Page last updated: 2024-11-08

iridoids

Description Research Excerpts Clinical Trials Roles Classes Pathways Study Profile Bioassays Related Drugs Related Conditions Protein Interactions Research Growth Market Indicators

Description

Iridoids: A type of MONOTERPENES, derived from geraniol. They have the general form of cyclopentanopyran, but in some cases, one of the rings is broken as in the case of secoiridoid. They are different from the similarly named iridals (TRITERPENES). [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

Cross-References

ID SourceID
PubMed CID453214
MeSH IDM0419651

Synonyms (8)

Synonym
15-demethyl plumieride
133738-37-1
iridoid
spiro[cyclopenta[c]pyran-7(1h),2'(5'h)-furan]-4-carboxylic acid, 1-(.beta.-d-glucopyranosyloxy)-4a,7a-dihydro-4'-(hydroxymethyl)-5'-oxo-, methyl ester, [1s-(1.alpha.,4a.alpha.,7a,7a.alpha.)]-
methyl (1s,4as,7r,7as)-4'-(hydroxymethyl)-5'-oxo-1-[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)tetrahydropyran-2-yl]oxy-spiro[4a,7a-dihydro-1h-cyclopenta[c]pyran-7,2'-furan]-4-carboxylate
iridoids
spiro(cyclopenta(c)pyran-7(1h),2'(5'h)-furan)-4-carboxylic acid, 1-(beta-d-glucopyranosyloxy)-4a,7a-dihydro-4'-(hydroxymethyl)-5'-oxo-, methyl ester, (1s-(1alpha,4aalpha,7a,7aalpha))-
DTXSID50158348

Research Excerpts

Overview

Iridoids are a class of noncanonical monoterpenes that are found naturally in the plant kingdom mostly as glycosides. One iridoid, secologanin, is a precursor for the assembly of thousands ofmonoterpenoid indole alkaloids (MIAs)

ExcerptReferenceRelevance
"Iridoids are a class of noncanonical monoterpenes that are found naturally in the plant kingdom mostly as glycosides."( Identification and functional characterization of three iridoid synthases in Gardenia jasminoides.
Chen, W; Liang, S; Ma, D; Wei, W; Wu, Q; Xu, C; Yang, J; Ye, P; Zhan, R, 2022
)
1.44
"Iridoids are a class of active compounds that widely exist in the plant kingdom. "( Iridoids: Research Advances in Their Phytochemistry, Biological Activities, and Pharmacokinetics.
Bo, A; Gong, X; Li, M; Wang, C; Zang, E; Zhang, C; Zhang, L; Zhang, M, 2020
)
3.44
"Iridoids are a large family of monoterpenoids found in traditional medicinal plants and show significant effects for the human species. "( Recent Advances in Iridoid Chemistry: Biosynthesis and Chemical Synthesis.
Kouda, R; Yakushiji, F, 2020
)
2
"Iridoids are a class of monoterpenoid compounds constructed from 10-carbon skeleton of isoprene building units. "( Iridoids and Other Monoterpenes in the Alzheimer's Brain: Recent Development and Future Prospects.
Habtemariam, S, 2018
)
3.37
"Iridoids are a major group of biologically active molecules that are present in thousands of plant species, and one versatile iridoid, secologanin, is a precursor for the assembly of thousands of monoterpenoid indole alkaloids (MIAs) as well as a number of quinoline alkaloids. "( Virus-induced gene silencing identifies Catharanthus roseus 7-deoxyloganic acid-7-hydroxylase, a step in iridoid and monoterpene indole alkaloid biosynthesis.
Altarejos, J; De Luca, V; Salim, V; Yu, F, 2013
)
1.83

Effects

ExcerptReferenceRelevance
"Five iridoids have been isolated from the aerial parts of Scaevola montana Labill., namely loganin, sylvestroside III, sylvestroside III dimethylacetal, cantleyoside and cantleyoside dimethylacetal. "( [Plants in New Caledonia. Iridoids from Scaevola montana Labill].
Demetzos, C; Pusset, J; Sbahi, S; Skaltsounis, AL, 1989
)
1.09

Toxicity

ExcerptReferenceRelevance
" Compounds with free SH groups like cysteine, mercaptoethanol, dithioerythritol, and glutathione were able to suppress the cytotoxicity of the valepotriates in a dose-dependent way, whereas compounds with blocked SH groups did not antagonize these toxic effects."( Effects of thiol compounds versus the cytotoxicity of valepotriates on cultured hepatoma cells.
Anton, R; Beck, JP; Haag-Berrurier, M; Keochanthala-Bounthanh, C, 1990
)
0.28
"A recognized drawback of the currently available chemical cross-linking reagents used to fix bioprostheses is the potential toxic effects a recipient may be exposed to from the fixed tissues and/or the residues."( In vitro evaluation of cytotoxicity of a naturally occurring cross-linking reagent for biological tissue fixation.
Huang, LL; Huang, RN; Sung, HW; Tsai, CC, 1999
)
0.3
" The protective effects of the tested extracts or isolated compounds were evaluated from their ability to decrease hydrogen peroxide-induced formation of single strand breaks in the nuclear DNA, while the toxic effects were estimated from the increase of DNA damage when the extracts or isolated compounds were incubated directly with the cells."( DNA protecting and genotoxic effects of olive oil related components in cells exposed to hydrogen peroxide.
Agalias, A; Aligiannis, N; Bazios, D; Doulias, PT; Galaris, D; Mitakou, S; Nousis, L, 2005
)
0.33
" Slightly increased plasma total bilirubin was considered to be due to interference of metabolite of geniposide with the system of measurement and not to be a toxic effect since there were no related changes in histopathology of the liver or in any blood chemistry parameters."( A 13-week oral dose subchronic toxicity study of gardenia yellow containing geniposide in rats.
Chino, M; Hiruma, M; Kitamura, H; Nomura, M; Sato, S; Takei, Y, 2007
)
0.34
"Intestinal microflora (IM) is able to produce toxic and carcinogenic metabolites and induce more potent cytotoxicity against cells than non-metabolites."( Biotransformation of geniposide by human intestinal microflora on cytotoxicity against HepG2 cells.
Ahn, YT; Choi, JH; Do, MT; Jeong, HG; Jeong, TC; Kang, MJ; Kang, W; Khanal, T; Kim, DH; Kim, HG; Kong, MJ; Noh, K; Yeo, HK, 2012
)
0.38
" Initially, toxic effects of geniposide and its metabolite genipin were compared."( Role of metabolism by human intestinal microflora in geniposide-induced toxicity in HepG2 cells.
Ahn, YT; Jeong, HG; Jeong, TC; Kang, MJ; Khanal, T; Kim, DH; Kim, HG; Lee, DH; Lee, YS; Yeo, HK, 2012
)
0.38
" After the treatment, more than 95% of the initial blue product was removed from the waste solution and the treated waste was proven to be safe for aquatic organisms, as studied in brine shrimp and guppy fishes."( "From safe source to safe sink" development of colorimetric assay for gabapentin in bulk drug and capsules using naturally derived genipin.
Dejpittayanunt, S; Kongpakwattana, K; Nuntharatanapong, N; Pathomcharoensukchai, S; Rojanarata, T; Suksaran, U; Winotapun, W, 2012
)
0.38
" The weight, diet, toxic reaction, and death after 14 days were observed."( Evaluation of safety of iridoids rich fraction from Valeriana jatamansi Jones: Acute and sub-chronic toxicity study in mice and rats.
Chen, C; Lan, M; Li, S; Lin, Y; Xu, K; Yan, Z; Zhang, R; Zhang, T; Zuo, C, 2015
)
0.72
"IRFV is extremely safe in the usual clinical dose, and may not have any single dose toxicity."( Evaluation of safety of iridoids rich fraction from Valeriana jatamansi Jones: Acute and sub-chronic toxicity study in mice and rats.
Chen, C; Lan, M; Li, S; Lin, Y; Xu, K; Yan, Z; Zhang, R; Zhang, T; Zuo, C, 2015
)
0.72
"For at least a 1 year period of follow-up, PSR with genipin cross-linked sclera was safe and effective to treat macular detachment and retinoschisis in high myopia when a macular hole was not present."( The efficacy and safety of posterior scleral reinforcement using genipin cross-linked sclera for macular detachment and retinoschisis in highly myopic eyes.
Pan, AP; Wang, QM; Xue, AQ; Yu, AY; Zheng, LY; Zhu, SQ, 2016
)
0.43
" Histopathological examination suggested that no toxic damages were observed in rats treated orally with MG (0."( Evaluation of the Antidepressant Activity, Hepatotoxicity and Blood Brain Barrier Permeability of Methyl Genipin.
Che, X; Fan, H; Wang, M; Wang, T; Wang, W; Xu, H; Yang, M, 2016
)
0.43
"Genipin (GP) is a safe method for corneal crosslinking, even for very thin corneas."( The Short-Term Safety Evaluation of Corneal Crosslinking Agent-Genipin.
Li, H; Qiao, J; Rong, B; Song, W; Tang, Y; Wu, Y; Yan, X; Yang, S, 2019
)
0.51
"25% GP resulted in minimal toxicity to keratocytes and endothelial cells, suggesting that it is a safe crosslinking agent at those concentrations."( The Short-Term Safety Evaluation of Corneal Crosslinking Agent-Genipin.
Li, H; Qiao, J; Rong, B; Song, W; Tang, Y; Wu, Y; Yan, X; Yang, S, 2019
)
0.51
" Zhi-Zi-Hou-Po Decoction (ZZHPD) has been used in clinical treatment of depression and related diseases for many years, and the potential toxic damage caused by its long-term use has gradually emerged."( A novel insight into the potential toxicity mechanisms of Zhi-Zi-Hou-Po decoction by dynamic urinary metabolomics based on UHPLC-Q-Exactive Orbitrap-MS.
Feng, F; Zhang, Q, 2020
)
0.56

