Page last updated: 2024-12-08

strychnine

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Description

Strychnine: An alkaloid found in the seeds of STRYCHNOS NUX-VOMICA. It is a competitive antagonist at glycine receptors and thus a convulsant. It has been used as an analeptic, in the treatment of nonketotic hyperglycinemia and sleep apnea, and as a rat poison. [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

strychnine : A monoterpenoid indole alkaloid that is strychnidine bearing a keto substituent at the 10-position. [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]

FloraRankFlora DefinitionFamilyFamily Definition
GlycinegenusA non-essential amino acid. It is found primarily in gelatin and silk fibroin and used therapeutically as a nutrient. It is also a fast inhibitory neurotransmitter.[MeSH]FabaceaeThe large family of plants characterized by pods. Some are edible and some cause LATHYRISM or FAVISM and other forms of poisoning. Other species yield useful materials like gums from ACACIA and various LECTINS like PHYTOHEMAGGLUTININS from PHASEOLUS. Many of them harbor NITROGEN FIXATION bacteria on their roots. Many but not all species of beans belong to this family.[MeSH]
StrychnosgenusA plant genus of the family LOGANIACEAE (classified by some botanists as Strychnaceae).[MeSH]LoganiaceaeA plant family of the order Gentianales, subclass Asteridae, class Magnoliopsida. They have leaflike appendages at the base of the leafstalks, have terminal flower clusters. Petals have four or five overlapping lobes and the fruit is a capsule containing winged or wingless seeds.[MeSH]

Cross-References

ID SourceID
PubMed CID441071
CHEMBL ID227934
CHEBI ID28973
SCHEMBL ID93798
SCHEMBL ID14029424
MeSH IDM0020628

Synonyms (86)

Synonym
CHEBI:28973 ,
AB01275436-01
gtpl347
[3h]strychnine
(1r,11s,18s,20r,21r,22s)-12-oxa-8,17-diazaheptacyclo[15.5.2.0^{1,18}.0^{2,7}.0^{8,22}.0^{11,21}.0^{15,20}]tetracosa-2,4,6,14-tetraen-9-one
gtpl2360
strychnin
stricnina
sanaseed
dolco mouse cereal
kwik-kil
mole death
mouse-nots
mouse-rid
strychnidin-10-one
nsc-5365
ro-dex
mouse-tox
pied piper mouse seed
strychnos
certox
PDSP2_000441
MEGXP0_001768
57-24-9
strychnine
C06522
NCGC00163241-01
NCGC00142530-02
NCISTRUC2_000542
NCISTRUC1_001823
nsc 5365
rcra waste number p108
stricnina [italian]
rcra waste no. p108
boomer-rid
strychnine [bsi:iso]
hare-rid
strychnin [german]
epa pesticide chemical code 076901
estricnina
gopher bait
gopher-gitter
einecs 200-319-7
un1692
hsdb 2001
caswell no. 805
strychinos
HMS2089C04
strychninum
CHEMBL227934
(-)-strychnine
S0249
sy9 ,
NCGC00186632-01
(11s,18s,22s,1r,20r,21r)-12-oxa-8,17-diazaheptacyclo[15.5.2.0<1,18>.0<2,7>.0<8 ,22>.0<11,21>.0<15,20>]tetracosa-2,4,6,14-tetraen-9-one
dtxsid6023600 ,
dtxcid503600
cas-57-24-9
tox21_112038
AKOS015955688
strychnine [nf]
h9y79vd43j ,
(4br,7as,8ar,13s,13ar,13bs)-5,6,7a,8,8a,11,13a,13b-octahydro-13h-13,14-ethano-7,9-methanooxepino(3,4-a)pyrrolo(2,3-d)carbazol-15-one
unii-h9y79vd43j
(4br,7as,8ar,13s,13ar,13bs)-5,6,7a,8,8a,11,13a,13b-octahydro-13h-13,14-ethano-7,9-methanooxepino[3,4-a]pyrrolo[2,3-d]carbazol-15-one
strychnine [vandf]
strychnine [who-dd]
strychnine [iso]
strychnine [mi]
strychnine [hsdb]
strychninum [hpus]
(4ar,4a1r,5as,8ar,8a1s,15as)-4a1,5,5a,7,8,8a1,15,15a-octahydro-2h-4,6-methanoindolo[3,2,1-ij]oxepino[2,3,4-de]pyrrolo[2,3-h]quinolin-14(4ah)-one
SCHEMBL93798
SCHEMBL14029424
vauquline
Q-100661
strynchnos
AC-8050
strychnine, pestanal(r), analytical standard
strychnine, european pharmacopoeia (ep) reference standard
(-)-strychnin
NCGC00186632-02
(4ar,5as,8ar,13as,15as,15br)-4a,5,5a,7,8,13a,15,15a,15b,16-decahydro-2h-4,6-methanoindolo[3,2,1-ij]oxepino[2,3,4-de]pyrrolo[2,3-h]quinolin-14-one
bdbm50225707
Q194406
strychnine, (solid)

Research Excerpts

Overview

Strychnine is a highly toxic alkaloid found in both naturally occurring compounds and commercial products. It inhibits the physiological actions of glycine, an important inhibitory neurotransmitter in the spinal cord, brain stem, and other areas of vertebrates.

ExcerptReferenceRelevance
"Strychnine is a natural product that, through isolation, structural elucidation and synthetic efforts, shaped the field of organic chemistry. "( Biosynthesis of strychnine.
Caputi, L; Grabe, V; Grzech, D; Hernández Lozada, NJ; Hong, B; Kamileen, MO; López, CER; O'Connor, SE; Sonawane, P, 2022
)
2.51
"Strychnine is an alkaloid with strong toxic properties. "( The Usefulness of MS
Posyniak, A; Sell, B; Śniegocki, T, 2019
)
1.96
"Strychnine neuronography is a historical technique that induces activity in cortical areas through means of local administration of the substance strychnine."( Biological Characteristics of Connection-Wise Resting-State Functional Connectivity Strength.
Barrett, LF; Mantini, D; Pijnenburg, R; Scholtens, LH; van den Heuvel, MP; Vanduffel, W, 2019
)
1.24
"Strychnine is a potent, naturally occurring neurotoxin that effectively protects plants from animal pests by deterring feeding behavior. "( A Drosophila Gustatory Receptor Required for Strychnine Sensation.
Lee, Y; Montell, C; Moon, SJ; Wang, Y, 2015
)
2.12
"Strychnine is a neurotoxin and an active ingredient in some rodenticides which are placed in burrows to suppress pocket gopher (Thomomys talpoides) populations in range and crop land in western North America. "( A population model of the impact of a rodenticide containing strychnine on Great Basin Gophersnakes (Pituophis catenifer deserticola).
Bishop, CA; Elliott, JE; Kirk, DA; Nantel, P; Reed, E; Williams, KE, 2016
)
2.12
"Strychnine is a highly toxic alkaloid found in both naturally occurring compounds and commercial products. "( A Case of Strychnine Poisoning from a Southeast Asian Herbal Remedy.
Pomerleau, AC; Singhapricha, T, 2017
)
2.3
"Strychnine is a complex molecule that inhibits the physiological actions of glycine, an important inhibitory neurotransmitter in the spinal cord, brain stem, and other areas of many vertebrates. "( Identification of a second glycine-like fragment on the strychnine molecule.
Aprison, MH; Galvez-Ruano, E; Lipkowitz, KB, 1995
)
1.98
"strychnine, is a nociceptive event, supporting the use of this preparation as an experimental model of allodynia."( Innocuous hair deflection evokes a nociceptive-like activation of catechol oxidation in the rat locus coeruleus following intrathecal strychnine: a biochemical index of allodynia using in vivo voltammetry.
Duggan, S; Jhamandas, K; Loomis, C; Milne, B, 1996
)
1.22
"Strychnine poisoning is an unusual but dramatic poisoning in which convulsions are the major threat to life. "( Strychnine poisoning.
Smith, BA,
)
3.02
"Strychnine hydrochloride is a naturally occurring alkaloid in its protonated form."( Structure of strychnine hydrochloride sesquihydrate.
Chattopadhyay, D; Ghosh, R; Iitaka, Y; Roychowdhury, P, 1989
)
1.37

Effects

Strychnine has an affinity of approximately 10(5) M-1 at the unliganded m1, m2, and m4 receptors but is 5-10-fold weaker at m3 receptors. It has an inhibitory effect on a variety of tumors.

Strychnine has an affinity of approximately 10(5) M-1 at the unliganded m1, m2, and m4 receptors. It is 5-10-fold weaker at m3 receptors.

ExcerptReferenceRelevance
"Strychnine has an affinity of approximately 10(5) M-1 at the unliganded m1, m2, and m4 receptors but is 5-10-fold weaker at m3 receptors."( Detection, quantitation, and verification of allosteric interactions of agents with labeled and unlabeled ligands at G protein-coupled receptors: interactions of strychnine and acetylcholine at muscarinic receptors.
Birdsall, NJ; Lazareno, S, 1995
)
1.21
"Strychnine has an inhibitory effect on a variety of tumors. "( Chemical constituents, pharmacological action, antitumor application, and toxicity of Strychnine Semen from Strychnons pierriana A.W.Hill.: A review.
Bao, X; Fan, C; He, G; Liang, X; Liu, W; Tang, X; Wang, X, 2023
)
2.58
"Strychnine has an interesting oligocyclic structure of seven condensed rings. "( Charge density of (-)-strychnine from 100 to 15 K, a comparison of four data sets.
Luger, P; Messerschmidt, M; Scheins, S, 2005
)
2.09
"Strychnine has an affinity of approximately 10(5) M-1 at the unliganded m1, m2, and m4 receptors but is 5-10-fold weaker at m3 receptors."( Detection, quantitation, and verification of allosteric interactions of agents with labeled and unlabeled ligands at G protein-coupled receptors: interactions of strychnine and acetylcholine at muscarinic receptors.
Birdsall, NJ; Lazareno, S, 1995
)
1.21
"Strychnine has an inhibitory effect on a variety of tumors. "( Chemical constituents, pharmacological action, antitumor application, and toxicity of Strychnine Semen from Strychnons pierriana A.W.Hill.: A review.
Bao, X; Fan, C; He, G; Liang, X; Liu, W; Tang, X; Wang, X, 2023
)
2.58
"Isostrychnine has shown the best pharmacological profile exhibiting an IC50 value of 1.6 μM at α1 glycine receptors and 3.7-fold preference towards the α1 subtype."( Structure-activity relationships of strychnine analogs at glycine receptors.
Heller, E; Holzgrabe, U; Jensen, AA; Mohsen, AM; Zlotos, DP, 2014
)
1.19
"Strychnine-related death has been described since the 19th century. "( An unusual case of strychnine poisoning.
Hoizey, G; Lefrancq, T; Prat, S; Saint-Martin, P, 2015
)
2.19
"Strychnine has historically been the most effective toxicant for pocket gophers, but its use is currently limited in the United States; alternative registered toxicants have not proven effective."( Novel and current rodenticides for pocket gopher Thomomys spp. management in vineyards: what works?
Baldwin, RA; Meinerz, R; Witmer, GW, 2017
)
1.18
"Strychnine has an interesting oligocyclic structure of seven condensed rings. "( Charge density of (-)-strychnine from 100 to 15 K, a comparison of four data sets.
Luger, P; Messerschmidt, M; Scheins, S, 2005
)
2.09
"Strychnine has its predominant effect on sustained (lateral) inhibition compared with the more transient forms of inhibition."( Varieties of inhibition in the processing and control of processing in the mammalian cochlear nucleus.
Evans, EF; Zhao, W, 1993
)
1.01

Actions

Strychnine caused an increase in GlyR current density, without changes in the apparent affinity. It induced an increase of the upper cutoff in almost half of the neurons.

