diffusion with matrix erosion significantly."( Evaluation of tetrandrine sustained release calcium alginate gel beads in vitro and in vivo.
Chen, DW; Guan, SX; Lai, XP; Li, WZ; Ma, Y, 2009
)
1.02
" Drugs like tetrandrine may help to reduce drug dosage thus alleviate side effects."( Tetrandrine reverses drug resistance in isoniazid and ethambutol dual drug-resistant Mycobacterium tuberculosis clinical isolates.
Ji, Z; Li, L; Xu, K; Yan, J; Zhang, Z, 2015
)
2.24
" Tetradrine-tashionone II(A) -PLGA composite microspheres had slow-release effect, and it could significantly reduce the burst release, prolong the therapeutic time, decrease the dosage of drugs and provide a new idea and method to prepare traditional Chinese medicine compound."( [Studies on preparation by SPG membrane emulsification method and in vitro characterization of tetradrine-tashionone II(A)-PLGA composite microspheres].
Fu, TM; Guo, LW; Lu, J; Pan, LM; Zhang, M; Zhu, HX, 2015
)
0.42
" In this article, an ultra-high performance liquid chromatography tandem mass spectrometry method for the analysis of 10-hydroxycamptothecin and tetrandrine in plasma has been developed, validated, and utilized to compare the pharmacokinetics of both drugs in the original dosage form and administered as liposome complexes."( Pharmacokinetics of 10-hydroxycamptothecin-tetrandrine liposome complexes in rat by a simple and sensitive ultra-high performance liquid chromatography with tandem mass spectrometry.
Mao, J; Ping, Y; Shuang, R; Wang, M; Zou, J, 2020
)
1.02
" Low dosage (1."( Autophagy inhibition enhances anti-pituitary adenoma effect of tetrandrine.
Chen, C; Hu, Y; Jiang, S; Jiang, Y; Lyu, L; Ma, W; Wang, L; Wang, M; Wang, X; Wang, Z; Ye, F; Yin, S; Zhou, P; Zhou, Y, 2021
)
0.86
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Drug Classes (2)

ClassDescription
isoquinolinesA class of organic heteropolycyclic compound consisting of isoquinoline and its substitution derivatives.
bisbenzylisoquinoline alkaloidA type of benzylisoquinoline alkaloid whose structures are built up of two benzylisoquinoline units linked by ether bridges. Various structural patterns resulting from additional bridging between the two units by direct carbon-carbon bridging or by methylenedioxy groups are common.
[compound class information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Protein Targets (26)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Chain A, TYROSYL-DNA PHOSPHODIESTERASEHomo sapiens (human)Potency28.47100.004023.8416100.0000AID485290
Chain A, Beta-lactamaseEscherichia coli K-12Potency25.11890.044717.8581100.0000AID485341
Chain A, JmjC domain-containing histone demethylation protein 3AHomo sapiens (human)Potency50.11870.631035.7641100.0000AID504339
glp-1 receptor, partialHomo sapiens (human)Potency7.07950.01846.806014.1254AID624417
thioredoxin reductaseRattus norvegicus (Norway rat)Potency35.48130.100020.879379.4328AID588453
ATAD5 protein, partialHomo sapiens (human)Potency16.35350.004110.890331.5287AID504466
TDP1 proteinHomo sapiens (human)Potency5.72470.000811.382244.6684AID686978; AID686979
Smad3Homo sapiens (human)Potency27.71700.00527.809829.0929AID588855
EWS/FLI fusion proteinHomo sapiens (human)Potency21.00050.001310.157742.8575AID1259252; AID1259253; AID1259255; AID1259256
alpha-galactosidaseHomo sapiens (human)Potency0.89134.466818.391635.4813AID1467
IDH1Homo sapiens (human)Potency5.80480.005210.865235.4813AID686970
cellular tumor antigen p53 isoform aHomo sapiens (human)Potency31.62280.316212.443531.6228AID902
flap endonuclease 1Homo sapiens (human)Potency89.12510.133725.412989.1251AID588795
DNA polymerase iota isoform a (long)Homo sapiens (human)Potency89.12510.050127.073689.1251AID588590
nuclear receptor ROR-gamma isoform 1Mus musculus (house mouse)Potency26.75190.00798.23321,122.0200AID2546; AID2551
gemininHomo sapiens (human)Potency3.28560.004611.374133.4983AID624296; AID624297
survival motor neuron protein isoform dHomo sapiens (human)Potency14.12540.125912.234435.4813AID1458
DNA dC->dU-editing enzyme APOBEC-3G isoform 1Homo sapiens (human)Potency23.71500.058010.694926.6086AID588379
Polyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)Potency12.58930.316212.765731.6228AID881
Histamine H2 receptorCavia porcellus (domestic guinea pig)Potency12.58930.00638.235039.8107AID881
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Inhibition Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Muscarinic acetylcholine receptor M1Rattus norvegicus (Norway rat)Ki0.07300.00010.579710.0000AID397127
Muscarinic acetylcholine receptor M3Rattus norvegicus (Norway rat)Ki0.07300.00011.48339.1400AID397127
Muscarinic acetylcholine receptor M4Rattus norvegicus (Norway rat)Ki0.07300.00010.68688.2600AID397127
Muscarinic acetylcholine receptor M5Rattus norvegicus (Norway rat)Ki0.07300.00010.66618.2600AID397127
Replicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2IC50 (µMol)3.00000.00022.45859.9600AID1804171
Muscarinic acetylcholine receptor M2Rattus norvegicus (Norway rat)Ki0.07300.00010.58908.2600AID397127
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (21)

Processvia Protein(s)Taxonomy
lipid metabolic processPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
phospholipid metabolic processPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