Pharmacokinetics

ExcerptReferenceRelevance
" A linear pharmacokinetic behavior was obtained after iv administation of 400-400 mg/kg of aucubin."( Pharmacokinetic study of an iridoid glucoside: aucubin.
Chang, IM; Kim, SK; Lee, MH; Shim, CK; Suh, NJ, 1991
)
0.28
"It is the first time to establish the revered-phase HPLC method to determine concentrations of loganin and morroniside in plasma and to obtain their pharmacokinetic parameters and characteristics."( [Studies on pharmacokinetics of loganin and morroniside in Cornus officinalis injection in mice].
Ren, LM; Wun, JK; Zhang, LT, 2003
)
0.32
" The validated method has been successfully applied for pharmacokinetic studies of geniposide from rat serum after oral administration of Yin-Zhi-Ku decoction."( HPLC method for the determination and pharmacokinetic studies on geniposide in rat serum after oral administration of traditional Chinese medicinal preparation Yin-Zhi-Ku decoction.
Huang, CG; Xu, B; Ye, G; Zhao, HL; Zhu, HY, 2006
)
0.33
" This method was subsequently applied to pharmacokinetic studies of geniposide, baicalin, cholic acid and hyodeoxycholic acid in rats successfully."( Simultaneous determination of geniposide, baicalin, cholic acid and hyodeoxycholic acid in rat serum for the pharmacokinetic investigations by high performance liquid chromatography-tandem mass spectrometry.
Liang, Q; Liu, Q; Luo, G; Pan, Y; Pang, C; Ran, X; Wang, B, 2006
)
0.33
" Finally, the method was successfully applied to the pharmacokinetic study of paeoniflorin in rat brain following a single subcutaneous administration (10 mg/kg) to rats."( Development and validation of a sensitive liquid chromatography-tandem mass spectrometry method for the determination of paeoniflorin in rat brain and its application to pharmacokinetic study.
Chen, DY; Han, XM; Ke, Y; Shen, LL; Shen, R; Sun, XY; Wang, Y; Xia, SM; Yang, YM, 2007
)
0.34
" The quantitation method was successfully applied to generate pharmacokinetic (PK) profile of markers as well as to detect other components in plasma after intravenous dose administration of herbal preparation in male Sprague-Dawley (SD) rats."( Simultaneous estimation of mangiferin and four secoiridoid glycosides in rat plasma using liquid chromatography tandem mass spectrometry and its application to pharmacokinetic study of herbal preparation.
Asthana, RK; Gupta, RC; Suryawanshi, S, 2007
)
0.34
" The study confirms the importance of careful pharmacokinetic analysis in the characterization of herbal medicines when applied for future clinical applications."( Pharmacokinetic behavior of gentiopicroside from decoction of Radix Gentianae, Gentiana macrophylla after oral administration in rats: a pharmacokinetic comaprison with gentiopicroside after oral and intravenous administration alone.
Bligh, SW; Branford-White, CJ; Cheng, XM; He, YQ; Wang, CH; Wang, ZT; White, KN, 2007
)
0.34
" A successful application of the developed HPLC analysis was demonstrated for the pharmacokinetic study of a Traditional Chinese Medicine formula of Yin Chen Hao Tang preparation."( Simultaneous determination of 6,7-dimethylesculetin and geniposide in rat plasma and its application to pharmacokinetic studies of Yin Chen Hao Tang preparation.
Cao, H; Liu, L; Lv, H; Sun, H; Sun, W; Wang, P; Wang, X, 2008
)
0.35
" The validated method has been successfully applied to determine the plasma concentration of catalpol for a pharmacokinetic study of catalpol after oral administration of 50 mg/kg to rats."( Quantitation of catalpol in rat plasma by liquid chromatography/electrospray ionization tandem mass spectrometry and its pharmacokinetic study.
Gu, Y; Liu, C; Lu, R; Si, D, 2009
)
0.35
" The pharmacokinetic parameters were computed by Kinetica software."( [Study on pharmacokinetics of jasminoidin in rabbits administered xingnaojing naristillae by nasal medication].
Chen, X; Du, S; Lu, Y; Wang, Y; Yao, Z, 2010
)
0.36
" Jasminoidin was fitted to a two-compartment open pharmacokinetic model in rabbits."( [Study on pharmacokinetics of jasminoidin in rabbits administered xingnaojing naristillae by nasal medication].
Chen, X; Du, S; Lu, Y; Wang, Y; Yao, Z, 2010
)
0.36
" Pharmacokinetic parameters were calculated from the plasma concentration-time data."( Pharmacokinetics of geniposide in Zhi-Zi-Hou-Pu decoction and in different combinations of its constituent herbs.
Feng, F; Sun, Y; Yu, X, 2012
)
0.38
" In healthy rats, the estimated pharmacokinetic parameters (i."( Simultaneous in vivo RP-HPLC-DAD quantification of multiple-component and drug-drug interaction by pharmacokinetics, using 6,7-dimethylesculetin, geniposide and rhein as examples.
Jiao, G; Sun, H; Sun, W; Wang, X; Yuan, Y; Zhang, A, 2012
)
0.38
" The highly sensitive method was successfully applied to estimated pharmacokinetic parameters of genipin following oral and intravenous administration to rats."( HPLC-MS/MS method to determine genipin in rat plasma after hydrolysis with sulfatase and its application to a pharmacokinetic study.
Ding, Y; Guo, CR; Tan, B; Tao, JS; Yang, L; Zhang, T, 2012
)
0.38
"To determine the geniposide in Beagle dogs plasma by HPLC after oral administration or intravenous injection Xingnaojing, and the pharmacokinetic parameters were calculated by the software of Kinetica."( [Pharmacokinetics and bioavailabilities of geniposide in Beagle dogs after oral administration Xingnaojing].
Bian, B; Du, S; Li, P; Tian, X; Wang, H; Yang, J, 2012
)
0.38
" The main pharmacokinetic parameters after oral administration was as follows: Cmax (11."( [Pharmacokinetics and bioavailabilities of geniposide in Beagle dogs after oral administration Xingnaojing].
Bian, B; Du, S; Li, P; Tian, X; Wang, H; Yang, J, 2012
)
0.38
" The investigation showed that there were significant differences in the groups between the normal rat and AA rat in pharmacokinetics parameters, such as the area under the time versus drug concentration curve (AUC(0-∞)) (3."( Comparative pharmacokinetics study after oral administration of geniposide in normal rats and adjuvant-induced arthritis rats by UPLC-MS/MS.
Chen, JY; Hu, SL; Li, H; Shen, C; Wu, H, 2013
)
0.39
" The highly sensitive method was successfully applied to estimate pharmacokinetic parameters of GNP-GLU following oral and intravenous administration of genipin to rats."( A validated HPLC-MS/MS method for determination of genipin-1-o-glucuronic acid in rat plasma after administration of genipin and its application to a pharmacokinetic study.
Ding, Y; Ji, G; Peng, M; Tao, JS; Zhang, T; Zhang, Y, 2014
)
0.4
" administration of geniposide, the peak concentration of geniposide in plasma occurred at 1 h and plasma geniposide was eliminated nearly completely within 12 h."( Pharmacokinetics, bioavailability and tissue distribution of geniposide following intravenous and peroral administration to rats.
Cao, J; Hao, J; Liu, K; Wang, F, 2014
)
0.4
" A comparative pharmacokinetic study of geniposide in stroke and sham-operated rats after administration of XNJ and geniposide was proceeded to evaluate the effect of stroke on pharmacokinetics of geniposide, while the influence of other components in XNJ was determined by using gardenia extract and geniposide-borneol compounds in rats with stroke to compare."( The effect of stroke and other components in Xing-Nao-Jing on the pharmacokinetics of geniposide.
Bai, J; Cao, YF; Du, Q; Du, SY; Guo, YW; Lu, Y; Xu, P, 2014
)
0.4
" Various pharmacokinetic parameters were estimated from the plasma concentration versus time data using non-compartmental methods."( The effect of stroke and other components in Xing-Nao-Jing on the pharmacokinetics of geniposide.
Bai, J; Cao, YF; Du, Q; Du, SY; Guo, YW; Lu, Y; Xu, P, 2014
)
0.4
" In stroke, the Cmax and AUC(0-t) of geniposide-borneol group and gardenia extraction group were close to XNJ group and geniposide group, respectively."( The effect of stroke and other components in Xing-Nao-Jing on the pharmacokinetics of geniposide.
Bai, J; Cao, YF; Du, Q; Du, SY; Guo, YW; Lu, Y; Xu, P, 2014
)
0.4
" The Cmax value of geniposide in the geniposide-SLNs was significantly higher than that obtained with geniposide solution."( Pharmacokinetics, tissue distribution and relative bioavailability of geniposide-solid lipid nanoparticles following oral administration.
Cao, J; Hao, J; Liu, K; Wang, F, 2014
)
0.4
" The results showed that the pharmacokinetic behaviors of the alkaloids were different although their chemical structures were similar."( Pharmacochemistry and integrated pharmacokinetics of six alkaloids after oral administration of huang-lian-jie-du-tang decoction.
Liu, JX; Ma, ZT; Yang, XW; Zhang, Y, 2014
)
0.4
" The validated method was successfully applied to a pharmacokinetic study of the four bioactive components in rats after intravenous administration of Reduning injection."( Simultaneous determination of neochlorogenic acid, chlorogenic acid, cryptochlorogenic acid and geniposide in rat plasma by UPLC-MS/MS and its application to a pharmacokinetic study after administration of Reduning injection.
Fu, X; Li, F; Wang, Y; Wang, Z; Wen, J; Xiao, W; Xiong, Z; Zhao, L; Zheng, W, 2015
)
0.42
" The pharmacokinetic parameters were calculated by the software of Kinetica."( [Study on pharmacokinetics of geniposide in mice administrated by xingnaojing microemulsion and mPEG2000-PLA modified xingnaojing microemulsion].
Chen, XL; Du, SY; Guo, QL; Li, HY; Lu, Y; Wen, R, 2014
)
0.4
"The results showed that following the use of the two medicinal plants, for AU and GP, the values of Cmax markedly increased, and the values of cmax markedly decreased."( LC/MS/MS determination and pharmacokinetic studies of six compounds in rat plasma following oral administration of the single and combined extracts of Eucommia ulmoides and Dipsacus asperoides.
Gao, XM; Huang, YX; Huo, Y; Liu, EW; Olaleye, O; Wang, L; Wang, Q; Wang, T, 2014
)
0.4
" To date, little information is available on the pharmacokinetic properties of this poly-herbal formulation."( Simultaneous multi-component quantitation of Chinese herbal injection Yin-zhi-huang in rat plasma by using a single-tube extraction procedure for mass spectrometry-based pharmacokinetic measurement.
Chen, B; Ding, L; Guo, B; Tan, Z; Wang, M; Ye, M; Yuan, Y; Zeng, L; Zhou, J, 2014
)
0.4
" The Tmax and mean residence time (MRT) of geniposide of the three groups were consistent with previous data."( Pharmacokinetics of geniposide by monoclonal antibody-based icELISA in mice after oral administration of Huanglian-Jiedu-Tang.
Cheng, JJ; Feng, HB; Qu, HH; Sun, Y; Wang, QG; Wang, XQ; Wu, TT; Zhang, GL; Zhao, Y, 2014
)
0.4
"The aim of this study was to explore the anti-inflammatory effects of Geniposide (GE), an iridoid glycoside compound extracted from Gardenia jasminoides Ellis (GJ) fruit in adjuvant-induced arthritis (AA) rats and its pharmacokinetic (PK) basis."( Anti-inflammatory effects and pharmacokinetics study of geniposide on rats with adjuvant arthritis.
Chen, J; Chen, JY; Dai, MM; Hu, SL; Li, H; Wu, H, 2015
)
0.42
" The pharmacokinetic data demonstrated that the area under concentration-time curve (AUC) values of gentiopicroside, geniposide, baicalin, and swertiamarin were 1417 ± 83."( Determination and pharmacokinetic study of gentiopicroside, geniposide, baicalin, and swertiamarin in Chinese herbal formulae after oral administration in rats by LC-MS/MS.
Lin, LC; Lu, CM; Tsai, TH, 2014
)
0.4
" The method was successfully applied to pharmacokinetic studies of valtrate in rats."( Development of a LC-MS-MS Method for Quantification of Valtrate and Its Application to Pharmacokinetic Study.
Lin, W; Qiu, J; Sun, L; Wang, G; Zhang, N, 2015
)
0.42
" Compared with the HP group, Tmax (time to reach peak drug concentration in plasma) and AUC(0-τ) significantly increased in the ZZHPD and HP-ZZ groups."( Comparative pharmacokinetics and brain distribution of magnolol and honokiol after oral administration of Magnolia officinalis cortex extract and its compatibility with other herbal medicines in Zhi-Zi-Hou-Po Decoction to rats.
Feng, F; Liu, Y; Shi, Q; Wang, D; Yang, G, 2016
)
0.43
" The renal impairment may affect drug clearance and other pharmacokinetic processes which can increase toxicity and drug to drug interactions or cause ineffective therapy."( Comparative pharmacokinetics of the main compounds of Shanzhuyu extract after oral administration in normal and chronic kidney disease rats.
Du, L; Duan, JA; Guo, J; Jiang, S; Liu, P; Qian, D; Shang, EX; Su, SL; Tao, J; Zhao, M, 2015
)
0.42
"The pharmacokinetic behavior of morroniside and loganin in normal and CKD rat plasma was determined in this paper."( Comparative pharmacokinetics of the main compounds of Shanzhuyu extract after oral administration in normal and chronic kidney disease rats.
Du, L; Duan, JA; Guo, J; Jiang, S; Liu, P; Qian, D; Shang, EX; Su, SL; Tao, J; Zhao, M, 2015
)
0.42
" This study was designed to confirm the expected synergistic effects of RGHP at pharmacodynamic and pharmacokinetic levels."( Synergistic effects of rhubarb-gardenia herb pair in cholestatic rats at pharmacodynamic and pharmacokinetic levels.
Dong, LC; Dong, X; Fan, YX; Li, HJ; Li, P; Ma, J; Yu, Q, 2015
)
0.42
" For pharmacodynamic study, biochemical and histopathological tests were performed to assess the hepatoprotective effects."( Synergistic effects of rhubarb-gardenia herb pair in cholestatic rats at pharmacodynamic and pharmacokinetic levels.
Dong, LC; Dong, X; Fan, YX; Li, HJ; Li, P; Ma, J; Yu, Q, 2015
)
0.42
" The pharmacokinetic study indicated RGHP could significantly elevate systemic exposure level and prolong retention time of five markers in comparison with rhubarb or gardenia alone."( Synergistic effects of rhubarb-gardenia herb pair in cholestatic rats at pharmacodynamic and pharmacokinetic levels.
Dong, LC; Dong, X; Fan, YX; Li, HJ; Li, P; Ma, J; Yu, Q, 2015
)
0.42
"The present study demonstrated the synergistic effects of RGHP in ANIT-induced cholestatic rats at pharmacodynamic and pharmacokinetic levels, and has significant enlightenments for the rational use of the related TCM formulas containing RGHP."( Synergistic effects of rhubarb-gardenia herb pair in cholestatic rats at pharmacodynamic and pharmacokinetic levels.
Dong, LC; Dong, X; Fan, YX; Li, HJ; Li, P; Ma, J; Yu, Q, 2015
)
0.42
" The present work aimed to assess the impact of mPEG2000-PLA on pharmacokinetic features and brain-targeting ability of XNJ-M."( Xingnaojing mPEG2000-PLA modified microemulsion for transnasal delivery: pharmacokinetic and brain-targeting evaluation.
Bai, J; Du, S; Li, P; Lu, Y; Wen, R; Xu, P; Zhang, Q, 2016
)
0.43
" The method was successfully applied to pharmacokinetic study of the analytes in normal and doxorubicin-induced chronic kidney disease rat plasma."( Simultaneous determination of loganin, morroniside, catalpol and acteoside in normal and chronic kidney disease rat plasma by UPLC-MS for investigating the pharmacokinetics of Rehmannia glutinosa and Cornus officinalis Sieb drug pair extract.
Du, L; Duan, JA; Guo, J; Jiang, S; Liu, P; Qian, D; Shang, EX; Su, SL; Tao, J; Zhao, M, 2016
)
0.43
" Hence, the pharmacokinetic-pharmacodynamic (PK-PD) model was introduced in the present study, aiming to link the pharmacokinetic profiles with the therapeutic outcomes of QKLI, and subsequently to provide valuable guidelines for the rational use of QKLI in clinical settings."( Pharmacokinetic-Pharmacodynamic Modeling to Study the Antipyretic Effect of Qingkailing Injection on Pyrexia Model Rats.
Gao, X; Lu, Z; Peng, L; Qin, L; Song, Y; Wang, Q; Zhang, Q; Zhang, Z, 2016
)
0.43
" The results showed that the pharmacokinetic profile (especially the area under the plasma concentration-time curve, AUC) of geniposide in type 2 diabetic rats after orally administered with Fructus Gradeniae extract or pure geniposide was remarkably different from that in normal rats."( Comparative investigation on the pharmacokinetics of geniposide in type 2 diabetic and normal rats after oral administration of Fructus Gradeniae extract.
Chen, R; Deng, YX; He, LH; Li, J; Lv, Y; Zhang, XJ, 2016
)
0.43
" The current pharmacokinetic research could serve as a crucial step in identifying the chemical basis responsible for the therapeutic action of ReDuNing injection."( Pharmacokinetics and Disposition of Circulating Iridoids and Organic Acids in Rats Intravenously Receiving ReDuNing Injection.
Chen, F; Cheng, C; Du, F; Li, C; Li, J; Li, L; Liu, Q; Olaleye, OE; Wang, F; Wang, Z; Xiao, W; Xu, F; Yang, J; Yu, K; Zhong, C, 2016
)
0.69
" Then, by conducting hypothalamus metabolomics studies, 14 metabolites were screened as the potential biomarkers that related to the antipyretic mechanisms of QKLI and were used as its pharmacodynamic surrogate indices."( An integrated strategy by using target tissue metabolomics biomarkers as pharmacodynamic surrogate indices to screen antipyretic components of Qingkaikling injection.
Fu, S; Gao, X; Huang, Z; Liu, H; Liu, Y; Lu, F; Wang, M; Xie, Z; Yu, H; Zhang, Y; Zhang, Z; Zhao, H, 2017
)
0.46
" The rats were administered orally at 1650 mg/kg MO and 25, 50 and 100 mg/kg MO iridoid glycosides (MOIGs) or intravenously at MOIG 25 mg/kg for pharmacokinetic study of MON and DA."( Pharmacokinetics and tissue distribution of monotropein and deacetyl asperulosidic acid after oral administration of extracts from Morinda officinalis root in rats.
Han, T; He, YQ; Hsu, HY; Lin, B; Qi, YP; Shen, Y; Song, HT; Wu, YB; Xin, HL; Zhang, JH; Zhang, Q; Zhang, QY; Zhao, L, 2018
)
0.48
"Significant differences in the pharmacokinetic parameters were observed in male and female rats."( Pharmacokinetics and tissue distribution of monotropein and deacetyl asperulosidic acid after oral administration of extracts from Morinda officinalis root in rats.
Han, T; He, YQ; Hsu, HY; Lin, B; Qi, YP; Shen, Y; Song, HT; Wu, YB; Xin, HL; Zhang, JH; Zhang, Q; Zhang, QY; Zhao, L, 2018
)
0.48
" Therefore, S1P can also be potentially used as a pharmacodynamic marker to study adjuvant arthritis (AA) rats."( UHPLC-MS/MS analysis of sphingosine 1-phosphate in joint cavity dialysate and hemodialysis solution of adjuvant arthritis rats: Application to geniposide pharmacodynamic study.
Feng, L; Hong, W; Jun, F; Li, D; Ran, D; Wenyu, W; Xiang, Z; Xuejing, D; Yan, W; Zhengrong, Z, 2019
)
0.51
" The pharmacokinetic results demonstrated that the combined administration of ABS and GE( 60 mg·kg~(-1)+60 mg·kg~(-1)) can increase the degree of GE in joint cavity distribution,and the AUCjoint/AUCplasmwere twice of that of single administration of GE( 60 mg·kg~(-1)),which indicated that ABS might played a vital role in GE's distribution to joint cavity."( [Pharmacokinetics of Achyranthes bidentata on adjuvant arthritis rats by microdialysis and UHPLC-MS/MS].
Dai, XJ; Deng, R; Fu, J; Li, F; Wang, WY; Wang, Y; Wu, H; Zhan, X, 2019
)
0.51