ExcerptReferenceRelevance
"Strychnine caused an increase in GlyR current density, without changes in the apparent affinity."( Anti-homeostatic synaptic plasticity of glycine receptor function after chronic strychnine in developing cultured mouse spinal neurons.
Aguayo, LG; Carrasco, MA; Castro, PA; Cuevas, M; Izaurieta, P; Sepulveda, FJ; Tapia, JC; van Zundert, B, 2007
)
1.29
"Strychnine induced an increase of the upper cutoff in almost half of the neurons."( GABAergic and glycinergic inhibition sharpens tuning for frequency modulations in the inferior colliculus of the big brown bat.
Grothe, B; Koch, U, 1998
)
1.02

Treatment

Strychnine treatment was initiated because it is a specific antagonist of glycine at postsynaptic membranes. The treatm attenuated the main components of the fibrovascular tissue, wet weight, vascularization (Hb content) and macrophage recruitment.

ExcerptReferenceRelevance
"Strychnine treatments resulted in 100% efficacy after two treatment periods. "( Novel and current rodenticides for pocket gopher Thomomys spp. management in vineyards: what works?
Baldwin, RA; Meinerz, R; Witmer, GW, 2017
)
1.9
"Strychnine treatment attenuated the main components of the fibrovascular tissue, wet weight, vascularization (Hb content), macrophage recruitment (NAG activity), collagen deposition and the levels of vascular endothelial growth factor (VEGF), tumour necrosis factor (TNF)-α and transforming growth factor (TGF-β)."( Strychnine inhibits inflammatory angiogenesis in mice via down regulation of VEGF, TNF-α and TGF-β.
Agarwal, SS; Saraswati, S, 2013
)
2.55
"The strychnine-treated groups had more SDIF than the control groups (P<.05, Mann-Whitney U test)."( Potentiation of panic-like behaviors of the rat by subconvulsive doses of strychnine.
de Paula, HM; Hoshino, K, 2004
)
1.04
"Strychnine-treatment resulted in an increase in the number of alpha-adrenoceptors, determined by measuring the binding of [3H]prazosin."( Effect of strychnine on the contractile response of rat vas deferens.
Hata, F; Ishida, H; Ishikawa, Y; Kihira, Y; Koda, N; Kondo, E; Noguchi, Y, 1984
)
1.39
"Strychnine treatment was initiated because it is a specific antagonist of glycine at postsynaptic membranes."( Strychnine therapy in nonketotic hyperglycinemia.
Arneson, D; Ch'ien, LT; Chance, P; Wilroy, RS, 1979
)
2.42
"In strychnine-treated mice, diazepam protected against deaths following tonic extensor seizures, but orphenadrine did not."( Comparison of depressant actions of orphenadrine and diazepam on hypertonic skeletal muscle activity.
Williamson, HE,
)
0.65
"Strychnine treated rats, at all doses, vocalized consistently in response to light cutaneous stimulation; a significant proportion of glycine treated rats also vocalized, but were not as sensitive to mild stimulation."( Hyperalgesia induced by altered glycinergic activity at the spinal cord.
Beyer, C; Komisaruk, BR; Roberts, LA, 1985
)
0.99
"The treatment with strychnine did not show any protection, whereas kynurenic acid ameliorated renal ischemia reperfusion-induced AKI."( Glycine aggravates ischemia reperfusion-induced acute kidney injury through N-Methyl-D-Aspartate receptor activation in rats.
Arora, S; Kaur, A; Kaur, T; Singh, AP, 2014
)
0.72
"Pretreatment with strychnine (0.25 mg/kg i.p.) did not modify the circling behaviour induced by baclofen."( Circling behaviour induced by intranigral injection of baclofen in rats.
Kaakkola, S, 1980
)
0.58
"Pretreatment with strychnine prevented the increase in SS-mediated inhibition of AC activity."( Glycine increases the number of somatostatin receptors and somatostatin-mediated inhibition of the adenylate cyclase system in the rat hippocampus.
Arilla, E; Puebla, L, 1996
)
0.62
"Pretreatment with strychnine prevented most of the cardiorespiratory depressant effects of taurine and glycine."( Comparative cardiorespiratory effects produced by taurine and glycine applied to the ventral surface of the medulla.
Da Silva, AM; Gatti, PJ; Gillis, R; Holtman, JR; Namath, IJ; Souza, JD, 1985
)
0.59

Toxicity

Administering strychnine, a potent antagonist of glycine receptors, to pregnant rats caused marked toxic effects on the ensuing embryos. Theanine attenuated the LD50 of stry Schnine.

ExcerptReferenceRelevance
" The comprehensive toxic screen, which provides multiple modalities of drug analysis, will be a key diagnostic tool in the further investigation of these inherently toxic agents and their impact on syndromes of cocaine intoxication."( Clinical toxicity of cocaine adulterants.
Shannon, M, 1988
)
0.27
"The intravenous LD50 of the hypothalamic tetradecapeptide somatostatin was determined in mice and rats of both sexes."( Sex-related toxicity of somatostatin and its interaction with pentobarbital and strychnine.
Antonetti, F; Borrelli, F; Cantelmo, A; Caprino, L, 1983
)
0.49
" Survival time was prolonged in rats treated with the toxic metals by pretreatment with NKK-105."( Effects of diiospropyl-1,3-dithiol-2-ylidene malonate (NKK-105) on acute toxicity of various drugs and heavy metals.
Hosokawa, T; Kitagawa, H; Saito, H; Sakamoto, K; Sugimoto, T; Yanaura, S, 1982
)
0.26
" Agonists of the glycine recognition site of NMDA receptors (D-serine and D-alanine) did not have any toxic effect in hippocampal cultures, whereas competitive blockade of the glycine site by 7-chlorokynurenic acid was neuroprotective."( Glycine-induced neurotoxicity in organotypic hippocampal slice cultures.
Barth, A; Barth, L; Newell, DW; Nguyen, LB, 2005
)
0.33
"Administering strychnine, a potent antagonist of glycine receptors, to pregnant rats caused marked toxic effects on the ensuing embryos."( Strychnine induces embryotoxicity in rat neurulation.
García-Alcocer, G; Martínez-Torres, A; Miledi, R,
)
1.93
" At oral doses up to 1000 mg/kg using rats, Quassin was not toxic in acute and short-term tests, but some reversible piloerection, decrease in motor activity, and a partial loss of righting reflex were found in mice at 500 mg/kg."( Final report of the safety assessment of Alcohol Denat., including SD Alcohol 3-A, SD Alcohol 30, SD Alcohol 39, SD Alcohol 39-B, SD Alcohol 39-C, SD Alcohol 40, SD Alcohol 40-B, and SD Alcohol 40-C, and the denaturants, Quassin, Brucine Sulfate/Brucine,
, 2008
)
0.35
" The changes of strychnine and brucine contents before and after processing and after decoction of Ma Qian Zi (Semen Strychni) were determined with reversed-phase high-performance liquid chromatography, which were controlled within ranges stipulated in the Pharmacopeia; Adverse events were analyzed; Blood strychnine and brucine contents in 10 cases who had taken the drugs were determined."( Safety of individual medication of Ma Qian Zi (semen strychni) based upon assessment of therapeutic effects of Guo's therapy against moderate fluorosis of bone.
Chen, YJ; Guo, PH; Kong, HY; Sang, ZC; Wang, HM; Wu, GN; Zhang, ZJ; Zhou, W, 2011
)
0.72
" 3) Altogether 18 cases had adverse events, with an incidence rate of 15."( Safety of individual medication of Ma Qian Zi (semen strychni) based upon assessment of therapeutic effects of Guo's therapy against moderate fluorosis of bone.
Chen, YJ; Guo, PH; Kong, HY; Sang, ZC; Wang, HM; Wu, GN; Zhang, ZJ; Zhou, W, 2011
)
0.37
" The data demonstrate that toxic effects of strychnine in mice can be prevented if a basal level of glycinergic signalling is maintained through receptor activation by ivermectin."( In vivo protection against strychnine toxicity in mice by the glycine receptor agonist ivermectin.
Breitinger, HG; Maher, A; Radwan, R, 2014
)
0.96
" LD50 of strychnine and hypnotic ED50 of pentobarbital sodium with or without theanine for mice were tested according to Bliss' case."( Theanine enhanced both the toxicity of strychnine and anticonvulsion of pentobarbital sodium.
Gao, JC; Wu, BL; Yang, W; Yu, XC, 2016
)
1.12
" Theanine attenuated the LD50 of strychnine."( Theanine enhanced both the toxicity of strychnine and anticonvulsion of pentobarbital sodium.
Gao, JC; Wu, BL; Yang, W; Yu, XC, 2016
)
0.98
"\ Next, we assessed the reversibility of toxic effect."( Zebrafish model for assessing induced organ toxicity by Strychnos\ nux-vomica.
Cao, D; Fan, J; Feng, Y; Lin, R; Ma, Z; Ni, Y; Tian, J; Wang, C; Wang, J; Zhao, C; Zou, Q, 2016
)
0.43
"Zebrafish model is suitable for confirming\ the toxic target organs for Chinese traditional medicine."( Zebrafish model for assessing induced organ toxicity by Strychnos\ nux-vomica.
Cao, D; Fan, J; Feng, Y; Lin, R; Ma, Z; Ni, Y; Tian, J; Wang, C; Wang, J; Zhao, C; Zou, Q, 2016
)
0.43
"Strychnos alkaloids (SAs) are the main toxic constituents in Semen Strychni, a traditional Chinese medicine, which is known for its fatal neurotoxicity."( Prophylactic Neuroprotection of Total Glucosides of Paeoniae Radix Alba against Semen Strychni-Induced Neurotoxicity in Rats: Suppressing Oxidative Stress and Reducing the Absorption of Toxic Components.
Chen, X; Chu, Y; Li, S; Sun, L; Zhang, R, 2018
)
0.48
"Brucine is one of the main bioactive and toxic constituents of the herb drug Semen Strychni."( Cyp3a11 metabolism-based chronotoxicity of brucine in mice.
Gao, L; Lin, Y; Wang, S; Wu, B; Yang, Z; Zhou, Z, 2019
)
0.51
" According to pharmacokinetic experiments, herb dosing at ZT18 generated higher plasma concentrations (and systemic exposure) of strychnine and brucine (two toxic constituents) compared with ZT6 dosing."( Chronotoxicity of Semen Strychni is associated with circadian metabolism and transport in mice.
Gao, L; Lin, L; Lin, Y; Lu, D; Wang, S; Wu, B; Xing, H; Zhao, Y, 2021
)
0.83
" In addition, its richness in bioactive compounds gives it an antioxidant potential, and it is not toxic in acute and sub-acute toxicity."( Revealing the most effective anticonvulsant part of Malvaviscus arboreus Dill. Ex Cav. and its acute and sub-acute toxicity.
Adassi, MB; Foutsop, AF; Kom, TD; Ngo Bum, E; Ngoupaye, GT; Yassi, FB, 2023
)
0.91
"Brucine (BRU) and brucine N-oxide (BNO) are prominent, bioactive, and toxic alkaloids in crude and processed Semen Strychni."( A Combination of In Silico ADMET Prediction, In Vivo Toxicity Evaluation, and Potential Mechanism Exploration of Brucine and Brucine N-oxide-A Comparative Study.
Dai, Z; Gao, Y; Guo, L; Han, Y; Ma, S; Zhang, J, 2023
)
0.91