apoptotic processPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
negative regulation of cell population proliferationPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
positive regulation of macrophage derived foam cell differentiationPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
arachidonic acid metabolic processPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
negative regulation of cell migrationPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
prostate gland developmentPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
regulation of epithelial cell differentiationPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
positive regulation of chemokine productionPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
positive regulation of peroxisome proliferator activated receptor signaling pathwayPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
positive regulation of keratinocyte differentiationPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
negative regulation of cell cyclePolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
negative regulation of growthPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
hepoxilin biosynthetic processPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
endocannabinoid signaling pathwayPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
cannabinoid biosynthetic processPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
lipoxin A4 biosynthetic processPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
linoleic acid metabolic processPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
lipid oxidationPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
lipoxygenase pathwayPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (18)

Processvia Protein(s)Taxonomy
iron ion bindingPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
calcium ion bindingPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
protein bindingPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
lipid bindingPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
linoleate 13S-lipoxygenase activityPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
arachidonate 8(S)-lipoxygenase activityPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
arachidonate 15-lipoxygenase activityPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
linoleate 9S-lipoxygenase activityPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
3'-5'-RNA exonuclease activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
RNA-dependent RNA polymerase activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
cysteine-type endopeptidase activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
mRNA 5'-cap (guanine-N7-)-methyltransferase activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
mRNA (nucleoside-2'-O-)-methyltransferase activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
mRNA guanylyltransferase activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
RNA endonuclease activity, producing 3'-phosphomonoestersReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
ISG15-specific peptidase activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
5'-3' RNA helicase activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
protein guanylyltransferase activityReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (9)

Processvia Protein(s)Taxonomy
nucleusPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
cytosolPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
cytoskeletonPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
plasma membranePolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
adherens junctionPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
focal adhesionPolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
membranePolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
extracellular exosomePolyunsaturated fatty acid lipoxygenase ALOX15BHomo sapiens (human)
double membrane vesicle viral factory outer membraneReplicase polyprotein 1abSevere acute respiratory syndrome coronavirus 2
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (140)

Assay IDTitleYearJournalArticle
AID1508630Primary qHTS for small molecule stabilizers of the endoplasmic reticulum resident proteome: Secreted ER Calcium Modulated Protein (SERCaMP) assay2021Cell reports, 04-27, Volume: 35, Issue:4
A target-agnostic screen identifies approved drugs to stabilize the endoplasmic reticulum-resident proteome.
AID1347154Primary screen GU AMC qHTS for Zika virus inhibitors2020Proceedings of the National Academy of Sciences of the United States of America, 12-08, Volume: 117, Issue:49
Therapeutic candidates for the Zika virus identified by a high-throughput screen for Zika protease inhibitors.
AID1224817Assays to identify small molecules inhibitory for eIF4E expression2015Chemistry & biology, Jul-23, Volume: 22, Issue:7
Internal Ribosome Entry Site-Based Bicistronic In Situ Reporter Assays for Discovery of Transcription-Targeted Lead Compounds.
AID1296008Cytotoxic Profiling of Annotated Libraries Using Quantitative High-Throughput Screening2020SLAS discovery : advancing life sciences R & D, 01, Volume: 25, Issue:1
Cytotoxic Profiling of Annotated and Diverse Chemical Libraries Using Quantitative High-Throughput Screening.