Compound-Compound Interactions

ExcerptReferenceRelevance
"To screen effective principles from traditional Chinese medicine, a method named hepatocyte extraction combined with HPLC (HE-HPLC) was establish in this study."( [Establishment of hepatocyte extraction combined with HPLC(HE-HPLC) and application in analysis of active components in the fruits of Gardenia jasminoides extract].
Hong, M; Ma, H; Zhu, Q, 2009
)
0.35
" C(max) , AUC and Cl) of D, G and R, when administered with COC (a combination of D, G and R), were C(max) 16."( Simultaneous in vivo RP-HPLC-DAD quantification of multiple-component and drug-drug interaction by pharmacokinetics, using 6,7-dimethylesculetin, geniposide and rhein as examples.
Jiao, G; Sun, H; Sun, W; Wang, X; Yuan, Y; Zhang, A, 2012
)
0.38
" By using 10 mg/mL cellulase and 24 h-incubation at 50 °C, pH 4, combined with in situ extraction, genipin with good purity was yielded at 58."( One-enzyme catalyzed simultaneous plant cell disruption and conversion of released glycoside to aglycone combined with in situ product separation as green one-pot production of genipin from gardenia fruit.
Ngawhirunpat, T; Opanasopit, P; Rojanarata, T; Winotapun, W, 2013
)
0.39
" However, 5-formylisochromen-1-one (4), (-)-mellein (8), and swermacrolactone C (9) exhibited potent antimycobacterial activities against Mycobacterium smegmatis when used in combination with the antibiotic drug erythromycin."( Constituents of Fagraea fragrans with Antimycobacterial Activity in Combination with Erythromycin.
Chakthong, S; Cheyeng, N; Chusri, S; Heembenmad, S; Madmanang, S; Mahabusarakam, W; Saising, J; Seeger, M, 2016
)
0.43
"In this paper, an analysis strategy integrating macroporous resin (AB-8) column chromatography and high performance liquid chromatography-electrospray ionization-tandem mass spectrometry (HPLC-ESI-MS/MS) combined with ion mobility spectrometry (IMS) was proposed and applied for identification and structural characterization of compounds from the fruits of Gardenia jasminoides."( A strategy for identification and structural characterization of compounds from Gardenia jasminoides by integrating macroporous resin column chromatography and liquid chromatography-tandem mass spectrometry combined with ion-mobility spectrometry.
Liu, S; Liu, Z; Song, F; Wang, L; Xing, J; Zhang, X, 2016
)
0.43
" Microdialysis combined with liquid chromatography coupled to quadrupole time-of-flight tandem mass spectrometry (LC/QTOF-MS/MS) was established for the purpose of screening of the multiple bioactive compounds in traditional Chinese medicines (TCMs)."( Characterization of interaction property of multi-components in Gardenia jasminoides with aldose reductase by microdialysis combined with liquid chromatography coupled to mass spectrometry.
Liu, S; Liu, Z; Song, F; Wang, L; Xing, J, 2016
)
0.43
" Induction of apoptosis was also higher after treatment with EGCG in combination with eugenol-amrogentin than individual compound treatments."( Epigallocatechin gallate in combination with eugenol or amarogentin shows synergistic chemotherapeutic potential in cervical cancer cell line.
Kumar Panda, C; Mandal, S; Pal, D; Roy, R; Sur, S, 2018
)
0.48
" In this study, rat adipose stem cells (rASCs) were seeded into anti-oxidative N-acetylcysteine (NAC) grafted polyurethane (PU) scaffold and then combined with short dynamic compressive stimulation (24 h) to induce rASCs chondrogenesis differentiation in vitro."( Studies of proliferation and chondrogenic differentiation of rat adipose stem cells using an anti-oxidative polyurethane scaffold combined with cyclic compression culture.
Cheng, CH; Huang, ST; Lin, JC; Tseng, SJ; Wu, CC, 2020
)
0.56

Bioavailability

The aim of this work was to advance in the knowledge on the bioavailability of the secoiridoids present in a Fraxinus angustifolia Vahl seed/fruit extract using both targeted and untargeted metabolomic analyses.