Pharmacokinetics

The developed method was successfully applied for the first time to pharmacokinetic studies of Brucine, strychnine and brucine N-oxide in rats. LC-MS/MS was used to detect simultaneously the concentrations of bruCine and strychenine in mice plasm at-different time intervals after administration.

ExcerptReferenceRelevance
"To study the pharmacokinetic process about the concentration in rat plasma of the alkaloids from processed seeds of Strychnos nux-vomica with RP-HPLC method."( [Pharmacokinetics of the alkaloids from the processed seeds of Strychnos nux-vomica in rats].
Cai, BC; Pan, Y; Wang, TS; Xu, XY, 2003
)
0.32
" Furthermore, a safety evaluation and pharmacodynamic analysis of LB, including acute dermal toxicity, skin irritation, and analgesic and anti-inflammatory effects were investigated."( Preparation of liposomal brucine and its pharmaceutical/pharmacodynamic characterization.
Liu, CS; Qin, XQ; Shen, X; Wang, QY; Yang, BC; Yuan, Y, 2007
)
0.34
" The safety and pharmacodynamic action of LB, a new transdermal preparation, were investigated in details with the use of white rabbits, guinea-pigs and mice, respectively."( [Study on safety and pharmacodynamic action of transdermal liposomal brucine].
Liu, C; Qin, X; Shen, X; Wang, Q; Yang, B; Yuan, Y, 2008
)
0.35
" Pharmacodynamic evaluation revealed that the BLH showed a better therapeutic efficacy than that of the BH."( Preparation and pharmaceutical/pharmacodynamic evaluation of topical brucine-loaded liposomal hydrogel.
Liu, C; Shen, X; Wang, J; Yang, B; Yuan, Y; Zhu, D, 2009
)
0.35
"To compare the pharmacokinetic characteristics of brucine following intravenous administration of liposomes, containing total alkaloids from seed of Strychnos nux-vomica, to rats with different phospholipids composition."( [Pharmacokinetics of brucine in rats after intravenous administration of liposomes containing total alkaloids from seed of Strychnos nux-vomica].
Cai, B; Chen, J; Chen, M; Fang, Y; Hou, T; Xiao, H; Zhang, T, 2011
)
0.37
" Pharmacokinetic analysis was performed by 3P97 program."( [Pharmacokinetics of brucine in rats after intravenous administration of liposomes containing total alkaloids from seed of Strychnos nux-vomica].
Cai, B; Chen, J; Chen, M; Fang, Y; Hou, T; Xiao, H; Zhang, T, 2011
)
0.37
" In addition, besides that AUC of brucine was slightly increased, most pharmacokinetic parameters were not significantly changed after administration of the novel liposome compared with those of SPC liposome."( [Pharmacokinetics of brucine in rats after intravenous administration of liposomes containing total alkaloids from seed of Strychnos nux-vomica].
Cai, B; Chen, J; Chen, M; Fang, Y; Hou, T; Xiao, H; Zhang, T, 2011
)
0.37
" The results of dose-dependent pharmacokinetic behavior under different administration routes may account for the significantly different toxicities of brucine between intravenous and oral administration."( Pharmacokinetics of brucine after intravenous and oral administration to rats.
Cai, BC; Cai, H; Chen, J; Chen, ZP; Fang, Y; Hu, RR; Hu, W; Liu, X; Lu, TL; Xiao, HL, 2011
)
0.37
"To study different in vivo pharmacokinetic regularity of brucine, total alkaloids of scorched sand-prepared Strychni Semen products and Strychni Semen pulveratum in rats, and probe into mutual impact between single component and compound."( [Comparison on in vivo pharmacokinetics of brucine, total alkaloids of Strychni Semen and Strychni Semen pulveratum in rats].
Cai, B; Cai, H; Chen, J; Liu, X; Wang, D, 2012
)
0.38
" A compartment model was made for the blood drug concentration-time curve using 3P97 software package and the pharmacokinetic parameters of each group were calculated and compared."( [Comparison on in vivo pharmacokinetics of brucine, total alkaloids of Strychni Semen and Strychni Semen pulveratum in rats].
Cai, B; Cai, H; Chen, J; Liu, X; Wang, D, 2012
)
0.38
"To investigate the effect of dose on pharmacokinetic properties of brucine hydrogel patch."( [Preparation and pharmacokinetics of brucine hydrogel patch].
Cai, BC; Chen, J; Chen, ZP; Li, L; Qi, Y, 2012
)
0.38
" After transdermal administration of different dose brucine hydrogel patch; Plasma concentration versus time profiles were determined and pharmacokinetic parameters were calculated by DAS program."( [Preparation and pharmacokinetics of brucine hydrogel patch].
Cai, BC; Chen, J; Chen, ZP; Li, L; Qi, Y, 2012
)
0.38
"The pharmacokinetic properties of brucine do not vary with the dose of brucine hydrogel patch."( [Preparation and pharmacokinetics of brucine hydrogel patch].
Cai, BC; Chen, J; Chen, ZP; Li, L; Qi, Y, 2012
)
0.38
" The developed method was successfully applied for the first time to pharmacokinetic studies of brucine, strychnine and brucine N-oxide following a single oral and intravenous administration of modified total alkaloid fraction in rats."( Ultra-performance liquid chromatography-tandem mass spectrometric assay for the simultaneous determination of brucine, strychnine and brucine N-oxide in rat plasma: application to a pharmacokinetic study.
Cai, B; Chen, J; Gu, W; Liu, X; Pan, Z; Wang, D, 2016
)
0.86
" The validated method was successfully applied to the pharmacokinetic study of strychnine, brucine, strychnine N-oxide and brucine N-oxide in rat plasma after oral administration of each monomer and the total alkaloids from Semen Strychni."( LC-MS/MS determination and comparative pharmacokinetics of strychnine, brucine and their metabolites in rat plasma after intragastric administration of each monomer and the total alkaloids from Semen Strychni.
He, Q; Lin, A; Liu, Y; Qiu, K; She, D; Su, X, 2016
)
0.91
"To compare the pharmacokinetic differences of brucine in rats after different administration methods of brucine liposome."( [Pharmacokinetic Study on Brucine in Different Administration Methods of Liposome in Rats].
Guo, JW; Li, AR; Li, LM; Liu, RX; Liu, XW; Wu, F, 2015
)
0.42
" Moreover, the proposed method was applied to a pharmacokinetic study in Sprague-Dawley rats for investigating the mechanism of which liquorice detoxifies Semen Strychni."( An LC-MS/MS method for determination of bioactive components of liquorice and Semen Strychni in rat plasma: Application to a pharmacokinetics study.
Cai, HL; Deng, Y; Fang, PF; Li, HD; Wang, C; Wen, J; Yan, M; Zhang, BK; Zhang, M, 2018
)
0.48
" The blood-brain barrier (BBB) penetration of free brucine and strychnine and their pharmacokinetic characteristics were investigated by the validated RRLC-MS/MS method coupled with in vivo microdialysis for the first time."( Microdialysis combined with RRLC-MS/MS for the pharmacokinetics of two major alkaloids of Bi qi capsule and the potential roles of P-gp and BCRP on their penetration.
Li, M; Liu, W; Ren, T; Zhang, J; Zheng, H, 2018
)
0.72
"The detoxification effects of licorice are believed to be related to its pharmacokinetic (PK) interference."( Effects of licorice extracts on the pharmacokinetics of brucine in rats and its possible mechanism.
Cai, HL; Fang, PF; Ou, ZL; Wang, C; Wen, J; Zhang, M, 2020
)
0.56
"This study aims to establish a rapid and sensitive UPLC-MS/MS method for simultaneously determining the content of strychnine and paeoniflorin in plasma and brain tissue of rats, and compare the pharmacokinetic behavior and brain tissue distribution of paeoniflorin combined with normal and toxic doses of strychnine in rats after percutaneous administration."( [Pharmacokinetic behavior and brain tissue distribution of paeoniflorin combined with normal and toxic doses of strychnine in rats after percutaneous administration].
Chen, LH; Chen, XX; Guan, YM; Liu, LL; Ouyang, HF; Yin, YT; Zhu, WF, 2022
)
1.14