AID1347098qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SK-N-SH cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347103qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for OHS-50 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347100qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for LAN-5 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347082qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lassa (LASV) Arenavirus: LASV Primary Screen - GLuc reporter signal2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1346986P-glycoprotein substrates identified in KB-3-1 adenocarcinoma cell line, qHTS therapeutic library screen2019Molecular pharmacology, 11, Volume: 96, Issue:5
A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
AID1347101qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for BT-12 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347089qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for TC32 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347097qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Saos-2 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347083qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lassa (LASV) Arenavirus: Viability assay - alamar blue signal for LASV Primary Screen2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1347090qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for DAOY cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347102qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh18 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347107qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh30 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1346987P-glycoprotein substrates identified in KB-8-5-11 adenocarcinoma cell line, qHTS therapeutic library screen2019Molecular pharmacology, 11, Volume: 96, Issue:5
A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
AID1347106qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for control Hh wild type fibroblast cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347093qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SK-N-MC cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347096qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for U-2 OS cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347092qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for A673 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347091qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SJ-GBM2 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347095qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for NB-EBc1 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347105qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for MG 63 (6-TG R) cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347094qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for BT-37 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347099qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for NB1643 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347104qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for RD cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347108qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh41 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347086qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lymphocytic Choriomeningitis Arenaviruses (LCMV): LCMV Primary Screen - GLuc reporter signal2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1745845Primary qHTS for Inhibitors of ATXN expression
AID1769495Antiproliferative activity against human SJRH30 assessed as cell growth inhibition after 48 hrs by SRB assay
AID1347438Cytotoxicity against human PC3 cells assessed as reduction in cell viability after 48 hrs by MTT assay2018European journal of medicinal chemistry, Jan-01, Volume: 143Design and synthesis of novel C
AID674573Induction of rat C/EBPalpha expression transfected in human U937 cells at 25 uM after 24 hrs by luciferase reporter gene assay relative to ATRA2012Bioorganic & medicinal chemistry, Aug-01, Volume: 20, Issue:15
Discovery and preliminary SAR of bisbenzylisoquinoline alkaloids as inducers of C/EBPα.
AID356083Vasorelaxant activity against noradrenaline-induced contraction in Wistar rat thoracic aorta in presence of calcium2003Journal of natural products, Jul, Volume: 66, Issue:7
Simplified tetrandrine congeners as possible antihypertensive agents with a dual mechanism of action.
AID1743213Effect on MCL1 expression in vincristine-resistant human CEM cells at 5 uM measured after 24 hrs by Western blot analysis2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1769492Antiproliferative activity against human MDA-MB-453 assessed as cell growth inhibition after 48 hrs by SRB assay
AID356084Vasorelaxant activity against KCl-induced contraction in Wistar rat thoracic aorta in presence of calcium2003Journal of natural products, Jul, Volume: 66, Issue:7
Simplified tetrandrine congeners as possible antihypertensive agents with a dual mechanism of action.
AID1769496Antiproliferative activity against human HCC1806 assessed as cell growth inhibition after 48 hrs by SRB assay
AID1743209Inhibition of P-gp in vincristine-resistant human CEM cells assessed as potentiation of vincristine-induced apoptosis 1 uM measured after 48 hrs by propidium iodide staining based flow cytometry2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1769497Antiproliferative activity against human HCC70 assessed as cell growth inhibition after 48 hrs by SRB assay
AID247402Growth inhibitory activity against human cancer cell line in the NCI's anticancer drug screening program2005Journal of medicinal chemistry, Mar-10, Volume: 48, Issue:5
CHMIS-C: a comprehensive herbal medicine information system for cancer.
AID1743205Cytotoxicity against human HepaRG cells overexpressing EGFP-CYP3A4 assessed as reduction in cell viability at 10 uM measured after 24 hrs by propidium iodide staining based flow cytometry2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1769489Antiproliferative activity against human HCC1937 assessed as cell growth inhibition after 48 hrs by SRB assay
AID1608394Antibacterial activity against methicillin-resistant Staphylococcus aureus2019Bioorganic & medicinal chemistry, 09-01, Volume: 27, Issue:17
Natural product derived promising anti-MRSA drug leads: A review.
AID1480302Binding affinity to Ebolavirus glycoprotein/matrix protein VP40 at 50 uM incubated for 10 mins by thermal shift assay2018Journal of medicinal chemistry, 04-26, Volume: 61, Issue:8
Computer-Aided Discovery and Characterization of Novel Ebola Virus Inhibitors.
AID377948Selectivity index, ratio of ED50 for human KB cells to IC50 for chloroquine-sensitive Plasmodium falciparum W21999Journal of natural products, Jan, Volume: 62, Issue:1
Antiplasmodial and cytotoxic activity of natural bisbenzylisoquinoline alkaloids.
AID1057863Cytotoxicity against mouse dividing ScN2a-cl3 cells assessed as cell viability after 5 days by calcein-AM staining-based fluorescence assay2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Antiprion compounds that reduce PrP(Sc) levels in dividing and stationary-phase cells.