ExcerptReferenceRelevance
" Therefore, the low oral bioavailability of aucubin may be attributed to pH-instability in the gastric fluid, poor GI absorption due to low lipophilicity, and the possible metabolism in the GI mucosa and liver (so called first-pass effect)."( Pharmacokinetic study of an iridoid glucoside: aucubin.
Chang, IM; Kim, SK; Lee, MH; Shim, CK; Suh, NJ, 1991
)
0.28
" More recent studies have shown that aqueous extracts of the roots contain appreciable amounts of GABA which could directly cause sedation but there is some controversy surrounding the bioavailability of this compound."( The scientific basis for the reputed activity of Valerian.
Houghton, PJ, 1999
)
0.3
" This assay can be employed in bioavailability studies of olive oil phenolic compounds, thus assisting the evaluation of their pharmacological role."( Simultaneous determination of oleuropein and its metabolites in plasma by high-performance liquid chromatography.
Aligiannis, N; Gikas, E; Kafatos, A; Papadopoulos, N; Tsarbopoulos, A, 2003
)
0.32
"50 h, and the bioavailability was 39."( Pharmacokinetics and tissue distribution of gentiopicroside following oral and intravenous administration in mice.
Bligh, SW; Wang, CH; Wang, ZT; White, CJ; White, KN,
)
0.13
" Further bioavailability studies need to be undertaken to determine the in vivo effect of extract on platelet function and to validate the present results."( The effects of polyphenols in olive leaves on platelet function.
Christensen, AM; Hawley, JA; Mok, M; Singh, I; Turner, AH, 2008
)
0.35
"The pharmacokinetics and bioavailability of gentiopicroside (GPS), an active component of the Gentian plant species, from orally administered decoctions of Gentianae (DG), or in combination with other plants in the prescription of Longdan Xiegan Tang (LXT), was compared in rats with oral administration of GPS alone, using doses adjusted to deliver equivalent amounts of GPS (150 mg/kg)."( Pharmacokinetics and bioavailability of gentiopicroside from decoctions of Gentianae and Longdan Xiegan Tang after oral administration in rats--comparison with gentiopicroside alone.
Bligh, SW; Branford-White, CJ; Cheng, XM; Wang, CH; Wang, ZT; White, KN, 2007
)
0.34
" The results demonstrate that the bioavailability of GPS was markedly improved when administered as a decoction than as purified GPS."( Pharmacokinetic behavior of gentiopicroside from decoction of Radix Gentianae, Gentiana macrophylla after oral administration in rats: a pharmacokinetic comaprison with gentiopicroside after oral and intravenous administration alone.
Bligh, SW; Branford-White, CJ; Cheng, XM; He, YQ; Wang, CH; Wang, ZT; White, KN, 2007
)
0.34
" It has specific absorption locus and access to locating administration, meanwhile it's the P-gp substrate, and could increase its fraction of bioavailability by corporation with P-gp inhibitor."( [Studies on absorption mechanism of loganin in intestines of rats].
Hu, ZT; Ji, YB; Li, WL; Wang, XD; Xu, D, 2008
)
0.35
"5 mL x min(-1), the absorption rate of geniposide remains constant in a dose-independent manner."( [Evaluation of nasal absorption for geniposide solution].
Wan, N; Xu, R; Yang, M; Zhang, H; Zheng, Q, 2009
)
0.35
" The developed methodology was successfully applied for the simultaneous quantification of OE and its aforementioned metabolites in rat plasma samples, thus demonstrating its suitability for pharmacokinetics, as well as bioavailability and metabolism studies."( Simultaneous quantification of oleuropein and its metabolites in rat plasma by liquid chromatography electrospray ionization tandem mass spectrometry.
Bazoti, FN; Gikas, E; Tsarbopoulos, A, 2010
)
0.36
"According to the P and the logP, it could be indicated that the absorption of geniposide at small intestine was poor absorption; The absorption rate was increased with the decrease of the extract concentration; Their absorption was first-order process besides the passive diffusion mechanism, and facilitated diffusion and active transport may also take part in the transport process."( [Studies on O/W partition coefficient and absorption kinetics of geniposide in fructus gardeniae extract in rat intestine].
Du, S; Lu, Y; Rao, X; Zhang, Q, 2009
)
0.35
"The aim of this study was to prepare the inclusion complex of genipin (GP) and beta-cyclodextrin (beta-CD) with improved stability, solubility, and bioavailability and to study the pharmacokinetics of beta-CD inclusion complex in mice."( Preparation, characterization, and pharmacokinetics of the inclusion complex of genipin-beta-cyclodextrin.
Ji, G; Lu, Y; Tao, J; Wang, S; Zhang, T, 2009
)
0.35
"The relative bioavailability of the inclusion complex of GP-beta-CD to free GP was 305."( Preparation, characterization, and pharmacokinetics of the inclusion complex of genipin-beta-cyclodextrin.
Ji, G; Lu, Y; Tao, J; Wang, S; Zhang, T, 2009
)
0.35
" A rat in situ nasal perfusion technique with a novel volumeadjusted calculation was used to examine the absorption rate and extent of Ge."( The in situ and in vivo study on enhancing effect of borneol in nasal absorption of Geniposide in rats.
Chen, X; Du, S; Lu, Y; Wu, Q; Yao, Z; Zhai, Y, 2010
)
0.36
" Compared with the intravenous administration, the absolute bioavailability of Ge was 76."( Enhancing effect of natural borneol on the absorption of geniposide in rat via intranasal administration.
Chen, XL; Du, SY; Lu, Y; Song, X; Wu, Q; Xu, B; Zhai, YS, 2011
)
0.37
" The result illustrated that the oral bioavailability of geniposide was dramatically enhanced when ZZ was combined with HP or/and ZS."( Pharmacokinetics of geniposide in Zhi-Zi-Hou-Pu decoction and in different combinations of its constituent herbs.
Feng, F; Sun, Y; Yu, X, 2012
)
0.38
" The absorption rate and permeability value of the inclusion complex were significantly higher than the free drug, suggesting that its enhancing effect was involved in its solubilizing effect and Pgp inhibitory effect."( Enhancing effect of hydroxypropyl-β-cyclodextrin on the intestinal absorption process of genipin.
Cui, YL; Meng, FC; Song, YF; Zhang, Y, 2011
)
0.37
" The absolute bioavailability of genipin was 80."( HPLC-MS/MS method to determine genipin in rat plasma after hydrolysis with sulfatase and its application to a pharmacokinetic study.
Ding, Y; Guo, CR; Tan, B; Tao, JS; Yang, L; Zhang, T, 2012
)
0.38
" In our preliminary study, notoginsenoside R₁ was able significantly to improve the bioavailability of geniposide in beagle dogs, but the underlying mechanisms remain unknown."( The effects of notoginsenoside R₁ on the intestinal absorption of geniposide by the everted rat gut sac model.
Chula, S; Hang, L; Jianning, S; Shi, R; Yinying, B, 2012
)
0.38
"To establish a method for determination of geniposide in Beagle dogs plasma by high performance liquid chromatography (HPLC), and study the pharmacokinetics and bioavailability of geniposide in Beagle dogs after oral administration Xingnaojing."( [Pharmacokinetics and bioavailabilities of geniposide in Beagle dogs after oral administration Xingnaojing].
Bian, B; Du, S; Li, P; Tian, X; Wang, H; Yang, J, 2012
)
0.38
" The bioavailability of geniposide in Beagle dogs after oral administration Xingnaojing was (6."( [Pharmacokinetics and bioavailabilities of geniposide in Beagle dogs after oral administration Xingnaojing].
Bian, B; Du, S; Li, P; Tian, X; Wang, H; Yang, J, 2012
)
0.38
" The results indicated that the oral administration bioavailability of geniposide was in low degree."( [Pharmacokinetics and bioavailabilities of geniposide in Beagle dogs after oral administration Xingnaojing].
Bian, B; Du, S; Li, P; Tian, X; Wang, H; Yang, J, 2012
)
0.38
" (2) The water absorption rate of composite bio-sponge crosslinked using genipin was better than that of crosslinked using glutaraldehyde."( [The influences of cross-linking agent on the composite bio-sponge].
Huang, L; Li, D; Li, P; Luo, J, 2012
)
0.38
"Compared with the composite bio-sponge crosslinked using glutaraldehyde, the degree of cross linking and the cytotoxicity of the composite bio-sponge crosslinked using genipin decreased; however, the water absorption rate and the degradation rate increased."( [The influences of cross-linking agent on the composite bio-sponge].
Huang, L; Li, D; Li, P; Luo, J, 2012
)
0.38
"The purpose of this study was to investigate the effects of natural borneol (NB) on the pharmacokinetics and bioavailability of ophthalmic administered geniposide (Ge) in rabbits."( Natural borneol enhances geniposide ophthalmic absorption in rabbits.
Bi, H; Guo, J; Liu, D; Song, J; Wang, X; Xie, X, 2013
)
0.39
" To quantify the bioavailability and metabolism of oleuropein and hydroxytyrosol when taken as OLE, nine volunteers (five males) aged 42."( Human absorption and metabolism of oleuropein and hydroxytyrosol ingested as olive (Olea europaea L.) leaf extract.
Cutfield, WS; de Bock, M; Derraik, JG; Henderson, HV; Hofman, PL; Thorstensen, EB, 2013
)
0.39
" The results showed that the constant absorption rate of geniposide (GE) in XNJ-D was (2."( [Comparative study on rat in situ nasal absorption of geniposide of Xingnaojing nasal drop and Xingnaojing microemulsion].
Du, SY; Hao, B; Li, HY; Lu, Y; Wen, R; Zhao, XJ, 2013
)
0.39
"In order to characterize the pharmacokinetics, bioavailability and tissue distribution of geniposide following intravenous and peroral administration to rats, a reliable gradient HPLC-based method has been developed and validated."( Pharmacokinetics, bioavailability and tissue distribution of geniposide following intravenous and peroral administration to rats.
Cao, J; Hao, J; Liu, K; Wang, F, 2014
)
0.4
" Oleuropein bioavailability and its effect on antioxidant status in pre- and postmenopausal women are unknown."( Bioavailability of phenolics from an oleuropein-rich olive (Olea europaea) leaf extract and its acute effect on plasma antioxidant status: comparison between pre- and postmenopausal women.
Espín, JC; García-Villalba, R; Larrosa, M; Possemiers, S; Tomás-Barberán, FA, 2014
)
0.4