Compound-Compound Interactions

ExcerptReferenceRelevance
"A new method for the enrichment of Strychnos alkaloids in biological samples via liquid-phase microextraction (LPME) based on porous polypropylene hollow fibers combined with on-line sweeping in micellar electrokinetic chromatography (MEKC) was developed."( Hollow fiber-based liquid-phase microextraction combined with on-line sweeping for trace analysis of Strychnos alkaloids in urine by micellar electrokinetic chromatography.
Han, D; Li, C; Liu, Z; Wang, C; Wang, Z; Zang, X, 2007
)
0.34
"Abstract: The activities of four CYP450 enzymes (CYP3A, 1A2, 2El and 2C) and the mRNA expression levels of CYP1A2, 2El, 2Cll and 3A1 in rat liver were determined after Wistar rats were orally administered with brucine (BR) at three dosage levels (3, 15 and 60 mg."( Effects of brucine combined with glycyrrhetinic acid or liquiritin on rat hepatic cytochrome P450 activities in vivo.
Chen, Y; Du, P; Han, FM; Wu, WH; Xing, PP, 2011
)
0.37
"This study aims to establish a rapid and sensitive UPLC-MS/MS method for simultaneously determining the content of strychnine and paeoniflorin in plasma and brain tissue of rats, and compare the pharmacokinetic behavior and brain tissue distribution of paeoniflorin combined with normal and toxic doses of strychnine in rats after percutaneous administration."( [Pharmacokinetic behavior and brain tissue distribution of paeoniflorin combined with normal and toxic doses of strychnine in rats after percutaneous administration].
Chen, LH; Chen, XX; Guan, YM; Liu, LL; Ouyang, HF; Yin, YT; Zhu, WF, 2022
)
1.14
" This study evaluated the efficacy of different dosages of aqueous extract of Strychnos ligustrina combined with dihydroartemisinin and piperaquine phosphate (DHP) against murine Plasmodium berghei infection."( Antimalarial Efficacy of Aqueous Extract of Strychnos ligustrina and Its Combination with Dihydroartemisinin and Piperaquine Phosphate (DHP) against Plasmodium berghei Infection.
Cahyaningsih, U; Maring, AJ; Nugraha, AB; Sa'diah, S; Sari, RK; Syafii, W, 2022
)
0.72

Bioavailability

ExcerptReferenceRelevance
"The bioavailability of sustained-release papaverine HCl dosage forms were compared to equivalent doses of the drug administered as an elixir and conventional compressed tablets to 12 healthy human subjects."( The influence of dosage form on papaverine bioavailability.
Gollamudi, R; Meyer, MC; Straughn, AB,
)
0.13
" The oral bioavailability (F) did not vary with the dose (F=40."( Pharmacokinetics of brucine after intravenous and oral administration to rats.
Cai, BC; Cai, H; Chen, J; Chen, ZP; Fang, Y; Hu, RR; Hu, W; Liu, X; Lu, TL; Xiao, HL, 2011
)
0.37
" The absolute bioavailability of brucine was determined to be 40."( Evaluation of the pharmacodynamics and pharmacokinetics of brucine following transdermal administration.
Cai, BC; Chen, J; Chen, ZP; Dong, J; Fang, F; Fang, Y; Gao, Y; Gu, W; Hu, W; Qu, YQ, 2013
)
0.39
" After transdermal administration, the absolute bioavailability was calculated to be 18."( [Optimization and application of method to determine plasma concentration of brucine].
Cai, BC; Chen, J; Wang, DY, 2013
)
0.39
" The pharmacokinetics parameters and absolute bioavailability of brucine show that bioavailability in rats after different administration methods of brucine liposome is subcutaneous injection > intramuscular injection > oral administration."( [Pharmacokinetic Study on Brucine in Different Administration Methods of Liposome in Rats].
Guo, JW; Li, AR; Li, LM; Liu, RX; Liu, XW; Wu, F, 2015
)
0.42
"Overall, the results of our computational analysis indicate that isostrychnine, obtained from Strychnosnux-vomica, satisfies pharmacokinetic and bioavailability properties, binds efficiently with β-tubulin."( Exploring β-Tubulin Inhibitors from Plant Origin using Computational Approach.
K, R; Kannan, K; R, S; V, K; V, S; Verma, K, 2017
)
0.69
" In vivo, NGR-brucine liposomes could significantly extend the bioavailability of brucine; however, there was no significant difference observed in the pharmacokinetic parameters between liposomes and NGR liposomes after intravenous administration."( In vitro and in vivo evaluation of novel NGR-modified liposomes containing brucine.
Li, S; Wang, XP, 2017
)
0.46
"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
"The apparent permeability value (Papp) and absorption rate constant (Ka) were chosen as indices."( Effect of Baizhu (Rhizoma Atractylodis Macrocephalae) extract on intestinal absorption of brucine and strychnine in vitro and in situ.
Jiang, Q; Liang, X; Liao, Z; Lü, D; Zeng, R; Zhang, J, 2020
)
0.77

Dosage Studied

Neither drug effected seizures in control rats. Both GDEE and MK-801 produced a leftward shift in the strychnine-seizure dose-response curve in 3AP inferior olive-lesioned rats. Combining intraperitoneal and oral dosage of ivermectin further improved protection, resulting in survival rates of up to 50%.