AID680710TP_TRANSPORTER: increase in Rhodamine 123 intracellular accumulation (R123: 4 uM, Tetrandine: 3 uM) in HCT15 cells1998Anti-cancer drugs, Mar, Volume: 9, Issue:3
The bisbenzylisoquinoline alkaloids, tetrandine and fangchinoline, enhance the cytotoxicity of multidrug resistance-related drugs via modulation of P-glycoprotein.
AID377946Selectivity index, ratio of ED50 for human KB cells to IC50 for chloroquine-sensitive Plasmodium falciparum D61999Journal of natural products, Jan, Volume: 62, Issue:1
Antiplasmodial and cytotoxic activity of natural bisbenzylisoquinoline alkaloids.
AID1743207Inhibition of P-gp in vincristine-resistant human CEM cells at 0.1 to 1 uM using calcein-AM as substrate preincubated for 30 mins followed by compound washout and subsequent substrate addition measured after 60 mins by flow cytometric analysis2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1663396Inhibition of P-glycoprotein-mediated Rhodamine-123 efflux in human MOLT4/DNR cells assessed as inhibition of P-glycoprotein efflux function at 1 uM incubated for 1 hr by flow cytometry2020Bioorganic & medicinal chemistry, 06-15, Volume: 28, Issue:12
Bisbenzylisoquinoline alkaloids and P-glycoprotein function: A structure activity relationship study.
AID588212Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in rodents2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID1480299Selectivity index, ratio of cytotoxic activity for HEK293 cells to IC50 for Ebolavirus glycoprotein/matrix protein VP40 entry in human HeLa cells2018Journal of medicinal chemistry, 04-26, Volume: 61, Issue:8
Computer-Aided Discovery and Characterization of Novel Ebola Virus Inhibitors.
AID1743212Effect on Bcl-XL expression in vincristine-resistant human CEM cells at 5 uM measured after 24 hrs by Western blot analysis2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1743221Cytotoxicity against HUVEC assessed as reduction in cell viability at 1 to 10 uM measured after 24 hrs by Celltiter-blue cell viability assay2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1743215Induction of mitochondrial membrane disruption in vincristine-resistant human CEM cells at 5 uM measured after 24 hrs by JC-1 dye based flow cytometric analysis2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1480306Increase in lysosome size in human fibroblasts after 24 hrs by LysoTracker Red DND-99-based assay2018Journal of medicinal chemistry, 04-26, Volume: 61, Issue:8
Computer-Aided Discovery and Characterization of Novel Ebola Virus Inhibitors.
AID1743210Antiproliferative activity against vincristine-resistant human CEM cells assessed as reduction in cell viability measured after 48 hrs by Celltiter-blue cell viability assay2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID377944Cytotoxicity against human KB cells after 72 hrs by SRB assay1999Journal of natural products, Jan, Volume: 62, Issue:1
Antiplasmodial and cytotoxic activity of natural bisbenzylisoquinoline alkaloids.
AID1687741Cytotoxicity against human K562 cells assessed as reduction in cell viability incubated for 48 hrs by MTT assay2020European journal of medicinal chemistry, Jan-15, Volume: 186Fangchinoline derivatives induce cell cycle arrest and apoptosis in human leukemia cell lines via suppression of the PI3K/AKT and MAPK signaling pathway.
AID1413119Antiproliferative activity against HEL cells after 48 hrs by MTT assay2018MedChemComm, Jul-01, Volume: 9, Issue:7
Design, synthesis and bioactivity investigation of tetrandrine derivatives as potential anti-cancer agents.
AID1663397Inhibition of P-glycoprotein-mediated Rhodamine-123 efflux in human MOLT4/DNR cells assessed as inhibition of P-glycoprotein efflux function at 10 uM incubated for 1 hr by flow cytometry2020Bioorganic & medicinal chemistry, 06-15, Volume: 28, Issue:12
Bisbenzylisoquinoline alkaloids and P-glycoprotein function: A structure activity relationship study.
AID977599Inhibition of sodium fluorescein uptake in OATP1B1-transfected CHO cells at an equimolar substrate-inhibitor concentration of 10 uM2013Molecular pharmacology, Jun, Volume: 83, Issue:6
Structure-based identification of OATP1B1/3 inhibitors.
AID1460372Antiproliferative activity against human HepG2 cells after 48 hrs by MTT assay2017Bioorganic & medicinal chemistry letters, 02-01, Volume: 27, Issue:3
Design, synthesis and biological activities of tetrandrine and fangchinoline derivatives as antitumer agents.