"The aim of this study was to compare the oral bioavailability and pharmacokinetic data between pure compound of the major active component, single herbal extract and complex herbal formulation by determining bioavailability of geniposide in each group following intravenous and oral administrations."( Comparative oral bioavailability of geniposide following oral administration of geniposide, Gardenia jasminoides Ellis fruits extracts and Gardenia herbal formulation in rats.
Cheng, S; Lin, CH; Lin, LC; Tsai, TH, 2014
)
0.4
"Geniposide has various pharmacological effects; however, low oral bioavailability limits its clinical utility."( Pharmacokinetics, tissue distribution and relative bioavailability of geniposide-solid lipid nanoparticles following oral administration.
Cao, J; Hao, J; Liu, K; Wang, F, 2014
)
0.4
" The curves of time and residual quantities of GP and GPA (lnx) in the intestinal perfusion solution and the cumulative absorption rate were obtained."( Effects of fructus psoraleae extract on the intestinal absorption kinetics of geniposide and geniposidic acid in rat.
Gao, X; Han, L; Hou, X; Huang, Y; Huo, Y; Liu, E; Wang, L, 2014
)
0.4
" These results suggest that the gut microbiota may have an impact on the bioavailability of geniposide."( Effects of intestinal microbiota on the bioavailability of geniposide in rats.
Jin, MJ; Kim, DH; Kim, IS; Yoo, HH, 2014
)
0.4
"A specific, sensitive and high throughput ultra-high performance liquid chromatography-electrospray ionization tandem mass spectrometric method (UHPLC-ESI-MS/MS) was established and validated to assay geniposide (GE), a promising anti-inflammatory drug, in adjuvant arthritis rat plasma: application to pharmacokinetic and oral bioavailability studies and plasma protein binding ability."( Determination of geniposide in adjuvant arthritis rat plasma by ultra-high performance liquid chromatography tandem mass spectrometry method and its application to oral bioavailability and plasma protein binding ability studies.
Chen, J; Dai, MM; Hu, SL; Li, GQ; Li, SP; Sun, LL; Wang, R; Wang, W; Wu, H; Xu, GB, 2015
)
0.42
" There was little change in the HP-ZS group in comparison with the HP group, which indicated that ZZ promotes absorption extent and defers the absorption rate of MN."( Comparative pharmacokinetics and brain distribution of magnolol and honokiol after oral administration of Magnolia officinalis cortex extract and its compatibility with other herbal medicines in Zhi-Zi-Hou-Po Decoction to rats.
Feng, F; Liu, Y; Shi, Q; Wang, D; Yang, G, 2016
)
0.43
" The bioavailability and brain-target effects of borneol and geniposide in XNJ-M and XNJ-MM were compared in mice after intravenous (i."( Xingnaojing mPEG2000-PLA modified microemulsion for transnasal delivery: pharmacokinetic and brain-targeting evaluation.
Bai, J; Du, S; Li, P; Lu, Y; Wen, R; Xu, P; Zhang, Q, 2016
)
0.43
" The aim of this work was to advance in the knowledge on the bioavailability of the secoiridoids present in a Fraxinus angustifolia Vahl seed/fruit extract using both targeted and untargeted metabolomic analyses."( Targeted and Untargeted Metabolomics to Explore the Bioavailability of the Secoiridoids from a Seed/Fruit Extract (Fraxinus angustifolia Vahl) in Human Healthy Volunteers: A Preliminary Study.
Fança-Berthon, P; García-Conesa, MT; García-Villalba, R; Issaly, N; Roller, M; Tomás-Barberán, FA; Zafrilla, P, 2015
)
0.87
" AN could only be detected in the plasma and liver homogenate of normal mice, which was poorly absorbed in OVX mice and low in other measured tissues."( Pharmacokinetics and tissue distribution of five active ingredients of Eucommiae cortex in normal and ovariectomized mice by UHPLC-MS/MS.
An, J; Hu, F; Wang, C; Wang, Z; Yang, L; Zhang, Z, 2016
)
0.43
" Moreover, we discuss the chemistry, food sources and bioavailability of oleuropein aglycone."( Potential Therapeutic Effects of Oleuropein Aglycone in Alzheimer's Disease.
Capó, X; Castro, N; Forman, K; Martorell, M; Sureda, A; Tejada, S,
)
0.13
" In addition the concentration, metabolism and bioavailability of specific phenolic compounds will be discussed."( The Health Benefiting Mechanisms of Virgin Olive Oil Phenolic Compounds.
Cicerale, S; Parkinson, L, 2016
)
0.43
" The bioavailability of geniposide by nasal route is greater than that by oral administration."( A mucoadhesive, thermoreversible in situ nasal gel of geniposide for neurodegenerative diseases.
Bie, H; Jiang, S; Wang, H; Wang, Y, 2017
)
0.46
" Information regarding the chemistry of amarogentin, its biological sources, bioavailability as a pharmacological agent for the treatment and management of skin disorders and various forms of cancers will be beneficial to the scientists in the medicinal field."( Amarogentin as Topical Anticancer and Anti-Infective Potential: Scope of Lipid Based Vesicular in its Effective Delivery.
Kumar, V; Patel, DK; Patel, K; Rahman, M; Verma, A, 2019
)
0.51
"An olive leaf extract (OLE) was microencapsulated with sodium alginate (SA) by spray-drying to study the evolution of oleuropein (ORP) during in vitro gastrointestinal digestion, and its bioaccessibility and potential bioavailability from OLE and OLE-SA microparticles."( Evolution of the phenolic compounds profile of olive leaf extract encapsulated by spray-drying during in vitro gastrointestinal digestion.
Cebrián, R; Giménez, B; Gómez-Caravaca, AM; González, E; Maqueda, M; Martínez-Férez, A; Robert, P; Segura-Carretero, A, 2019
)
0.51
" These natural antioxidants molecules revealed several beneficial effects on human health, but a low bioavailability and accessibility to targeted site."( Chemical characterization of liposomes containing nutraceutical compounds: Tyrosol, hydroxytyrosol and oleuropein.
Bonechi, C; Consumi, M; Donati, A; Lamponi, S; Leone, G; Magnani, A; Pardini, A; Rossi, C; Rostom, H; Tamasi, G, 2019
)
0.51
"Acrylamide and phenolic compounds on both fresh and cooked olives were monitored by HPLC/MS-MS and reversed-phase-HPLC methods along different procedures: elaboration process, high hydrostatic pressure (HHP), cooking treatment and bioavailability evaluation."( Monitoring of acrylamide and phenolic compounds in table olive after high hydrostatic pressure and cooking treatments.
Cabrera-Bañegil, M; Delgado-Adámez, J; Fernández, A; Lodolini, EM; Martín-Vertedor, D; Ramírez, R, 2019
)
0.51
" Data on OLC and OLE bioavailability are scarce, as most research on EVOO polyphenols has concentrated on hydroxytyrosol, tyrosol, and oleuropein."( Health-promoting properties of oleocanthal and oleacein: Two secoiridoids from extra-virgin olive oil.
Escribano-Ferrer, E; Lamuela-Raventós, RM; López-Yerena, A; Lozano-Castellón, J; Rinaldi de Alvarenga, JF; Romero Del Castillo-Alba, J; Vallverdú-Queralt, A, 2020
)
0.8
" The absolute bioavailability of drug loaded NLC in brain was higher in IN route compared to NLC administered by IV route."( Application of computational tools for the designing of Oleuropein loaded nanostructured lipid carrier for brain targeting through nasal route.
Kesavan, BR; Palagati, S; Sv, S, 2019
)
0.51
" The intestinal absorption study indicated that geniposide was an absorption-enhancer for baicalin and significantly increased the absorption rate constant value and the apparent absorption constant value of baicalin, especially in duodenum and jejunum when the compatibility concentrations were 1:1 and 1:2."( Enhancement effect of geniposide on solubility and intestinal absorption of baicalin.
Cai, Z; Ding, Y; Huang, T; Jin, M; Zhang, T, 2019
)
0.51
"In this work, coated liposome as a novel delivery system assembled from genipin-crosslinked with whey protein isolate (WPI) and sodium alginate (SA) as the second layer on WPI-coated liposomal was developed in order to increase its bioavailability and prolong release for drug and nutraceuticals."( The influence of sodium alginate and genipin on physico-chemical properties and stability of WPI coated liposomes.
Rajabzadeh, G; Zamani Ghaleshahi, A, 2020
)
0.56
" The results showed that GE in plasma of GE-LP displayed three folds longer distribution half-life and a higher bioavailability and brain targeting compared to GE solution."( Geniposide-Loaded Liposomes for Brain Targeting: Development, Evaluation, and In Vivo Studies.
Guan, Y; He, Y; Li, D; Li, N; Li, Y; Liu, S; Long, Y; Shi, A; Shuang, Y; Wan, J; Xiang, Y; Zhang, Y, 2021
)
0.62
" Geniposide (GEN) is a typical natural iridoid glucoside compound with a series of biological activities, but the poor bioavailability of GEN limits its clinical application."( A geniposide-phospholipid complex ameliorates posthyperuricemia chronic kidney disease induced by inflammatory reactions and oxidative stress.
Chen, JS; Guo, X; Liao, ZX; Liu, C; Liu, JS; Sun, JY; Wang, MM; Wang, MX; Zhang, J; Zhang, MQ, 2022
)
0.72
" A meticulous record of the in vitro assays and in vivo (animals and humans) studies of the characteristic olive compounds was cited, and a critical discussion on their bioavailability and metabolism was performed taking into account data from their gut microbial metabolism."( Metabolism and Bioavailability of Olive Bioactive Constituents Based on In Vitro, In Vivo and Human Studies.
Halabalaki, M; Kalampokis, E; Nikou, T; Sakavitsi, ME, 2022
)
0.72
"The beneficial health effects of phytochemicals depend on their bioavailability and the form under which they reach systemic circulation, usually as phase II metabolites."( A novel combined analytical UV and MS approach for the quantification of oleuropein metabolites in human biological samples when authentic standards are not available.
García-Villalba, R; Horcajada, MN; Polia, F; Poquet, L; Tomás-Barberán, FA, 2022
)
0.72
" Firstly, a fast, selective and sensitive ultra-performance liquid chromatography coupled with tandem mass spectrometer (UPLC-MS/MS) was established and validated to quality the main bioactive compounds from ZZCD and compare the pharmacokinetics and bioavailability of different iridoids prototypes and metabolites from ZZCD between normal and chronic unpredictable mild stress rats."( Gut microbiota mediates the pharmacokinetics of Zhi-zi-chi decoction for the personalized treatment of depression.
Chen, XF; Cui, LX; Fang, YC; Gao, CC; Gao, FY; Huang, TH; Liu, JL; Wen, J; Zhai, YJ; Zhou, TT, 2023
)
1.09