ExcerptRelevanceReference
"In strips of rabbit main pulmonary artery, full dose-response curves of noradrenaline for the mechanical and electrical responses of the vascular smooth muscle cells were obtained under normal conditions and after increasing and decreasing the membrane potential with strychnine and tetraethylammonium, respectively."( Relationship between noradrenaline-induced depolarization and contraction in vascular smooth muscle.
Haeusler, G, 1978
)
0.44
"3 PB, tested at concentrations up to 80 muM, produced variable effects on the dose-response curve to GABA."( Reversal of the action of amino acid antagonists by barbiturates and other hypnotic drugs.
Bowery, NG; Dray, A, 1978
)
0.26
"The bioavailability of sustained-release papaverine HCl dosage forms were compared to equivalent doses of the drug administered as an elixir and conventional compressed tablets to 12 healthy human subjects."( The influence of dosage form on papaverine bioavailability.
Gollamudi, R; Meyer, MC; Straughn, AB,
)
0.13
" Kinetic analyses of the dose-response curves for the N-methylamino acid in the presence or absence of the convulsant indicated that the number of molecules of the amino acid combining with the receptor site to produce a response was 3 for N-methylGABA, 2 for N-methylglycine, 3 for N-methyltaurine, 3 for N-methylbeta-alanine."( Effects of N-methylamino acids and convulsants on spontaneous action potentials in guinea-pig cerebellar slices.
Okamoto, K; Quastel, JH, 1977
)
0.26
" 3 Studies of the dose-response relations indicated a competition between the amino acid and the convulsant at a common receptor site."( Effects of amino acids and convulsants on spontaneous action potentials in cerebellar cortex slices.
Okamoto, K; Quastel, JH, 1976
)
0.26
" Neither bicuculline nor strychnine antagonized the taurine effect, as revealed by absence of a shift to right, a change in slope or in the taurine IC50 value in the dose-response curve."( Taurine induces bicuculline/strychnine-insensitive dose-dependent inhibition of cortical visual evoked responses.
Cañas, P; Hernández, A; Pérez, H,
)
0.73
" The two current components have different dose-response characteristics, with the nondesensitizing component being activated more effectively at lower concentrations than the desensitizing component and also reaching its peak at lower concentrations."( A characterization of glycinergic receptors present in cultured rat medullary neurons.
Ahmed, Z; Faber, DS; Lewis, CA, 1991
)
0.28
" The dose-response curve with the dissociation constant 2 x 10(-3) mol/l was obtained."( [Taurine-activated currents in isolated neurons of the rat cerebellum].
Dashkin, AN; Garashchuk, OA; Valeev, AE, 1990
)
0.28
" Neither drug effected seizures in control rats, however, both GDEE and MK-801 produced a leftward shift in the strychnine-seizure dose-response curve in 3AP inferior olive-lesioned rats."( The effects of inferior olive lesion on strychnine seizure.
Anderson, MC; Chung, EY; Van Woert, MH, 1990
)
0.76
" Betaine, N,N-dimethylglycine and sarcosine were equipotent in decreasing the incidence of seizures and death, causing a 38 to 72 percent decrease in the incidence of seizures and death at a dosage of 5 mmole/kg."( Prevention of strychnine-induced seizures and death by the N-methylated glycine derivatives betaine, dimethylglycine and sarcosine.
Freed, WJ, 1985
)
0.63
" Acute and long-term haloperidol administration induced significant leftward displacement of the control dose-response curves for picrotoxin but not those for strychnine or 3-mercaptopropionic acid (3-MPA)."( Behavioral aspects of GABAergic-dopaminergic interactions in the central nervous system.
Palermo-Neto, J; Sandoval, MR, 1989
)
0.47
" These advantages are: the composition of fluids supplying the preparation is under control; the oxygen supply to the cord is no longer dependent on the cardiovascular function, which may be impaired by the substance under study; a complete dose-response curve may be obtained from each animal; washout experiments may be performed; the action of substances can be studied in the presence of extreme concentrations of drugs, ions, etc."( The in situ perfused spinal cord of the rat. Applicability of drugs and chemicals, sodium-lithium exchange, and calcium reduction to functional intact central nervous system tissue.
Deutschmann, W; Wellhöner, HH, 1986
)
0.27
" The dose-response relationships for strychnine and picrotoxin were investigated at fixed pressures."( Investigations into the origin of the high pressure neurological syndrome: the interaction between pressure, strychnine and 1,2-propandiols in the mouse.
Bowser-Riley, F; Daniels, S; Smith, EB, 1988
)
0.76
" At a dosage of 60 micrograms/kg, strychnine caused convulsions in all control animals, but in none pretreated with CdCl2."( Augmented depression and reduced excitability of the central nervous system (CNS) by cadmium in the rat.
Hall, CE; Hungerford, S; Nasseth, D, 1985
)
0.55
" The log dose-response curve for depolarization was sigmoid with a mean ED(50) of 12."( Depolarizing actions of gamma-aminobutyric acid and related compounds on rat superior cervical ganglia in vitro.
Bowery, NG; Brown, DA, 1974
)
0.25
" Dose-response curves were then constructed for those currents giving less than complete depression."( Amino-acid induced depression of cortical neurones.
Johnson, ES; Roberts, MH; Straughan, DW, 1970
)
0.25
" No significant tolerance developed to the anticonvulsant action of PK 11195 (30 mg kg-1) even after 25 days of dosing daily."( Pro- and anti-convulsant properties of PK 11195, a ligand for benzodiazepine binding sites: development of tolerance.
File, SE, 1984
)
0.27
" The doses of excitants which induce spikes are comparable to those of convulsants and coincide very well with the earlier reported relationship between convulsion development rates of excitants and dosage administered to the cerebral ventricle of mice."( Induction and suppression of aminosulfonic acid spikes in Wulst EEG of adult chickens.
Horisaka, K, 1982
)
0.26
" When applied topically to cortex, muscimol blocks focal penicillin, bicuculline, and picrotoxin discharges in a dose-response relationship."( Anticonvulsant effects of muscimol.
Collins, RC, 1980
)
0.26
" All active compounds gave inverted U-shaped dose-response curves."( Cognition-activating properties of 3-(Aryloxy)pyridines.
Butler, DE; Marriott, JG; Poschel, BP, 1981
)
0.26
" The dose-response curves established at 50 bar, 100 bar and 150 bar were shifted progressively to the right, with no effect on the maximal current."( The effect of high pressure on glycine- and kainate-sensitive receptor channels expressed in Xenopus oocytes.
Daniels, S; Doyle, MG; Price, DJ; Shelton, CJ; Smith, EB, 1993
)
0.29
" This anti-MES activity is achieved with nontoxic doses, with the optimal effect recorded in rats dosed orally with anti-MES ED50 and protective index (PI) values of 25."( Comparative anticonvulsant activity and neurotoxicity of 4-amino-N-(2,6-dimethylphenyl)phthalimide and prototype antiepileptic drugs in mice and rats.
Bailleux, V; Hamoir, G; Nuyts, JP; Poupaert, JH; Stables, JP; Vallée, L; Vamecq, J, 1995
)
0.29
" The time course and dose-response relationships for this effect were examined after treatment with two representative antidepressant drugs (imipramine and citalopram) and electriconvulsive shock (ECS)."( Adaptation of the N-methyl-D-aspartate receptor complex following chronic antidepressant treatments.
Layer, RT; Nowak, G; Paul, IA; Popik, P; Skolnick, P, 1994
)
0.29
" Using this pretreatment interval, a dose-response relationship for blocking handling-induced, strychnine-potentiated convulsions was generated for each compound."( Antagonism of non-NMDA receptors inhibits handling-induced, strychnine-potentiated convulsions.
McAllister, KH, 1993
)
0.75
" These two current components have different dose-response characteristics for GABA, with the nondesensitizing component being activated more effectively and reaching its peak amplitude at lower agonist concentrations than the desensitizing one."( GABA responses and their partial occlusion by glycine in cultured rat medullary neurons.
Faber, DS; Lewis, CA, 1993
)
0.29
" Dose-response curves yielded an EC50 of about 50 microM."( Patch-clamp analysis of glycine-induced currents in chick ciliary ganglion neurons.
Berg, DK; Zhang, ZW, 1995
)
0.29
" Acute and long-term dosing increased both rearing and locomotion frequencies observed in an open field."( Behavioral effects of acute and long-term administration of catnip (Nepeta cataria) in mice.
Bernardi, MM; Gorniak, SL; Massoco, CO; Silva, MR; Spinosa, MS, 1995
)
0.29
" The ability of intrathecal glycine and the glycine derivative betaine to reverse strychnine-induced allodynia was also determined using dose-response analysis."( Strychnine-dependent allodynia in the urethane-anesthetized rat is segmentally distributed and prevented by intrathecal glycine and betaine.
Loomis, CW; Sherman, SE, 1995
)
1.96
" mexiletine, an orally active congener of lidocaine, on strychnine allodynia and compared the dose-response relationship of mexiletine in normal (noxious paw pinch) versus abnormal (i."( Comparable dose-dependent inhibition of AP-7 sensitive strychnine-induced allodynia and paw pinch-induced nociception by mexiletine in the rat.
Hodge, E; Khandwala, H; Loomis, CW, 1997
)
0.79
" This is shown by the results of fitting glycine dose-response curves with particular postulated mechanisms, the shorter open times of mutant channels, the properties of single-channel bursts, and the lack of an effect of the mutation on the strychnine-binding site."( Properties of human glycine receptors containing the hyperekplexia mutation alpha1(K276E), expressed in Xenopus oocytes.
Colquhoun, D; Gardiner, RM; Lewis, TM; Rees, M; Schoepfer, R; Sivilotti, LG, 1998
)
0.48
" at an analgesic dosage has dose- and function-dependent immunoregulatory effects."( Effect of brucine on mouse nonspecific immune responses.
Ge, SW; Li, YH; Weng, SA; Zhang, Y; Zhao, HW; Zhu, YN, 1997
)
0.3
" We investigated the dose-response relationship for each alcohol and determined that the order of potency was methanol < EtOH << octanol, with EC(50) values of 291 mM, 39."( Effect of ethanol upon respiratory-related hypoglossal nerve output of neonatal rat brain stem slices.
Berger, AJ; Gibson, IC, 2000
)
0.31
"4 microg) dose-response curves confirmed a supra-additive interaction between BIC and STR in this model."( Coadministration of intrathecal strychnine and bicuculline effects synergistic allodynia in the rat: an isobolographic analysis.
Hefferan, MP; Khandwala, H; Loomis, CW; Osmond, G, 2001
)
0.59
" The same dosage of the copper compound was effective in delaying the lethal time and reducing the mortality rate of treated animals."( Effect of bis(acetato)tetrakis(imidazole) copper(II) in delaying the onset and reducing the mortality rate of strychnine- and thiosemicarbazide- induced convulsions.
Abdul-Ghani, AS; Abu-Hijleh, AL; Qazzaz, M, 2004
)
0.54
" Meanwhile, LB exhibited a better dose-response manner and a longer duration of analgesic effects."( [Study on safety and pharmacodynamic action of transdermal liposomal brucine].
Liu, C; Qin, X; Shen, X; Wang, Q; Yang, B; Yuan, Y, 2008
)
0.35
"Abstract: The activities of four CYP450 enzymes (CYP3A, 1A2, 2El and 2C) and the mRNA expression levels of CYP1A2, 2El, 2Cll and 3A1 in rat liver were determined after Wistar rats were orally administered with brucine (BR) at three dosage levels (3, 15 and 60 mg."( Effects of brucine combined with glycyrrhetinic acid or liquiritin on rat hepatic cytochrome P450 activities in vivo.
Chen, Y; Du, P; Han, FM; Wu, WH; Xing, PP, 2011
)
0.37
"The ME and EAF was administered orally in a single dose (based on previously study of dose-response curve) for 14 days after chronic ulceration was induced in rats."( Can a Strychnos species be used as antiulcer agent? Ulcer healing action from alkaloid fraction of Strychnos pseudoquina St. Hil. (Loganiaceae).
Bauab, TM; Bonamin, F; Hiruma-Lima, CA; Kushima, H; Moraes, TM; Pellizzon, CH; Rocha, LR; Rozza, AL; Silva, MA; Vilegas, W, 2011
)
0.37
" Maxillary taste neurons of the two strains had similar dose-response relationships for sucrose, inositol, and strychnine nitrate, but the deterrent cell of Sawa-J·lem showed a remarkably low sensitivity to salicin."( Genetic analysis of the electrophysiological response to salicin, a bitter substance, in a polyphagous strain of the silkworm Bombyx mori.
Asaoka, K; Iizuka, T; Mase, K; Okada, E; Sezutsu, H; Tamura, T, 2012
)
0.59
" Moreover, a dosage of brucine at 15 mg/kg exhibited very low toxic effects to tumor-bearing mice."( Brucine, an alkaloid from seeds of Strychnos nux-vomica Linn., represses hepatocellular carcinoma cell migration and metastasis: the role of hypoxia inducible factor 1 pathway.
Cai, J; Chen, L; Deng, X; Li, Y; Mi, X; Shu, G; Yang, X; Yin, W; Zhang, X, 2013
)
0.39
" Combining intraperitoneal and oral dosage of ivermectin further improved protection, resulting in survival rates of up to 80% of animals and a significant delay of strychnine effects in up to 100% of tested animals."( In vivo protection against strychnine toxicity in mice by the glycine receptor agonist ivermectin.
Breitinger, HG; Maher, A; Radwan, R, 2014
)
0.89
" Strychnine, an inhibitor of glycine receptor activity, reversed the threshold elevation at a subconvulsive dosage (0."( A Highly Selective Inhibitor of Glycine Transporter-1 Elevates the Threshold for Maximal Electroshock-Induced Tonic Seizure in Mice.
Cai, Y; Cheng, W; Cui, L; Li, K; Liang, G; Tao, H; Xian, W; Yin, M; Zhao, B; Zhao, J, 2016
)
1.34
" Here we aimed to determine dosing time-dependent hepatotoxicity of brucine, and to investigate the role of metabolism in generation of brucine chronotoxicity."( Cyp3a11 metabolism-based chronotoxicity of brucine in mice.
Gao, L; Lin, Y; Wang, S; Wu, B; Yang, Z; Zhou, Z, 2019
)
0.51
"001) after chronic dosing in Staphysagria and Ignatia amara treated groups."( Comparison of the antidepressant like activity of homeopathic remedies (Argentum nitricum, Staphysagria and Ignatia amara) and their effect on the behavior of rodents.
Anser, H; Ikram, R; Imam, S; Ishaque, S; Khan, SS; Khatoon, H; Naeem, S; Nazim, U; Shafiq, Y, 2020
)
0.56
" According to pharmacokinetic experiments, herb dosing at ZT18 generated higher plasma concentrations (and systemic exposure) of strychnine and brucine (two toxic constituents) compared with ZT6 dosing."( Chronotoxicity of Semen Strychni is associated with circadian metabolism and transport in mice.
Gao, L; Lin, L; Lin, Y; Lu, D; Wang, S; Wu, B; Xing, H; Zhao, Y, 2021
)
0.83
" The BRU-induced hepatotoxicity of zebrafish larvae had a dose-response relationship."( A Combination of In Silico ADMET Prediction, In Vivo Toxicity Evaluation, and Potential Mechanism Exploration of Brucine and Brucine N-oxide-A Comparative Study.
Dai, Z; Gao, Y; Guo, L; Han, Y; Ma, S; Zhang, J, 2023
)
0.91
" With knowledge of the harmful dosage of the plant, other rats were used on gestational day 4 for the evaluation of morphological analyses before embryo implantation."( Maternal-fetal toxicity of Strychnos pseudoquina extract treatment during pregnancy.
Barco, VS; Brito, ECB; Cruz, LLD; Damasceno, DC; Furtado, LS; Lima, GPP; Monteiro, GC; Moraes-Souza, RQ; Souza, MR; Volpato, GT, 2023
)
0.91
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (5)

RoleDescription
avicideA substance used to destroy bird pests (class Aves).
glycine receptor antagonistAn antagonist that blocks glycine receptors.
cholinergic antagonistAny drug that binds to but does not activate cholinergic receptors, thereby blocking the actions of acetylcholine or cholinergic agonists.
rodenticideA substance used to destroy rodent pests.
neurotransmitter agentA substance used for its pharmacological action on any aspect of neurotransmitter systems. Neurotransmitter agents include agonists, antagonists, degradation inhibitors, uptake inhibitors, depleters, precursors, and modulators of receptor function.
[role 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]

Drug Classes (2)