AID1743222Cytotoxicity against human PBMC assessed as reduction in cell viability at 1 to 10 uM measured after 24 hrs by propidium iodide staining based flow cytometry2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1743220Induction of mitochondrial membrane disruption in human HepG2 cells at 5 uM measured after 24 hrs by JC-1 dye based flow cytometric analysis2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1769494Antiproliferative activity against human A673 assessed as cell growth inhibition after 48 hrs by SRB assay
AID1440408Antifungal activity against fluconazole-resistant Candida albicans by broth microdilution assay2017Journal of medicinal chemistry, 03-23, Volume: 60, Issue:6
Tackling Fungal Resistance by Biofilm Inhibitors.
AID588213Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in non-rodents2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID977602Inhibition of sodium fluorescein uptake in OATP1B3-transfected CHO cells at an equimolar substrate-inhibitor concentration of 10 uM2013Molecular pharmacology, Jun, Volume: 83, Issue:6
Structure-based identification of OATP1B1/3 inhibitors.
AID697852Inhibition of electric eel AChE at 2 mg/ml by Ellman's method2012Bioorganic & medicinal chemistry, Nov-15, Volume: 20, Issue:22
Exploration of natural compounds as sources of new bifunctional scaffolds targeting cholinesterases and beta amyloid aggregation: the case of chelerythrine.
AID1608398Bactericidal activity against methicillin-resistant Staphylococcus aureus2019Bioorganic & medicinal chemistry, 09-01, Volume: 27, Issue:17
Natural product derived promising anti-MRSA drug leads: A review.
AID337514Cytotoxicity against human multidrug-sensitive KB3 cells1993Journal of natural products, Jan, Volume: 56, Issue:1
Cytotoxic and antimalarial bisbenzylisoquinoline alkaloids from Cyclea barbata.
AID1460373Antiproliferative activity against human MCF7 cells after 48 hrs by MTT assay2017Bioorganic & medicinal chemistry letters, 02-01, Volume: 27, Issue:3
Design, synthesis and biological activities of tetrandrine and fangchinoline derivatives as antitumer agents.
AID1687742Cytotoxicity against human MDA-MB-231 cells assessed as reduction in cell viability incubated for 48 hrs by MTT assay2020European journal of medicinal chemistry, Jan-15, Volume: 186Fangchinoline derivatives induce cell cycle arrest and apoptosis in human leukemia cell lines via suppression of the PI3K/AKT and MAPK signaling pathway.
AID1480298Inhibition of Ebolavirus glycoprotein/matrix protein VP40 entry in human HeLa cells after 4.5 hrs beta-lactamase reporter assay2018Journal of medicinal chemistry, 04-26, Volume: 61, Issue:8
Computer-Aided Discovery and Characterization of Novel Ebola Virus Inhibitors.
AID1743204Cytotoxicity against human HepaRG cells assessed as reduction in cell viability at 20 uM measured after 24 hrs by Celltiter-blue cell viability assay2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1347439Cytotoxicity against human WM9 cells assessed as reduction in cell viability after 48 hrs by MTT assay2018European journal of medicinal chemistry, Jan-01, Volume: 143Design and synthesis of novel C
AID1347437Cytotoxicity against human MDA-MB-231 cells assessed as reduction in cell viability after 48 hrs by MTT assay2018European journal of medicinal chemistry, Jan-01, Volume: 143Design and synthesis of novel C
AID1413123Antiproliferative activity against human MDA-MB-231 cells after 48 hrs by MTT assay2018MedChemComm, Jul-01, Volume: 9, Issue:7
Design, synthesis and bioactivity investigation of tetrandrine derivatives as potential anti-cancer agents.
AID337515Cytotoxicity against human multidrug-resistant KBV1 cells1993Journal of natural products, Jan, Volume: 56, Issue:1
Cytotoxic and antimalarial bisbenzylisoquinoline alkaloids from Cyclea barbata.
AID1663395Inhibition of P-glycoprotein-mediated Rhodamine-123 efflux in human MOLT4/DNR cells assessed as inhibition of P-glycoprotein efflux function at 0.3 uM incubated for 1 hr by flow cytometry2020Bioorganic & medicinal chemistry, 06-15, Volume: 28, Issue:12
Bisbenzylisoquinoline alkaloids and P-glycoprotein function: A structure activity relationship study.
AID1057864Ratio of LC50 for dividing mouse ScN2a-cl3 cells to EC50 for inhibition of RML prion protein2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Antiprion compounds that reduce PrP(Sc) levels in dividing and stationary-phase cells.
AID674580Cytotoxicity against human U937 cells assessed as cell growth at 25 uM after 24 hrs by alamar blue assay2012Bioorganic & medicinal chemistry, Aug-01, Volume: 20, Issue:15
Discovery and preliminary SAR of bisbenzylisoquinoline alkaloids as inducers of C/EBPα.