Dosage Studied

ExcerptRelevanceReference
" The association of the seven extracts seemed to act in a synergetic way, the resulting activity being sedative at high dosage and anxiolytic at low dosage."( [Evaluation of the activity on the mouse CNS of several plant extracts and a combination of them].
Della Loggia, R; Redaelli, C; Tubaro, A,
)
0.13
"1-100 mumol/l in the perfusion medium a clear dose-response relationship was not demonstrable."( [The effects of valtrate on the EEG of the isolated, perfused rat brain].
Fink, C; Hölzl, J; Krieglstein, J; Rieger, H, 1984
)
0.27
" This result was achieved by exerting the levels of dosage in a dose-dependent manner."( Comparisons of geniposidic acid and geniposide on antitumor and radioprotection after sublethal irradiation.
Hsu, HY; Lin, CC; Lin, SY; Yang, JJ, 1997
)
0.3
" The influences of the factors, such as the dosage of coloring agent, reaction time, heating temperature and the dose of acid etc."( [Study on optimizing the analysis condition for active compound in Eucommia olive].
Lei, QF; Liu, JL; Peng, MJ; Zhang, M; Zhou, CS, 2004
)
0.32
"3 mg kg(-1) or less did not cause hepatotoxicity even in the repeated dosing study."( Potential hepatotoxicity of geniposide, the major iridoid glycoside in dried ripe fruits of Gardenia jasminoides (Zhi-zi).
Ding, Y; Ji, G; Shi, JR; Tao, JS; Zhang, LY; Zhang, T, 2013
)
0.39
" It also provides a literature basis for the instruction of rational clinical prescription, reform of dosage forms, and development and utilization."( [Process of iridoids in gardenia and its effect on relevant enzymes in vivo].
Guo, L; Zhang, Y; Zhu, H, 2012
)
0.76
" This dosage of genipin significantly reduced cell death at 48 h compared to vehicle control (0."( Neuroprotection by genipin against reactive oxygen and reactive nitrogen species-mediated injury in organotypic hippocampal slice cultures.
Ahmed, I; Hughes, RH; Morrison, B; Shreiber, DI; Silva, VA, 2014
)
0.4
" This study established an in vitro dose-response baseline for the effects of genipin treatment on tendon cells and their matrix, with a view to in vivo application to the repair of partial tendon tears."( Dose- and time-dependent effects of genipin crosslinking on cell viability and tissue mechanics - toward clinical application for tendon repair.
Cadby, J; Fessel, G; Snedeker, JG; van Weeren, R; Wunderli, S, 2014
)
0.4
" By comparing their retention time, high resolution mass data of HLJDD extracts, blank plasma and dosed plasma, 38 constituents, including 22 prototype compounds and 16 metabolites, were detected in rat plasma after oral administration of HLJDD."( [LC-FT-ICR-MS analysis of the prototypes and metabolites in rat plasma after administration of huang-lian-jie-du decoction].
Bian, BL; Si, N; Wang, HJ; Yang, J; Zhao, HY; Zuo, R, 2014
)
0.4
" Dose-response and time-dependence studies were carried out."( Hydroxytyrosol and oleuropein of olive oil inhibit mast cell degranulation induced by immune and non-immune pathways.
Fogal, TH; Mariani, ML; Penissi, AB; Persia, FA, 2014
)
0.4
" The pharmacokinetic profiles provide constructive information for the dosage regimen of herbal medicine and also contribute to elucidate the absorption mechanism in herbal applications and pharmacological experiments."( Determination and pharmacokinetic study of gentiopicroside, geniposide, baicalin, and swertiamarin in Chinese herbal formulae after oral administration in rats by LC-MS/MS.
Lin, LC; Lu, CM; Tsai, TH, 2014
)
0.4
" In addition, it was found that GE has rapid absorption and elimination, low absolute bioavailability, high plasma protein binding ability in AA rats after oral administration within the tested dosage range."( Determination of geniposide in adjuvant arthritis rat plasma by ultra-high performance liquid chromatography tandem mass spectrometry method and its application to oral bioavailability and plasma protein binding ability studies.
Chen, J; Dai, MM; Hu, SL; Li, GQ; Li, SP; Sun, LL; Wang, R; Wang, W; Wu, H; Xu, GB, 2015
)
0.42
" Interestingly, the antioxidant effects were limited to the treatment in the lower dosage of genipin, where higher dosage of genipin treatment resulted in the increased reactive oxygen species level and cytotoxicity."( Chemopreventive Properties of Genipin on AGS Cell Line via Induction of JNK/Nrf2/ARE Signaling Pathway.
Chang, HI; Ha, CH; Kim, JM; Kim, SJ; Ko, H; Shim, SH, 2016
)
0.43
"In order to optimize the base fertilizer dosage and root size of Gentiana crassicaulis in Ludian,Yulong, Yunnan,the differences in yield and quality of Gentiana crassicaulis caused by different base fertilizer dosage and root size were investigated."( [Influences of Base Fertilizer Dosage and Root Size on Quality and Yield of Gentiana crassicaulis Root].
Chen, XF; Cheng, T; Meng, J; Song, JH; Yang, WY; Zeng, Y, 2015
)
0.42
"There were big differences in yield and quality of Gentiana crassicaulis among different base fertilizer dosage and root size."( [Influences of Base Fertilizer Dosage and Root Size on Quality and Yield of Gentiana crassicaulis Root].
Chen, XF; Cheng, T; Meng, J; Song, JH; Yang, WY; Zeng, Y, 2015
)
0.42
" The findings obtained would provide fundamental information to propose a more reasonable dosage regimen and improve the level of individualized drug therapy in clinical settings."( Pharmacokinetic-Pharmacodynamic Modeling to Study the Antipyretic Effect of Qingkailing Injection on Pyrexia Model Rats.
Gao, X; Lu, Z; Peng, L; Qin, L; Song, Y; Wang, Q; Zhang, Q; Zhang, Z, 2016
)
0.43
"In TgCRND8 (Tg) mice we checked the dose-response effect of diet supplementation with oleuropein aglycone (OLE) at 12."( Oleuropein aglycone and polyphenols from olive mill waste water ameliorate cognitive deficits and neuropathology.
Casamenti, F; Luccarini, I; Nardiello, P; Pantano, D; Servili, M; Stefani, M, 2017
)
0.46
" The absorption of geniposide was studied systematically to guide the design of the oral dosage of geniposide and HLJDT in clinical therapy."( Study on the Absorption Mechanism of Geniposide in the Chinese Formula Huang-Lian-Jie-Du-Tang in Rats.
Guo, L; Yu, D; Zhang, Q; Zhang, Y; Zhu, H, 2017
)
0.46
" Low IRFV dosage can significantly reduce the AST and ALT contents in serum, liver index, and the TG contents in liver, enhance LPL activity."( Studies on the regulation of lipid metabolism and its mechanism of the iridoids rich fraction in Valeriana jatamansi Jones.
Cao, J; Chen, C; Jia, Z; Ma, C; Xu, K; Yan, Z; Yang, R; Zhang, T; Zhang, X; Zhu, J, 2016
)
0.67
" The effect of medium dosage of GJE was the best among these three dose groups and also better than Geniposide according to the results of all the detection index."( Learning and memory improvement and neuroprotection of Gardenia jasminoides (Fructus gardenia) extract on ischemic brain injury rats.
Lai, Q; Li, Y; Liu, Y; Yang, M; Zhang, H, 2017
)
0.46
" Mice were administered 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) with a dosage of 30 mg/kg daily for 5 days to establish a subacute PD model and treated with loganin."( Neuroprotective Effects of Loganin on MPTP-Induced Parkinson's Disease Mice: Neurochemistry, Glial Reaction and Autophagy Studies.
Chu, M; Cui, C; Lin, SL; Shen, YQ; Shi, YW; Sun, MF; Xu, YD; Yang, XS; Zhu, YL, 2017
)
0.46
" To establish a dose-response relationship, we used inflation testing to simulate the effects of increasing intraocular pressure in freshly harvested rat eyes stiffened with multiple concentrations of each agent."( Quantification of the efficacy of collagen cross-linking agents to induce stiffening of rat sclera.
Campbell, IC; Ethier, CR; Hannon, BG; Read, AT; Schwaner, SA; Sherwood, JM, 2017
)
0.46