ClassDescription
monoterpenoid indole alkaloidA terpenoid indole alkaloid which is biosynthesised from L-tryptophan and diisoprenoid (usually secolaganin) building blocks.
organic heteroheptacyclic compound
[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 (12)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
glucocorticoid receptor [Homo sapiens]Homo sapiens (human)Potency5.35380.000214.376460.0339AID720691
pregnane X nuclear receptorHomo sapiens (human)Potency70.79460.005428.02631,258.9301AID720659
potassium voltage-gated channel subfamily H member 2 isoform dHomo sapiens (human)Potency14.12540.01789.637444.6684AID588834
Spike glycoproteinSevere acute respiratory syndrome-related coronavirusPotency39.81070.009610.525035.4813AID1479145
[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)
Glycine receptor subunit alpha-1Rattus norvegicus (Norway rat)Ki0.01200.00070.76537.0010AID1431421
Glycine receptor subunit alpha-1Homo sapiens (human)IC50 (µMol)0.18430.02700.81873.8000AID1431417; AID1431418; AID1431419; AID1431420; AID1545113; AID1545114; AID1545115; AID1545116; AID1761883; AID1761884; AID1761885; AID1761886; AID1761888; AID1761889
Glycine receptor subunit alpha-1Homo sapiens (human)Ki0.05030.00500.05030.1230AID1431422; AID1545112; AID1761887
Glycine receptor subunit betaHomo sapiens (human)IC50 (µMol)0.28710.05800.28710.5129AID1431418; AID1431420; AID1545114; AID1545116; AID1761884; AID1761886
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Activation Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Taste receptor type 2 member 46Homo sapiens (human)EC50 (µMol)0.69000.00493.09838.6000AID1622651
Taste receptor type 2 member 10Homo sapiens (human)EC50 (µMol)22.50000.00492.50255.0000AID1619454; AID1619463
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Other Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Gamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)Kb69.00001.50005.750010.0000AID71407
Gamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)Kb69.00000.80003.033310.0000AID71407
Gamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)Kb69.00001.50005.750010.0000AID71407
Taste receptor type 2 member 10Homo sapiens (human)Activity1.55000.10004.025010.0000AID1619455; AID1619462
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (33)

Processvia Protein(s)Taxonomy
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
startle responseGlycine receptor subunit alpha-1Homo sapiens (human)
regulation of membrane potentialGlycine receptor subunit alpha-1Homo sapiens (human)
startle responseGlycine receptor subunit alpha-1Homo sapiens (human)
regulation of respiratory gaseous exchange by nervous system processGlycine receptor subunit alpha-1Homo sapiens (human)
monoatomic ion transportGlycine receptor subunit alpha-1Homo sapiens (human)
chloride transportGlycine receptor subunit alpha-1Homo sapiens (human)
muscle contractionGlycine receptor subunit alpha-1Homo sapiens (human)
neuropeptide signaling pathwayGlycine receptor subunit alpha-1Homo sapiens (human)
acrosome reactionGlycine receptor subunit alpha-1Homo sapiens (human)
visual perceptionGlycine receptor subunit alpha-1Homo sapiens (human)
adult walking behaviorGlycine receptor subunit alpha-1Homo sapiens (human)
neuronal action potentialGlycine receptor subunit alpha-1Homo sapiens (human)
neuromuscular process controlling postureGlycine receptor subunit alpha-1Homo sapiens (human)
negative regulation of transmission of nerve impulseGlycine receptor subunit alpha-1Homo sapiens (human)
synaptic transmission, glycinergicGlycine receptor subunit alpha-1Homo sapiens (human)
righting reflexGlycine receptor subunit alpha-1Homo sapiens (human)
excitatory postsynaptic potentialGlycine receptor subunit alpha-1Homo sapiens (human)
inhibitory postsynaptic potentialGlycine receptor subunit alpha-1Homo sapiens (human)
cellular response to amino acid stimulusGlycine receptor subunit alpha-1Homo sapiens (human)
cellular response to zinc ionGlycine receptor subunit alpha-1Homo sapiens (human)
cellular response to ethanolGlycine receptor subunit alpha-1Homo sapiens (human)
response to alcoholGlycine receptor subunit alpha-1Homo sapiens (human)
regulation of presynaptic membrane potentialGlycine receptor subunit alpha-1Homo sapiens (human)
chloride transmembrane transportGlycine receptor subunit alpha-1Homo sapiens (human)
positive regulation of acrosome reactionGlycine receptor subunit alpha-1Homo sapiens (human)
chemical synaptic transmissionGlycine receptor subunit alpha-1Homo sapiens (human)
regulation of membrane potentialGlycine receptor subunit alpha-1Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
modulation of chemical synaptic transmissionGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
signal transductionGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
chemical synaptic transmissionGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
visual perceptionGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
regulation of membrane potentialGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
chloride transmembrane transportGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
startle responseGlycine receptor subunit betaHomo sapiens (human)
monoatomic ion transportGlycine receptor subunit betaHomo sapiens (human)
neuropeptide signaling pathwayGlycine receptor subunit betaHomo sapiens (human)
chemical synaptic transmissionGlycine receptor subunit betaHomo sapiens (human)
acrosome reactionGlycine receptor subunit betaHomo sapiens (human)
nervous system developmentGlycine receptor subunit betaHomo sapiens (human)
visual perceptionGlycine receptor subunit betaHomo sapiens (human)
adult walking behaviorGlycine receptor subunit betaHomo sapiens (human)
righting reflexGlycine receptor subunit betaHomo sapiens (human)
excitatory postsynaptic potentialGlycine receptor subunit betaHomo sapiens (human)
gamma-aminobutyric acid receptor clusteringGlycine receptor subunit betaHomo sapiens (human)
chloride transmembrane transportGlycine receptor subunit betaHomo sapiens (human)
synaptic transmission, glycinergicGlycine receptor subunit betaHomo sapiens (human)
regulation of membrane potentialGlycine receptor subunit betaHomo sapiens (human)
detection of chemical stimulus involved in sensory perception of bitter tasteTaste receptor type 2 member 46Homo sapiens (human)
G protein-coupled receptor signaling pathwayTaste receptor type 2 member 46Homo sapiens (human)
detection of chemical stimulus involved in sensory perception of bitter tasteTaste receptor type 2 member 10Homo sapiens (human)
G protein-coupled receptor signaling pathwayTaste receptor type 2 member 10Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (20)

Processvia Protein(s)Taxonomy
GABA-A receptor activityGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
protein domain specific bindingGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
transmembrane signaling receptor activityGlycine receptor subunit alpha-1Homo sapiens (human)
protein bindingGlycine receptor subunit alpha-1Homo sapiens (human)
zinc ion bindingGlycine receptor subunit alpha-1Homo sapiens (human)
glycine bindingGlycine receptor subunit alpha-1Homo sapiens (human)
extracellularly glycine-gated chloride channel activityGlycine receptor subunit alpha-1Homo sapiens (human)
taurine bindingGlycine receptor subunit alpha-1Homo sapiens (human)
ligand-gated monoatomic ion channel activity involved in regulation of presynaptic membrane potentialGlycine receptor subunit alpha-1Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGlycine receptor subunit alpha-1Homo sapiens (human)
neurotransmitter receptor activityGlycine receptor subunit alpha-1Homo sapiens (human)
chloride channel activityGlycine receptor subunit alpha-1Homo sapiens (human)
excitatory extracellular ligand-gated monoatomic ion channel activityGlycine receptor subunit alpha-1Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
protein domain specific bindingGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
identical protein bindingGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
protein-containing complex bindingGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
ligand-gated monoatomic ion channel activity involved in regulation of presynaptic membrane potentialGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
protein domain specific bindingGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
chloride channel activityGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
neurotransmitter receptor activityGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
glycine bindingGlycine receptor subunit betaHomo sapiens (human)
extracellularly glycine-gated chloride channel activityGlycine receptor subunit betaHomo sapiens (human)
transmembrane signaling receptor activityGlycine receptor subunit betaHomo sapiens (human)
protein bindingGlycine receptor subunit betaHomo sapiens (human)
extracellularly glycine-gated ion channel activityGlycine receptor subunit betaHomo sapiens (human)
protein-containing complex bindingGlycine receptor subunit betaHomo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGlycine receptor subunit betaHomo sapiens (human)
neurotransmitter receptor activityGlycine receptor subunit betaHomo sapiens (human)
excitatory extracellular ligand-gated monoatomic ion channel activityGlycine receptor subunit betaHomo sapiens (human)
chloride channel activityGlycine receptor subunit betaHomo sapiens (human)
G protein-coupled receptor activityTaste receptor type 2 member 46Homo sapiens (human)
bitter taste receptor activityTaste receptor type 2 member 46Homo sapiens (human)
G protein-coupled receptor activityTaste receptor type 2 member 10Homo sapiens (human)
protein bindingTaste receptor type 2 member 10Homo sapiens (human)
taste receptor activityTaste receptor type 2 member 10Homo sapiens (human)
bitter taste receptor activityTaste receptor type 2 member 10Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (24)

Processvia Protein(s)Taxonomy
cellular_componentGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit rho-3Homo sapiens (human)
plasma membraneGlycine receptor subunit alpha-1Homo sapiens (human)
external side of plasma membraneGlycine receptor subunit alpha-1Homo sapiens (human)
membraneGlycine receptor subunit alpha-1Homo sapiens (human)
dendriteGlycine receptor subunit alpha-1Homo sapiens (human)
neuron projectionGlycine receptor subunit alpha-1Homo sapiens (human)
neuronal cell bodyGlycine receptor subunit alpha-1Homo sapiens (human)
perikaryonGlycine receptor subunit alpha-1Homo sapiens (human)
intracellular membrane-bounded organelleGlycine receptor subunit alpha-1Homo sapiens (human)
synapseGlycine receptor subunit alpha-1Homo sapiens (human)
postsynaptic membraneGlycine receptor subunit alpha-1Homo sapiens (human)
inhibitory synapseGlycine receptor subunit alpha-1Homo sapiens (human)
glycinergic synapseGlycine receptor subunit alpha-1Homo sapiens (human)
chloride channel complexGlycine receptor subunit alpha-1Homo sapiens (human)
transmembrane transporter complexGlycine receptor subunit alpha-1Homo sapiens (human)
synapseGlycine receptor subunit alpha-1Homo sapiens (human)
neuron projectionGlycine receptor subunit alpha-1Homo sapiens (human)
plasma membraneGlycine receptor subunit alpha-1Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
presynaptic membraneGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
glutamatergic synapseGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit rho-1Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
postsynaptic membraneGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
GABA-ergic synapseGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
chloride channel complexGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
synapseGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
plasma membraneGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
neuron projectionGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
transmembrane transporter complexGamma-aminobutyric acid receptor subunit rho-2Homo sapiens (human)
cytoplasmGlycine receptor subunit betaHomo sapiens (human)
plasma membraneGlycine receptor subunit betaHomo sapiens (human)
dendriteGlycine receptor subunit betaHomo sapiens (human)
postsynaptic membraneGlycine receptor subunit betaHomo sapiens (human)
glycinergic synapseGlycine receptor subunit betaHomo sapiens (human)
GABA-ergic synapseGlycine receptor subunit betaHomo sapiens (human)
postsynaptic specializationGlycine receptor subunit betaHomo sapiens (human)
glycine-gated chloride channel complexGlycine receptor subunit betaHomo sapiens (human)
synapseGlycine receptor subunit betaHomo sapiens (human)
transmembrane transporter complexGlycine receptor subunit betaHomo sapiens (human)
plasma membraneGlycine receptor subunit betaHomo sapiens (human)
neuron projectionGlycine receptor subunit betaHomo sapiens (human)
plasma membraneTaste receptor type 2 member 46Homo sapiens (human)
membraneTaste receptor type 2 member 46Homo sapiens (human)
ciliary membraneTaste receptor type 2 member 46Homo sapiens (human)
membraneTaste receptor type 2 member 46Homo sapiens (human)
virion membraneSpike glycoproteinSevere acute respiratory syndrome-related coronavirus
plasma membraneTaste receptor type 2 member 10Homo sapiens (human)
membraneTaste receptor type 2 member 10Homo sapiens (human)
membraneTaste receptor type 2 member 10Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (122)