AID356082Displacement of [3H]diltiazem from benzodiazepine binding site of L-type calcium channel in Wistar rat cerebral cortex membrane2003Journal of natural products, Jul, Volume: 66, Issue:7
Simplified tetrandrine congeners as possible antihypertensive agents with a dual mechanism of action.
AID1687743Cytotoxicity against human MCF-7 cells assessed as reduction in cell viability incubated for 48 hrs by MTT assay2020European journal of medicinal chemistry, Jan-15, Volume: 186Fangchinoline derivatives induce cell cycle arrest and apoptosis in human leukemia cell lines via suppression of the PI3K/AKT and MAPK signaling pathway.
AID697853Inhibition of horse BChE at 2 mg/ml by Ellman's method2012Bioorganic & medicinal chemistry, Nov-15, Volume: 20, Issue:22
Exploration of natural compounds as sources of new bifunctional scaffolds targeting cholinesterases and beta amyloid aggregation: the case of chelerythrine.
AID1743208Effect on P-gp expression in vincristine-resistant human CEM cells at 1 uM measured after 1.5 hrs by immunostaining based flow cytometry2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID377945Antiplasmodial activity against chloroquine-sensitive Plasmodium falciparum D6 infected human erythrocytes as [3H]hypoxanthine uptake after 24 hrs1999Journal of natural products, Jan, Volume: 62, Issue:1
Antiplasmodial and cytotoxic activity of natural bisbenzylisoquinoline alkaloids.
AID377947Antiplasmodial activity against chloroquine-resistant Plasmodium falciparum W2 infected human erythrocytes as [3H]hypoxanthine uptake after 24 hrs1999Journal of natural products, Jan, Volume: 62, Issue:1
Antiplasmodial and cytotoxic activity of natural bisbenzylisoquinoline alkaloids.
AID1555764Cytotoxicity against human KBv200 cells assessed as reduction in cell viability2019European journal of medicinal chemistry, Aug-15, Volume: 176Natural products as multidrug resistance modulators in cancer.
AID1687740Cytotoxicity against human HEL cells assessed as reduction in cell viability incubated for 48 hrs by MTT assay2020European journal of medicinal chemistry, Jan-15, Volume: 186Fangchinoline derivatives induce cell cycle arrest and apoptosis in human leukemia cell lines via suppression of the PI3K/AKT and MAPK signaling pathway.
AID356081Displacement of [3H]prazosin from alpha1 adrenergic receptor in Wistar rat cerebral cortex membrane2003Journal of natural products, Jul, Volume: 66, Issue:7
Simplified tetrandrine congeners as possible antihypertensive agents with a dual mechanism of action.
AID1347436Cytotoxicity against human K562 cells assessed as reduction in cell viability after 48 hrs by MTT assay2018European journal of medicinal chemistry, Jan-01, Volume: 143Design and synthesis of novel C
AID1769493Antiproliferative activity against human MDA-MB-231 assessed as cell growth inhibition after 48 hrs by SRB assay
AID1438107Cytotoxicity against human PLC/PRF/5 cells assessed as growth inhibition after 24 hrs by MTT assay2017European journal of medicinal chemistry, Feb-15, Volume: 127Design and synthesis of novel tetrandrine derivatives as potential anti-tumor agents against human hepatocellular carcinoma.
AID1743217Induction of apoptosis in human HepG2 cells assessed as increase in PARP cleavage at 5 uM measured after 24 hrs by Western blot analysis2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID588211Literature-mined compound from Fourches et al multi-species drug-induced liver injury (DILI) dataset, effect in humans2010Chemical research in toxicology, Jan, Volume: 23, Issue:1
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
AID1743211Effect on AKT phosphorylation at Ser473 residue in vincristine-resistant human CEM cells at 5 uM measured after 24 hrs by Western blot analysis2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID1057862Inhibition of RML prion protein infected in mouse dividing ScN2a-cl3 cells expressing full length mouse PrP assessed as reduction of PrPsc level after 5 days by ELISA2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Antiprion compounds that reduce PrP(Sc) levels in dividing and stationary-phase cells.
AID1413120Antiproliferative activity against human K562 cells after 48 hrs by MTT assay2018MedChemComm, Jul-01, Volume: 9, Issue:7
Design, synthesis and bioactivity investigation of tetrandrine derivatives as potential anti-cancer agents.
AID502571Antivegetative activity against rat VSMC2010Bioorganic & medicinal chemistry letters, Sep-15, Volume: 20, Issue:18
Synthesis and biological activity of flavanone derivatives.
AID1413121Antiproliferative activity against human PC3 cells after 48 hrs by MTT assay2018MedChemComm, Jul-01, Volume: 9, Issue:7
Design, synthesis and bioactivity investigation of tetrandrine derivatives as potential anti-cancer agents.