" Rats in the IRI group and sham group were administrated with same dosage of saline at the same time."( Protective Effects of Geniposide on Hepatic Ischemia/Reperfusion Injury.
Huang, HT; Liu, JS; Rong, YP; Wei, L,
)
0.13
" These results suggested that this GEN-CS/INH/RMP NGPs inhalation powder would be a more useful dosage form than separate dose of INH or RMP for MTB."( Genipin-crosslinked carboxymethyl chitosan nanogel for lung-targeted delivery of isoniazid and rifampin.
Cai, X; Chen, T; Guo, L; Liao, W; Ma, D; Tan, W; Wang, W; Wu, T; Xiang, W; Yu, W; Zhang, J; Zhou, J, 2018
)
0.48
"It appears that bochnaloside at oral dosage greater than 150 mg/kg/day exerts antidiabetic effects in vivo through modulating the action of GLP-1."( Effects of boschnaloside from Boschniakia rossica on dysglycemia and islet dysfunction in severely diabetic mice through modulating the action of glucagon-like peptide-1.
Chen, CT; Huang, C; Lee, LC; Lin, LC; Liu, HK; Shiao, YJ; Song, JS, 2019
)
0.51
" Rats with type 1 diabetes mellitus were orally dosed with the extracts in amounts of 20 mg kg-1 of body weight for 14 days."( Antidiabetic effects of extracts of red and yellow fruits of cornelian cherries (Cornus mas L.) on rats with streptozotocin-induced diabetes mellitus.
Bila, I; Brodyak, I; Dzydzan, O; Kucharska, AZ; Sybirna, N, 2019
)
0.51
"Findings will provide timely information on the safety, efficacy, and optimal dosing of t-PA to treat moderate/severe COVID-19-induced ARDS, which can be rapidly adapted to a phase III trial (NCT04357730; FDA IND 149634)."(
Abbasi, S; Abd El-Wahab, A; Abdallah, M; Abebe, G; Aca-Aca, G; Adama, S; Adefegha, SA; Adidigue-Ndiome, R; Adiseshaiah, P; Adrario, E; Aghajanian, C; Agnese, W; Ahmad, A; Ahmad, I; Ahmed, MFE; Akcay, OF; Akinmoladun, AC; Akutagawa, T; Alakavuklar, MA; Álava-Rabasa, S; Albaladejo-Florín, MJ; Alexandra, AJE; Alfawares, R; Alferiev, IS; Alghamdi, HS; Ali, I; Allard, B; Allen, JD; Almada, E; Alobaid, A; Alonso, GL; Alqahtani, YS; Alqarawi, W; Alsaleh, H; Alyami, BA; Amaral, BPD; Amaro, JT; Amin, SAW; Amodio, E; Amoo, ZA; Andia Biraro, I; Angiolella, L; Anheyer, D; Anlay, DZ; Annex, BH; Antonio-Aguirre, B; Apple, S; Arbuznikov, AV; Arinsoy, T; Armstrong, DK; Ash, S; Aslam, M; Asrie, F; Astur, DC; Atzrodt, J; Au, DW; Aucoin, M; Auerbach, EJ; Azarian, S; Ba, D; Bai, Z; Baisch, PRM; Balkissou, AD; Baltzopoulos, V; Banaszewski, M; Banerjee, S; Bao, Y; Baradwan, A; Barandika, JF; Barger, PM; Barion, MRL; Barrett, CD; Basudan, AM; Baur, LE; Baz-Rodríguez, SA; Beamer, P; Beaulant, A; Becker, DF; Beckers, C; Bedel, J; Bedlack, R; Bermúdez de Castro, JM; Berry, JD; Berthier, C; Bhattacharya, D; Biadgo, B; Bianco, G; Bianco, M; Bibi, S; Bigliardi, AP; Billheimer, D; Birnie, DH; Biswas, K; Blair, HC; Bognetti, P; Bolan, PJ; Bolla, JR; Bolze, A; Bonnaillie, P; Borlimi, R; Bórquez, J; Bottari, NB; Boulleys-Nana, JR; Brighetti, G; Brodeur, GM; Budnyak, T; Budnyk, S; Bukirwa, VD; Bulman, DM; Burm, R; Busman-Sahay, K; Butcher, TW; Cai, C; Cai, H; Cai, L; Cairati, M; Calvano, CD; Camacho-Ordóñez, A; Camela, E; Cameron, T; Campbell, BS; Cansian, RL; Cao, Y; Caporale, AS; Carciofi, AC; Cardozo, V; Carè, J; Carlos, AF; Carozza, R; Carroll, CJW; Carsetti, A; Carubelli, V; Casarotta, E; Casas, M; Caselli, G; Castillo-Lora, J; Cataldi, TRI; Cavalcante, ELB; Cavaleiro, A; Cayci, Z; Cebrián-Tarancón, C; Cedrone, E; Cella, D; Cereda, C; Ceretti, A; Ceroni, M; Cha, YH; Chai, X; Chang, EF; Chang, TS; Chanteux, H; Chao, M; Chaplin, BP; Chaturvedi, S; Chaturvedi, V; Chaudhary, DK; Chen, A; Chen, C; Chen, HY; Chen, J; Chen, JJ; Chen, K; Chen, L; Chen, Q; Chen, R; Chen, SY; Chen, TY; Chen, WM; Chen, X; Chen, Y; Cheng, G; Cheng, GJ; Cheng, J; Cheng, YH; Cheon, HG; Chew, KW; Chhoker, S; Chiu, WN; Choi, ES; Choi, MJ; Choi, SD; Chokshi, S; Chorny, M; Chu, KI; Chu, WJ; Church, AL; Cirrincione, A; Clamp, AR; Cleff, MB; Cohen, M; Coleman, RL; Collins, SL; Colombo, N; Conduit, N; Cong, WL; Connelly, MA; Connor, J; Cooley, K; Correa Ramos Leal, I; Cose, S; Costantino, C; Cottrell, M; Cui, L; Cundall, J; Cutaia, C; Cutler, CW; Cuypers, ML; da Silva Júnior, FMR; Dahal, RH; Damiani, E; Damtie, D; Dan-Li, W; Dang, Z; Dasa, SSK; Davin, A; Davis, DR; de Andrade, CM; de Jong, PL; de Oliveira, D; de Paula Dorigam, JC; Dean, A; Deepa, M; Delatour, C; Dell'Aiera, S; Delley, MF; den Boer, RB; Deng, L; Deng, Q; Depner, RM; Derdau, V; Derici, U; DeSantis, AJ; Desmarini, D; Diffo-Sonkoue, L; Divizia, M; Djenabou, A; Djordjevic, JT; Dobrovolskaia, MA; Domizi, R; Donati, A; Dong, Y; Dos Santos, M; Dos Santos, MP; Douglas, RG; Duarte, PF; Dullaart, RPF; Duscha, BD; Edwards, LA; Edwards, TE; Eichenwald, EC; El-Baba, TJ; Elashiry, M; Elashiry, MM; Elashry, SH; Elliott, A; Elsayed, R; Emerson, MS; Emmanuel, YO; Emory, TH; Endale-Mangamba, LM; Enten, GA; Estefanía-Fernández, K; Estes, JD; Estrada-Mena, FJ; Evans, S; Ezra, L; Faria de, RO; Farraj, AK; Favre, C; Feng, B; Feng, J; Feng, L; Feng, W; Feng, X; Feng, Z; Fernandes, CLF; Fernández-Cuadros, ME; Fernie, AR; Ferrari, D; Florindo, PR; Fong, PC; Fontes, EPB; Fontinha, D; Fornari, VJ; Fox, NP; Fu, Q; Fujitaka, Y; Fukuhara, K; Fumeaux, T; Fuqua, C; Fustinoni, S; Gabbanelli, V; Gaikwad, S; Gall, ET; Galli, A; Gancedo, MA; Gandhi, MM; Gao, D; Gao, K; Gao, M; Gao, Q; Gao, X; Gao, Y; Gaponenko, V; Garber, A; Garcia, EM; García-Campos, C; García-Donas, J; García-Pérez, AL; Gasparri, F; Ge, C; Ge, D; Ge, JB; Ge, X; George, I; George, LA; Germani, G; Ghassemi Tabrizi, S; Gibon, Y; Gillent, E; Gillies, RS; Gilmour, MI; Goble, S; Goh, JC; Goiri, F; Goldfinger, LE; Golian, M; Gómez, MA; Gonçalves, J; Góngora-García, OR; Gonul, I; González, MA; Govers, TM; Grant, PC; Gray, EH; Gray, JE; Green, MS; Greenwald, I; Gregory, MJ; Gretzke, D; Griffin-Nolan, RJ; Griffith, DC; Gruppen, EG; Guaita, A; Guan, P; Guan, X; Guerci, P; Guerrero, DT; Guo, M; Guo, P; Guo, R; Guo, X; Gupta, J; Guz, G; Hajizadeh, N; Hamada, H; Haman-Wabi, AB; Han, TT; Hannan, N; Hao, S; Harjola, VP; Harmon, M; Hartmann, MSM; Hartwig, JF; Hasani, M; Hawthorne, WJ; Haykal-Coates, N; Hazari, MS; He, DL; He, P; He, SG; Héau, C; Hebbar Kannur, K; Helvaci, O; Heuberger, DM; Hidalgo, F; Hilty, MP; Hirata, K; Hirsch, A; Hoffman, AM; Hoffmann, JF; Holloway, RW; Holmes, RK; Hong, S; Hongisto, M; Hopf, NB; Hörlein, R; Hoshino, N; Hou, Y; Hoven, NF; Hsieh, YY; Hsu, CT; Hu, CW; Hu, JH; Hu, MY; Hu, Y; Hu, Z; Huang, C; Huang, D; Huang, DQ; Huang, L; Huang, Q; Huang, R; Huang, S; Huang, SC; Huang, W; Huang, Y; Huffman, KM; Hung, CH; Hung, CT; Huurman, R; Hwang, SM; Hyun, S; Ibrahim, AM; Iddi-Faical, A; Immordino, P; Isla, MI; Jacquemond, V; Jacques, T; Jankowska, E; Jansen, JA; Jäntti, T; Jaque-Fernandez, F; Jarvis, GA; Jatt, LP; Jeon, JW; Jeong, SH; Jhunjhunwala, R; Ji, F; Jia, X; Jia, Y; Jian-Bo, Z; Jiang, GD; Jiang, L; Jiang, W; Jiang, WD; Jiang, Z; Jiménez-Hoyos, CA; Jin, S; Jobling, MG; John, CM; John, T; Johnson, CB; Jones, KI; Jones, WS; Joseph, OO; Ju, C; Judeinstein, P; Junges, A; Junnarkar, M; Jurkko, R; Kaleka, CC; Kamath, AV; Kang, X; Kantsadi, AL; Kapoor, M; Karim, Z; Kashuba, ADM; Kassa, E; Kasztura, M; Kataja, A; Katoh, T; Kaufman, JS; Kaupp, M; Kehinde, O; Kehrenberg, C; Kemper, N; Kerr, CW; Khan, AU; Khan, MF; Khan, ZUH; Khojasteh, SC; Kilburn, S; Kim, CG; Kim, DU; Kim, DY; Kim, HJ; Kim, J; Kim, OH; Kim, YH; King, C; Klein, A; Klingler, L; Knapp, AK; Ko, TK; Kodavanti, UP; Kolla, V; Kong, L; Kong, RY; Kong, X; Kore, S; Kortz, U; Korucu, B; Kovacs, A; Krahnert, I; Kraus, WE; Kuang, SY; Kuehn-Hajder, JE; Kurz, M; Kuśtrowski, P; Kwak, YD; Kyttaris, VC; Laga, SM; Laguerre, A; Laloo, A; Langaro, MC; Langham, MC; Lao, X; Larocca, MC; Lassus, J; Lattimer, TA; Lazar, S; Le, MH; Leal, DB; Leal, M; Leary, A; Ledermann, JA; Lee, JF; Lee, MV; Lee, NH; Leeds, CM; Leeds, JS; Lefrandt, JD; Leicht, AS; Leonard, M; Lev, S; Levy, K; Li, B; Li, C; Li, CM; Li, DH; Li, H; Li, J; Li, L; Li, LJ; Li, N; Li, P; Li, T; Li, X; Li, XH; Li, XQ; Li, XX; Li, Y; Li, Z; Li, ZY; Liao, YF; Lin, CC; Lin, MH; Lin, Y; Ling, Y; Links, TP; Lira-Romero, E; Liu, C; Liu, D; Liu, H; Liu, J; Liu, L; Liu, LP; Liu, M; Liu, T; Liu, W; Liu, X; Liu, XH; Liu, Y; Liuwantara, D; Ljumanovic, N; Lobo, L; Lokhande, K; Lopes, A; Lopes, RMRM; López-Gutiérrez, JC; López-Muñoz, MJ; López-Santamaría, M; Lorenzo, C; Lorusso, D; Losito, I; Lu, C; Lu, H; Lu, HZ; Lu, SH; Lu, SN; Lu, Y; Lu, ZY; Luboga, F; Luo, JJ; Luo, KL; Luo, Y; Lutomski, CA; Lv, W; M