Assay IDTitleYearJournalArticle
AID1345465Human M4 receptor (Acetylcholine receptors (muscarinic))1995Molecular pharmacology, Aug, Volume: 48, Issue:2
Detection, quantitation, and verification of allosteric interactions of agents with labeled and unlabeled ligands at G protein-coupled receptors: interactions of strychnine and acetylcholine at muscarinic receptors.
AID1345343Human M3 receptor (Acetylcholine receptors (muscarinic))1997Molecular pharmacology, Jul, Volume: 52, Issue:1
Positive cooperativity of acetylcholine and other agonists with allosteric ligands on muscarinic acetylcholine receptors.
AID1345326Human M2 receptor (Acetylcholine receptors (muscarinic))1995Molecular pharmacology, Aug, Volume: 48, Issue:2
Detection, quantitation, and verification of allosteric interactions of agents with labeled and unlabeled ligands at G protein-coupled receptors: interactions of strychnine and acetylcholine at muscarinic receptors.
AID1345543Human M5 receptor (Acetylcholine receptors (muscarinic))1995Molecular pharmacology, Aug, Volume: 48, Issue:2
Detection, quantitation, and verification of allosteric interactions of agents with labeled and unlabeled ligands at G protein-coupled receptors: interactions of strychnine and acetylcholine at muscarinic receptors.
AID1345286Human M1 receptor (Acetylcholine receptors (muscarinic))1995Molecular pharmacology, Aug, Volume: 48, Issue:2
Detection, quantitation, and verification of allosteric interactions of agents with labeled and unlabeled ligands at G protein-coupled receptors: interactions of strychnine and acetylcholine at muscarinic receptors.
AID1345326Human M2 receptor (Acetylcholine receptors (muscarinic))1997Molecular pharmacology, Jul, Volume: 52, Issue:1
Positive cooperativity of acetylcholine and other agonists with allosteric ligands on muscarinic acetylcholine receptors.
AID1345326Human M2 receptor (Acetylcholine receptors (muscarinic))2003Molecular pharmacology, Jul, Volume: 64, Issue:1
Interactions of orthosteric and allosteric ligands with [3H]dimethyl-W84 at the common allosteric site of muscarinic M2 receptors.
AID1345465Human M4 receptor (Acetylcholine receptors (muscarinic))1997Molecular pharmacology, Jul, Volume: 52, Issue:1
Positive cooperativity of acetylcholine and other agonists with allosteric ligands on muscarinic acetylcholine receptors.
AID1345286Human M1 receptor (Acetylcholine receptors (muscarinic))1997Molecular pharmacology, Jul, Volume: 52, Issue:1
Positive cooperativity of acetylcholine and other agonists with allosteric ligands on muscarinic acetylcholine receptors.
AID1345343Human M3 receptor (Acetylcholine receptors (muscarinic))1995Molecular pharmacology, Aug, Volume: 48, Issue:2
Detection, quantitation, and verification of allosteric interactions of agents with labeled and unlabeled ligands at G protein-coupled receptors: interactions of strychnine and acetylcholine at muscarinic receptors.
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.
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.
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.
AID1347159Primary screen GU Rhodamine qHTS for Zika virus inhibitors: Unlinked NS2B-NS3 protease assay2020Proceedings 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.
AID1347160Primary screen NINDS Rhodamine 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.
AID1431419Antagonist activity at recombinant human glycine receptor alpha 1 expressed in HEK293 cells assessed as inhibition of glycine-induced current at -50 mV holding potential by whole cell patch-clamp method2016Journal of natural products, Dec-23, Volume: 79, Issue:12
Oxime Ethers of (E)-11-Isonitrosostrychnine as Highly Potent Glycine Receptor Antagonists.
AID1761887Displacement of [3H]strychnine from human glycine receptor subunit alpha-1 expressed in HEK293 cell membranes preincubated for 30 mins followed by [3H]strychnine addition and measured after 30 mins by liquid scintillation counting method2021Journal of natural products, 02-26, Volume: 84, Issue:2
C-2-Linked Dimeric Strychnine Analogues as Bivalent Ligands Targeting Glycine Receptors.
AID141332Binding affinity at the unliganded human muscarinic acetylcholine receptor M3 was estimated as log affinity (log1/M)1999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID350218Octanol-water partition coefficient, log PC of the compound2009Journal of medicinal chemistry, May-28, Volume: 52, Issue:10
Lipophilicity of basic drugs measured by hydrophilic interaction chromatography.
AID140906Binding affinity at the NMS liganded human muscarinic acetylcholine receptor M1 was estimated as log affinity (log1/M)1999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID1431418Antagonist activity at recombinant human glycine receptor alpha 1 beta expressed in human tsA201 cells assessed as inhibition of glycine-induced receptor activation after 30 mins by FLIPR membrane potential blue assay2016Journal of natural products, Dec-23, Volume: 79, Issue:12
Oxime Ethers of (E)-11-Isonitrosostrychnine as Highly Potent Glycine Receptor Antagonists.
AID1761889Antagonist activity at human glycine receptor subunit alpha-1 assessed as inhibition of glycine-induced current measured at the later state of compound application by patch-clamp assay2021Journal of natural products, 02-26, Volume: 84, Issue:2
C-2-Linked Dimeric Strychnine Analogues as Bivalent Ligands Targeting Glycine Receptors.
AID697155Cytotoxicity against human HL60 cells after 48 hrs by MTT assay2012Journal of natural products, Nov-26, Volume: 75, Issue:11
Strynuxlines A and B, alkaloids with an unprecedented carbon skeleton from Strychnos nux-vomica.
AID1545114Antagonist activity at human glycine receptor subunit alpha-1beta expressed in human tsA201 cells assessed as reduction in glycine-induced response by fluorescence-based FLIPR membrane potential blue assay2019Journal of natural products, 08-23, Volume: 82, Issue:8
11-Aminostrychnine and
AID270051Displacement of [3H]strychnine from strychnine-sensitive glycine receptor in rat spinal cord2006Journal of medicinal chemistry, Sep-07, Volume: 49, Issue:18
3-demethoxy-3-glycosylaminothiocolchicines: Synthesis of a new class of putative muscle relaxant compounds.
AID141331Binding affinity at the NMS liganded human muscarinic acetylcholine receptor M3 was estimated as log affinity (log1/M)1999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID697153Cytotoxicity against human A549 cells after 48 hrs by MTT assay2012Journal of natural products, Nov-26, Volume: 75, Issue:11
Strynuxlines A and B, alkaloids with an unprecedented carbon skeleton from Strychnos nux-vomica.
AID141337Cooperativity with NMS at human muscarinic acetylcholine receptor M31999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID1431417Antagonist activity at recombinant human glycine receptor alpha 1 expressed in human tsA201 cells assessed as inhibition of glycine-induced receptor activation after 30 mins by FLIPR membrane potential blue assay2016Journal of natural products, Dec-23, Volume: 79, Issue:12
Oxime Ethers of (E)-11-Isonitrosostrychnine as Highly Potent Glycine Receptor Antagonists.
AID142262Cooperativity with NMS at human muscarinic acetylcholine receptor M21999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID141754Cooperativity with acetylcholine at human muscarinic acetylcholine receptor M41999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID142259Binding affinity at the NMS liganded human muscarinic acetylcholine receptor M2 was estimated as log affinity (log1/M)1999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID1545115Antagonist activity at human glycine receptor subunit alpha-1 expressed in HEK293 cells assessed as reduction in glycine-induced whole cell currents by patch-clamp technique2019Journal of natural products, 08-23, Volume: 82, Issue:8
11-Aminostrychnine and
AID333844Genotoxicity against CHO cells
AID205267Inhibition of binding of Batrachotoxinin [3H]BTX-B to high affinity sites on voltage dependent sodium channels in a vesicular preparation from guinea pig cerebral cortex1985Journal of medicinal chemistry, Mar, Volume: 28, Issue:3
[3H]Batrachotoxinin A 20 alpha-benzoate binding to voltage-sensitive sodium channels: a rapid and quantitative assay for local anesthetic activity in a variety of drugs.
AID1431422Displacement of [3H]strychnine from recombinant human glycine receptor alpha 1 expressed in HEK293 cell membranes after 30 mins by liquid scintillation counting method2016Journal of natural products, Dec-23, Volume: 79, Issue:12
Oxime Ethers of (E)-11-Isonitrosostrychnine as Highly Potent Glycine Receptor Antagonists.
AID1761885Antagonist activity at human glycine receptor subunit alpha-1 expressed in HEK293 cells assessed as reduction in glycine-induced currents by whole-cell patch-clamp assay2021Journal of natural products, 02-26, Volume: 84, Issue:2
C-2-Linked Dimeric Strychnine Analogues as Bivalent Ligands Targeting Glycine Receptors.
AID1545112Displacement of [3H]strychnine from human glycine receptor subunit alpha-1 expressed in HEK293 cell membranes2019Journal of natural products, 08-23, Volume: 82, Issue:8
11-Aminostrychnine and
AID350220Lipophilicity, log K at pH 2 by by hydrophilic interaction chromatography using 100% water as mobile phase2009Journal of medicinal chemistry, May-28, Volume: 52, Issue:10
Lipophilicity of basic drugs measured by hydrophilic interaction chromatography.
AID1761888Antagonist activity at human glycine receptor subunit alpha-1 assessed as inhibition of glycine-induced current measured at the onset of compound application by patch-clamp assay2021Journal of natural products, 02-26, Volume: 84, Issue:2
C-2-Linked Dimeric Strychnine Analogues as Bivalent Ligands Targeting Glycine Receptors.
AID1545113Antagonist activity at human glycine receptor subunit alpha-1 expressed in human tsA201 cells assessed as reduction in glycine-induced response by fluorescence-based FLIPR membrane potential blue assay2019Journal of natural products, 08-23, Volume: 82, Issue:8
11-Aminostrychnine and
AID697152Cytotoxicity against human MCF7 cells after 48 hrs by MTT assay2012Journal of natural products, Nov-26, Volume: 75, Issue:11
Strynuxlines A and B, alkaloids with an unprecedented carbon skeleton from Strychnos nux-vomica.
AID205268Inhibition of binding of Batrachotoxinin [3H]BTX-B to high affinity sites on voltage dependent sodium channels in a vesicular preparation from guinea pig cerebral cortex at 10 uM1985Journal of medicinal chemistry, Mar, Volume: 28, Issue:3
[3H]Batrachotoxinin A 20 alpha-benzoate binding to voltage-sensitive sodium channels: a rapid and quantitative assay for local anesthetic activity in a variety of drugs.
AID141750Binding affinity at the NMS liganded human muscarinic acetylcholine receptor M4 was estimated as log affinity (log1/M)1999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID1761884Antagonist activity at human glycine receptor subunit alpha-1beta expressed in human tsA201 cells assessed as reduction in glycine-induced response incubated for 30 mins by fluorescence-based FLIPR membrane potential blue assay2021Journal of natural products, 02-26, Volume: 84, Issue:2
C-2-Linked Dimeric Strychnine Analogues as Bivalent Ligands Targeting Glycine Receptors.
AID1865984Toxicity in iv dosed rat assessed as lethal dose2022Bioorganic & medicinal chemistry, 01-15, Volume: 54Isolation and biological activity of azocine and azocane alkaloids.
AID142260Binding affinity at the unliganded human muscarinic acetylcholine receptor M2 was estimated as log affinity (log1/M)1999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID1761886Antagonist activity at human glycine receptor subunit alpha-1beta expressed in HEK293 cells assessed as reduction in glycine-induced currents by whole-cell patch-clamp assay2021Journal of natural products, 02-26, Volume: 84, Issue:2