AID1413122Antiproliferative activity against human WM9 cells after 48 hrs by MTT assay2018MedChemComm, Jul-01, Volume: 9, Issue:7
Design, synthesis and bioactivity investigation of tetrandrine derivatives as potential anti-cancer agents.
AID674572Induction of rat C/EBPalpha expression transfected in human U937 cells after 24 hrs by luciferase reporter gene assay relative to ATRA2012Bioorganic & medicinal chemistry, Aug-01, Volume: 20, Issue:15
Discovery and preliminary SAR of bisbenzylisoquinoline alkaloids as inducers of C/EBPα.
AID1743206Cytotoxicity against human HepG2 cells overexpressing EGFP-CYP3A4 assessed as reduction in cell viability at 15 uM measured after 24 hrs by propidium iodide staining based flow cytometry2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID680894TP_TRANSPORTER: drug resistance (vincristine) in KBV200 cells2004Cancer chemotherapy and pharmacology, Apr, Volume: 53, Issue:4
Characterization of tetrandrine, a potent inhibitor of P-glycoprotein-mediated multidrug resistance.
AID502572Cytoprotectant activity against H2O2-induced injury in HUVEC cells2010Bioorganic & medicinal chemistry letters, Sep-15, Volume: 20, Issue:18
Synthesis and biological activity of flavanone derivatives.
AID337512Antimalarial activity against chloroquine-sensitive Plasmodium falciparum D6 infected type A+ human erythrocytes by [3H]hypoxanthine uptake1993Journal of natural products, Jan, Volume: 56, Issue:1
Cytotoxic and antimalarial bisbenzylisoquinoline alkaloids from Cyclea barbata.
AID1480300Selectivity index, ratio of cytotoxic activity for human HeLa cells to IC50 for Ebolavirus glycoprotein/matrix protein VP40 entry in human HeLa cells2018Journal of medicinal chemistry, 04-26, Volume: 61, Issue:8
Computer-Aided Discovery and Characterization of Novel Ebola Virus Inhibitors.
AID1413124Cytotoxicity against human HL7702 cells after 48 hrs by MTT assay2018MedChemComm, Jul-01, Volume: 9, Issue:7
Design, synthesis and bioactivity investigation of tetrandrine derivatives as potential anti-cancer agents.
AID1440409Antifungal activity against fluconazole-susceptible Candida albicans by broth microdilution assay2017Journal of medicinal chemistry, 03-23, Volume: 60, Issue:6
Tackling Fungal Resistance by Biofilm Inhibitors.
AID1438106Cytotoxicity against human MHCC97L cells assessed as growth inhibition after 24 hrs by MTT assay2017European journal of medicinal chemistry, Feb-15, Volume: 127Design and synthesis of novel tetrandrine derivatives as potential anti-tumor agents against human hepatocellular carcinoma.
AID397127Displacement of [3H]QNB from rat brain muscarinic receptor
AID337516Cytotoxicity against mouse P388 cells1993Journal of natural products, Jan, Volume: 56, Issue:1
Cytotoxic and antimalarial bisbenzylisoquinoline alkaloids from Cyclea barbata.
AID1347435Cytotoxicity against human HEL cells assessed as reduction in cell viability after 48 hrs by MTT assay2018European journal of medicinal chemistry, Jan-01, Volume: 143Design and synthesis of novel C
AID1663394Inhibition of P-glycoprotein-mediated Rhodamine-123 efflux in human MOLT4/DNR cells assessed as Rhodamine-123 accumulation incubated for 1 hr by flow cytometry2020Bioorganic & medicinal chemistry, 06-15, Volume: 28, Issue:12
Bisbenzylisoquinoline alkaloids and P-glycoprotein function: A structure activity relationship study.
AID337513Antimalarial activity against chloroquine-resistant Plasmodium falciparum W2 infected type A+ human erythrocytes by [3H]hypoxanthine uptake1993Journal of natural products, Jan, Volume: 56, Issue:1
Cytotoxic and antimalarial bisbenzylisoquinoline alkaloids from Cyclea barbata.
AID1480305Inhibition of NPC1 in human fibroblasts assessed as increase in cholesterol accumulation after 24 hrs by filipin staining-based assay2018Journal of medicinal chemistry, 04-26, Volume: 61, Issue:8
Computer-Aided Discovery and Characterization of Novel Ebola Virus Inhibitors.
AID1743203Cytotoxicity against human HepaRG cells assessed as reduction in cell viability at 10 uM measured after 24 hrs by Celltiter-blue cell viability assay2020European journal of medicinal chemistry, Dec-01, Volume: 207Synthesis, biological evaluation and toxicity of novel tetrandrine analogues.