Piedade, MF; Ma, J; Ma, JQ; Ma, JX; Ma, N; Ma, P; Ma, S; Maciel, M; Madureira, M; Maganaris, C; Maginn, EJ; Mahnashi, MH; Maierhofer, M; Majetschak, M; Malla, TR; Maloney, L; Mann, DL; Mansuri, A; Marelli, E; Margulis, CJ; Marrella, A; Martin, BL; Martín-Francés, L; Martínez de Pinillos, M; Martínez-Navarro, EM; Martinez-Quintanilla Jimenez, D; Martínez-Velasco, A; Martínez-Villaseñor, L; Martinón-Torres, M; Martins, BA; Massongo, M; Mathew, AP; Mathews, D; Matsui, J; Matsumoto, KI; Mau, T; Maves, RC; Mayclin, SJ; Mayer, JM; Maynard, ND; Mayr, T; Mboowa, MG; McEvoy, MP; McIntyre, RC; McKay, JA; McPhail, MJW; McVeigh, AL; Mebazaa, A; Medici, V; Medina, DN; Mehmood, T; Mei-Li, C; Melku, M; Meloncelli, S; Mendes, GC; Mendoza-Velásquez, C; Mercadante, R; Mercado, MI; Merenda, MEZ; Meunier, J; Mi, SL; Michels, M; Mijatovic, V; Mikhailov, V; Milheiro, SA; Miller, DC; Ming, F; Mitsuishi, M; Miyashita, T; Mo, J; Mo, S; Modesto-Mata, M; Moeller, S; Monte, A; Monteiro, L; Montomoli, J; Moore, EE; Moore, HB; Moore, PK; Mor, MK; Moratalla-López, N; Moratilla Lapeña, L; Moreira, R; Moreno, MA; Mörk, AC; Morton, M; Mosier, JM; Mou, LH; Mougharbel, AS; Muccillo-Baisch, AL; Muñoz-Serrano, AJ; Mustafa, B; Nair, GM; Nakanishi, I; Nakanjako, D; Naraparaju, K; Nawani, N; Neffati, R; Neil, EC; Neilipovitz, D; Neira-Borrajo, I; Nelson, MT; Nery, PB; Nese, M; Nguyen, F; Nguyen, MH; Niazy, AA; Nicolaï, J; Nogueira, F; Norbäck, D; Novaretti, JV; O'Donnell, T; O'Dowd, A; O'Malley, DM; Oaknin, A; Ogata, K; Ohkubo, K; Ojha, M; Olaleye, MT; Olawande, B; Olomo, EJ; Ong, EWY; Ono, A; Onwumere, J; Ortiz Bibriesca, DM; Ou, X; Oza, AM; Ozturk, K; Özütemiz, C; Palacio-Pastrana, C; Palaparthi, A; Palevsky, PM; Pan, K; Pantanetti, S; Papachristou, DJ; Pariani, A; Parikh, CR; Parissis, J; Paroul, N; Parry, S; Patel, N; Patel, SM; Patel, VC; Pawar, S; Pefura-Yone, EW; Peixoto Andrade, BCO; Pelepenko, LE; Peña-Lora, D; Peng, S; Pérez-Moro, OS; Perez-Ortiz, AC; Perry, LM; Peter, CM; Phillips, NJ; Phillips, P; Pia Tek, J; Piner, LW; Pinto, EA; Pinto, SN; Piyachaturawat, P; Poka-Mayap, V; Polledri, E; Poloni, TE; Ponessa, G; Poole, ST; Post, AK; Potter, TM; Pressly, BB; Prouty, MG; Prudêncio, M; Pulkki, K; Pupier, C; Qian, H; Qian, ZP; Qiu, Y; Qu, G; Rahimi, S; Rahman, AU; Ramadan, H; Ramanna, S; Ramirez, I; Randolph, GJ; Rasheed, A; Rault, J; Raviprakash, V; Reale, E; Redpath, C; Rema, V; Remucal, CK; Remy, D; Ren, T; Ribeiro, LB; Riboli, G; Richards, J; Rieger, V; Rieusset, J; Riva, A; Rivabella Maknis, T; Robbins, JL; Robinson, CV; Roche-Campo, F; Rodriguez, R; Rodríguez-de-Cía, J; Rollenhagen, JE; Rosen, EP; Rub, D; Rubin, N; Rubin, NT; Ruurda, JP; Saad, O; Sabell, T; Saber, SE; Sabet, M; Sadek, MM; Saejio, A; Salinas, RM; Saliu, IO; Sande, D; Sang, D; Sangenito, LS; Santos, ALSD; Sarmiento Caldas, MC; Sassaroli, S; Sassi, V; Sato, J; Sauaia, A; Saunders, K; Saunders, PR; Savarino, SJ; Scambia, G; Scanlon, N; Schetinger, MR; Schinkel, AFL; Schladweiler, MC; Schofield, CJ; Schuepbach, RA; Schulz, J; Schwartz, N; Scorcella, C; Seeley, J; Seemann, F; Seinige, D; Sengoku, T; Seravalli, J; Sgromo, B; Shaheen, MY; Shan, L; Shanmugam, S; Shao, H; Sharma, S; Shaw, KJ; Shen, BQ; Shen, CH; Shen, P; Shen, S; Shen, Y; Shen, Z; Shi, J; Shi-Li, L; Shimoda, K; Shoji, Y; Shun, C; Silva, MA; Silva-Cardoso, J; Simas, NK; Simirgiotis, MJ; Sincock, SA; Singh, MP; Sionis, A; Siu, J; Sivieri, EM; Sjerps, MJ; Skoczen, SL; Slabon, A; Slette, IJ; Smith, MD; Smith, S; Smith, TG; Snapp, KS; Snow, SJ; Soares, MCF; Soberman, D; Solares, MD; Soliman, I; Song, J; Sorooshian, A; Sorrell, TC; Spinar, J; Staudt, A; Steinhart, C; Stern, ST; Stevens, DM; Stiers, KM; Stimming, U; Su, YG; Subbian, V; Suga, H; Sukhija-Cohen, A; Suksamrarn, A; Suksen, K; Sun, J; Sun, M; Sun, P; Sun, W; Sun, XF; Sun, Y; Sundell, J; Susan, LF; Sutjarit, N; Swamy, KV; Swisher, EM; Sykes, C; Takahashi, JA; Talmor, DS; Tan, B; Tan, ZK; Tang, L; Tang, S; Tanner, JJ; Tanwar, M; Tarazi, Z; Tarvasmäki, T; Tay, FR; Teketel, A; Temitayo, GI; Thersleff, T; Thiessen Philbrook, H; Thompson, LC; Thongon, N; Tian, B; Tian, F; Tian, Q; Timothy, AT; Tingle, MD; Titze, IR; Tolppanen, H; Tong, W; Toyoda, H; Tronconi, L; Tseng, CH; Tu, H; Tu, YJ; Tung, SY; Turpault, S; Tuynman, JB; Uemoto, AT; Ugurlu, M; Ullah, S; Underwood, RS; Ungell, AL; Usandizaga-Elio, I; Vakonakis, I; van Boxel, GI; van den Beucken, JJJP; van der Boom, T; van Slegtenhorst, MA; Vanni, JR; Vaquera, A; Vasconcellos, RS; Velayos, M; Vena, R; Ventura, G; Verso, MG; Vincent, RP; Vitale, F; Vitali, S; Vlek, SL; Vleugels, MPH; Volkmann, N; Vukelic, M; Wagner Mackenzie, B; Wairagala, P; Waller, SB; Wan, J; Wan, MT; Wan, Y; Wang, CC; Wang, H; Wang, J; Wang, JF; Wang, K; Wang, L; Wang, M; Wang, S; Wang, WM; Wang, X; Wang, Y; Wang, YD; Wang, YF; Wang, Z; Wang, ZG; Warriner, K; Weberpals, JI; Weerachayaphorn, J; Wehrli, FW; Wei, J; Wei, KL; Weinheimer, CJ; Weisbord, SD; Wen, S; Wendel Garcia, PD; Williams, JW; Williams, R; Winkler, C; Wirman, AP; Wong, S; Woods, CM; Wu, B; Wu, C; Wu, F; Wu, P; Wu, S; Wu, Y; Wu, YN; Wu, ZH; Wurtzel, JGT; Xia, L; Xia, Z; Xia, ZZ; Xiao, H; Xie, C; Xin, ZM; Xing, Y; Xing, Z; Xu, S; Xu, SB; Xu, T; Xu, X; Xu, Y; Xue, L; Xun, J; Yaffe, MB; Yalew, A; Yamamoto, S; Yan, D; Yan, H; Yan, S; Yan, X; Yang, AD; Yang, E; Yang, H; Yang, J; Yang, JL; Yang, K; Yang, M; Yang, P; Yang, Q; Yang, S; Yang, W; Yang, X; Yang, Y; Yao, JC; Yao, WL; Yao, Y; Yaqub, TB; Ye, J; Ye, W; Yen, CW; Yeter, HH; Yin, C; Yip, V; Yong-Yi, J; Yu, HJ; Yu, MF; Yu, S; Yu, W; Yu, WW; Yu, X; Yuan, P; Yuan, Q; Yue, XY; Zaia, AA; Zakhary, SY; Zalwango, F; Zamalloa, A; Zamparo, P; Zampini, IC; Zani, JL; Zeitoun, R; Zeng, N; Zenteno, JC; Zepeda-Palacio, C; Zhai, C; Zhang, B; Zhang, G; Zhang, J; Zhang, K; Zhang, Q; Zhang, R; Zhang, T; Zhang, X; Zhang, Y; Zhang, YY; Zhao, B; Zhao, D; Zhao, G; Zhao, H; Zhao, Q; Zhao, R; Zhao, S; Zhao, T; Zhao, X; Zhao, XA; Zhao, Y; Zhao, Z; Zheng, Z; Zhi-Min, G; Zhou, CL; Zhou, HD; Zhou, J; Zhou, W; Zhou, XQ; Zhou, Z; Zhu, C; Zhu, H; Zhu, L; Zhu, Y; Zitzmann, N; Zou, L; Zou, Y, 2022
)
0.72
"Mucoadhesive buccal patch is a promising dosage form for a successful oral drug delivery, which provides unique advantages for various applications such as treatment of periodontal disease and postdental surgery disorders."( Fabrication of multifunctional mucoadhesive buccal patch for drug delivery applications.
Bahrami, SH; Bashari, A; Hemmatinejad, N; Rohani Shirvan, A, 2021
)
0.62
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (3,282)

TimeframeStudies, This Drug (%)All Drugs %
pre-199072 (2.19)18.7374
1990's113 (3.44)18.2507
2000's842 (25.66)29.6817
2010's1689 (51.46)24.3611
2020's566 (17.25)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 48.50

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

MetricThis Compound (vs All)
Research Demand Index48.50 (24.57)
Research Supply Index8.13 (2.92)
Research Growth Index5.36 (4.65)
Search Engine Demand Index79.62 (26.88)
Search Engine Supply Index2.00 (0.95)

This Compound (48.50)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials23 (0.68%)5.53%
Reviews135 (4.01%)6.00%
Case Studies5 (0.15%)4.05%
Observational2 (0.06%)0.25%
Other3,204 (95.10%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]