C-2-Linked Dimeric Strychnine Analogues as Bivalent Ligands Targeting Glycine Receptors.
AID142263Cooperativity with acetylcholine at human muscarinic acetylcholine receptor M21999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID1761883Antagonist activity at human glycine receptor subunit alpha-1 expressed in human tsA201 cells assessed as reduction in glycine-induced response incubated for 30 mins by fluorescence-based FLIPR membrane potential blue assay2021Journal of natural products, 02-26, Volume: 84, Issue:2
C-2-Linked Dimeric Strychnine Analogues as Bivalent Ligands Targeting Glycine Receptors.
AID350219Lipophilicity, log K at pH 2 by by hydrophilic interaction chromatography using 95% acetonitrile as mobile phase2009Journal of medicinal chemistry, May-28, Volume: 52, Issue:10
Lipophilicity of basic drugs measured by hydrophilic interaction chromatography.
AID697154Cytotoxicity against human SMMC7721 cells after 48 hrs by MTT assay2012Journal of natural products, Nov-26, Volume: 75, Issue:11
Strynuxlines A and B, alkaloids with an unprecedented carbon skeleton from Strychnos nux-vomica.
AID141753Cooperativity with NMS at human muscarinic acetylcholine receptor M41999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID697151Cytotoxicity against human SW480 cells after 48 hrs by MTT assay2012Journal of natural products, Nov-26, Volume: 75, Issue:11
Strynuxlines A and B, alkaloids with an unprecedented carbon skeleton from Strychnos nux-vomica.
AID118785Compound was tested for cognitive activity by measuring retention for passive avoidance learning in mice at dose 0.63 mg/kg1981Journal of medicinal chemistry, Mar, Volume: 24, Issue:3
Cognition-activating properties of 3-(Aryloxy)pyridines.
AID141338Cooperativity with acetylcholine at human muscarinic acetylcholine receptor M31999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID140915Cooperativity with acetylcholine at human muscarinic acetylcholine receptor M11999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
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.
AID588220Literature-mined public compounds from Kruhlak et al phospholipidosis modelling dataset2008Toxicology mechanisms and methods, , Volume: 18, Issue:2-3
Development of a phospholipidosis database and predictive quantitative structure-activity relationship (QSAR) models.
AID1431421Displacement of [3H]strychnine from glycine receptor alpha 1 in rat brain synaptic membranes2016Journal of natural products, Dec-23, Volume: 79, Issue:12
Oxime Ethers of (E)-11-Isonitrosostrychnine as Highly Potent Glycine Receptor Antagonists.
AID140907Binding affinity at the unliganded human muscarinic acetylcholine receptor M1 was estimated as log affinity (log1/M)1999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID241212Inhibition of apamin-sensitive SKCa channel of guinea-pig hepatocytes2004Bioorganic & medicinal chemistry letters, Aug-02, Volume: 14, Issue:15
Defining determinant molecular properties for the blockade of the apamin-sensitive SKCa channel in guinea-pig hepatocytes: the influence of polarizability and molecular geometry.
AID286349Displacement of [3H]strychnine from glycine receptor in rat spinal cord synaptosomal membranes2007Journal of medicinal chemistry, May-03, Volume: 50, Issue:9
Novel 3-O-glycosyl-3-demethylthiocolchicines as ligands for glycine and gamma-aminobutyric acid receptors.
AID566259Inhibition of rat glycine receptor2010Bioorganic & medicinal chemistry, Nov-01, Volume: 18, Issue:21
Discovery of {1-[4-(2-{hexahydropyrrolo[3,4-c]pyrrol-2(1H)-yl}-1H-benzimidazol-1-yl)piperidin-1-yl]cyclooctyl}methanol, systemically potent novel non-peptide agonist of nociceptin/orphanin FQ receptor as analgesic for the treatment of neuropathic pain: de
AID71407Agonist activity against Gamma-aminobutyric acid C (GABA-C) receptor derived from bovine retinal RNA expressed in Xenopus oocytes2000Journal of medicinal chemistry, Apr-20, Volume: 43, Issue:8
GABA-Activated ligand gated ion channels: medicinal chemistry and molecular biology.
AID118784Compound was tested for cognitive activity by measuring retention for passive avoidance learning in mice at dose 0.32 mg/kg1981Journal of medicinal chemistry, Mar, Volume: 24, Issue:3
Cognition-activating properties of 3-(Aryloxy)pyridines.
AID496866Anticonvulsant activity in po dosed mouse assessed as inhibition of MES-induced tonic seizures2010Journal of medicinal chemistry, Aug-12, Volume: 53, Issue:15
alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) antagonists: from bench to bedside.
AID333845Genotoxicity against CHO cells after UV irradiation
AID1431420Antagonist activity at recombinant human glycine receptor alpha 1 beta expressed in HEK293 cells assessed as inhibition of glycine-induced current at -50mV holding potential by whole cell patch-clamp method2016Journal of natural products, Dec-23, Volume: 79, Issue:12
Oxime Ethers of (E)-11-Isonitrosostrychnine as Highly Potent Glycine Receptor Antagonists.
AID141751Binding affinity at the unliganded human muscarinic acetylcholine receptor M4 was estimated as log affinity (log1/M)1999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID140914Cooperativity with NMS at human muscarinic acetylcholine receptor M11999Journal of medicinal chemistry, Feb-11, Volume: 42, Issue:3
Allosteric interactions of quaternary strychnine and brucine derivatives with muscarinic acetylcholine receptors.
AID1545116Antagonist activity at human glycine receptor subunit alpha-1beta expressed in HEK293 cells assessed as reduction in glycine-induced whole cell currents by patch-clamp technique2019Journal of natural products, 08-23, Volume: 82, Issue:8
11-Aminostrychnine and
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.
AID1347374qHTS for Hypoxia signaling pathway (HIF-1) antagonists against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347359HEK293 24hr Apoptosis Induction qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347396qHTS for inhibitors of Wild type Zika virus screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347363Firefly luciferase counterscreen qHTS: Assay Interference Panel against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347392qHTS for activators of dead-cell proteases activity screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347402qHTS for inhibitors of Rabies Virus screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347388qHTS for Activators of p53 Stress Response Pathway screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347379qHTS for Inflammasome Signaling Inhibitors: IL-1-beta AlphaLISA screen against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347357HEK293 18hr Apoptosis Induction qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347391qHTS for activators of Nrf2/ARE signaling pathway screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347355HEK-293 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347367qHTS for ATAD5 Agonist screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347378qHTS for H2AX Agonists against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347400Viability qHTS for inhibitors of the SERCaMP assay screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347358HPAF-II 12hr Apoptosis Induction qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347346HPAF-II Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347380qHTS for Antimalaria activity screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347365SDT Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347377DH5-alpha competent E. coli microbial cell viability qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347389qHTS assay for small molecule disruptors of mitochondrial membrane potential screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347356HPAF-II 24hr Apoptosis Induction qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347352COV-362 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347366KB-3-1 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347360HPAF-II 18hr Apoptosis Induction qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347390Secretion counterscreen for inhibitors of the SERCaMP assay screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347401Redox Reaction Profiling qHTS: Assay Interference Panel against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347347UWB1.289 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347364KB-8-5-11 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347371J3T Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347354UWB1.289-WTBRCA1 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347387Cytotoxicity qHTS for assessment of Hepg2 cells membrane integrity screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347394Vero-766 cells viability qHTS against the NCATS CANVASS Library: Counterscreen for Zika virus inhibition assay2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347373qHTS for Constitutive Androstane Receptor (CAR) Agonist screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347353A2780 Cisplatin Sensitive Ovarian Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347375qHTS for Hypoxia signaling pathway (HIF-1) agonists against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347345OV-KATE Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347349Panc-1005 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347369MCF7 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347361HEK293 12hr Apoptosis Induction qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID134737610-beta competent E. coli microbial cell viability qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347368G06 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347370qHTS for ATAD5 Antagonist screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347351U-118MG Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347350SW1088 Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347381Inflammasome Signaling qHTS Counterscreen: IL-1-beta AlphaLISA counterscreen against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347393qHTS for inhibitors of ER calcium dysfunction: SERCaMP assay screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347362Diaphorse counterscreen qHTS: Assay Interference Panel against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347372qHTS for Constitutive Androstane Receptor (CAR) Antagonist screened against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
AID1347348OV-SAHO Cancer Cell Toxicity qHTS against the NCATS CANVASS Library2018ACS central science, Dec-26, Volume: 4, Issue:12
Canvass: A Crowd-Sourced, Natural-Product Screening Library for Exploring Biological Space.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (4,421)

TimeframeStudies, This Drug (%)All Drugs %
pre-19902495 (56.44)18.7374
1990's728 (16.47)18.2507
2000's659 (14.91)29.6817
2010's457 (10.34)24.3611
2020's82 (1.85)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 80.75

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 very strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index80.75 (24.57)
Research Supply Index8.48 (2.92)
Research Growth Index4.30 (4.65)
Search Engine Demand Index148.22 (26.88)
Search Engine Supply Index2.00 (0.95)

This Compound (80.75)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials16 (0.33%)5.53%
Reviews112 (2.34%)6.00%
Case Studies97 (2.03%)4.05%
Observational1 (0.02%)0.25%
Other4,552 (95.27%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]