AID674579Cytotoxicity against human U937 cells after 24 hrs by alamar blue assay2012Bioorganic & medicinal chemistry, Aug-01, Volume: 20, Issue:15
Discovery and preliminary SAR of bisbenzylisoquinoline alkaloids as inducers of C/EBPα.
AID504810Antagonists of the Thyroid Stimulating Hormone Receptor: HTS campaign2010Endocrinology, Jul, Volume: 151, Issue:7
A small molecule inverse agonist for the human thyroid-stimulating hormone receptor.
AID504812Inverse Agonists of the Thyroid Stimulating Hormone Receptor: HTS campaign2010Endocrinology, Jul, Volume: 151, Issue:7
A small molecule inverse agonist for the human thyroid-stimulating hormone receptor.
AID1745855NCATS anti-infectives library activity on the primary C. elegans qHTS viability assay2023Disease models & mechanisms, 03-01, Volume: 16, Issue:3
In vivo quantitative high-throughput screening for drug discovery and comparative toxicology.
AID1745854NCATS anti-infectives library activity on HEK293 viability as a counter-qHTS vs the C. elegans viability qHTS2023Disease models & mechanisms, 03-01, Volume: 16, Issue:3
In vivo quantitative high-throughput screening for drug discovery and comparative toxicology.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID651635Viability Counterscreen for Primary qHTS for Inhibitors of ATXN expression
AID540299A screen for compounds that inhibit the MenB enzyme of Mycobacterium tuberculosis2010Bioorganic & medicinal chemistry letters, Nov-01, Volume: 20, Issue:21
Synthesis and SAR studies of 1,4-benzoxazine MenB inhibitors: novel antibacterial agents against Mycobacterium tuberculosis.
AID588519A screen for compounds that inhibit viral RNA polymerase binding and polymerization activities2011Antiviral research, Sep, Volume: 91, Issue:3
High-throughput screening identification of poliovirus RNA-dependent RNA polymerase inhibitors.
AID1804171DRC analysis by immunofluorescence from Article 10.1128/AAC.00819-20: \\Identification of Antiviral Drug Candidates against SARS-CoV-2 from FDA-Approved Drugs.\\2020Antimicrobial agents and chemotherapy, 06-23, Volume: 64, Issue:7
Identification of Antiviral Drug Candidates against SARS-CoV-2 from FDA-Approved Drugs.
AID1159607Screen for inhibitors of RMI FANCM (MM2) intereaction2016Journal of biomolecular screening, Jul, Volume: 21, Issue:6
A High-Throughput Screening Strategy to Identify Protein-Protein Interaction Inhibitors That Block the Fanconi Anemia DNA Repair Pathway.
AID1159550Human Phosphogluconate dehydrogenase (6PGD) Inhibitor Screening2015Nature cell biology, Nov, Volume: 17, Issue:11
6-Phosphogluconate dehydrogenase links oxidative PPP, lipogenesis and tumour growth by inhibiting LKB1-AMPK signalling.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (865)

TimeframeStudies, This Drug (%)All Drugs %
pre-1990103 (11.91)18.7374
1990's202 (23.35)18.2507
2000's219 (25.32)29.6817
2010's256 (29.60)24.3611
2020's85 (9.83)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 36.15

According to the monthly volume, diversity, and competition of internet searches for this compound, as well the volume and growth of publications, there is estimated to be strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index36.15 (24.57)
Research Supply Index6.79 (2.92)
Research Growth Index4.78 (4.65)
Search Engine Demand Index57.69 (26.88)
Search Engine Supply Index2.18 (0.95)

This Compound (36.15)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials8 (0.90%)5.53%
Reviews40 (4.52%)6.00%
Case Studies1 (0.11%)4.05%
Observational0 (0.00%)0.25%
Other835 (94.46%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Clinical Trials (3)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
Tetrandrine Tablets Used in Hospitalized Adults With COVID-19: a Double-blind, Placebo-controlled, Randomised Trial [NCT05697029]Phase 4414 participants (Anticipated)Interventional2023-12-31Not yet recruiting
Clinical Study of Tetrandrine Tablets Adjuvant Treatment With COVID-19 [NCT04308317]Phase 460 participants (Anticipated)Interventional2020-03-05Enrolling by invitation
Comparing the Efficacy of Tetrandrine Combined With Methotrexate and Methotrexate Alone in the Treatment of Rheumatoid arthritis---a Randomized, Double-blinded, Placebo-controlled, Multicenter Study [NCT05245448]240 participants (Anticipated)Interventional2022-02-22Not yet recruiting
[information is prepared from clinicaltrials.gov, extracted Sep-2024]