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Institute of Chi... [4]
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Dietary polyphenols as antidiabetic agents: Advances and opportunities
Review article
2020
Authors:
Sun, Chongde
;
Zhao, Chao
;
Guven, Esra Capanoglu
;
Paoli, Paolo
;
Simal-Gandara, Jesus
; et al.
Favorite
|
TC[WOS]:
204
TC[Scopus]:
228
|
Submit date:2023/04/13
Bioavailability
Clinical Study
Diabetes
Diabetic Complication
Dietary Polyphenols
Glucose Absorption
Intestinal Microbiota
Pancreatic Islet Β-cell
Ginseng polysaccharides enhanced ginsenoside Rb1 and microbial metabolites exposure through enhancing intestinal absorption and affecting gut microbial metabolism
Journal article
Shen, Hong, Gao, Xue-Jiao, Li, Ting, Jing, Wang-Hui, Han, Bei-Lei, Jia, Yu-Meng, Hu, Nan, Yan, Zhi-Xiang, Li, Song-Lin, Yan, Ru. Ginseng polysaccharides enhanced ginsenoside Rb1 and microbial metabolites exposure through enhancing intestinal absorption and affecting gut microbial metabolism[J]. Journal of Ethnopharmacology, 2018, 216, 47-56.
Authors:
Shen, Hong
;
Gao, Xue-Jiao
;
Li, Ting
;
Jing, Wang-Hui
;
Han, Bei-Lei
; et al.
Favorite
|
TC[WOS]:
76
TC[Scopus]:
91
IF:
4.8
/
4.8
|
Submit date:2018/10/30
Oral Pharmacokinetics
Polysaccharides
Ginsenoside Rb1
Gut Microbial Metabolism
Pharmacokinetic Interactions
Intestinal Absorption
Systemic Exposure
Ginseng
Transport and metabolism of (+/-)-praeruptorin A in Caco-2 cell monolayers
Journal article
Jing, W. H., Song, Y. L., Yan, R., Bi, H. C., Li, P. T., Wang, Y. T.. Transport and metabolism of (+/-)-praeruptorin A in Caco-2 cell monolayers[J]. XENOBIOTICA, 2011, 41(1), 71-81.
Authors:
Jing, W. H.
;
Song, Y. L.
;
Yan, R.
;
Bi, H. C.
;
Li, P. T.
; et al.
Favorite
|
TC[WOS]:
20
TC[Scopus]:
21
IF:
1.3
/
1.4
|
Submit date:2018/11/01
Intestinal-absorption
Gene-expression
Drug Transport
Human Liver
Permeability
Carboxylesterases
Enantiomers
Ester
Preclinical characterization of intestinal absorption and metabolism of promising anti-Alzheimer's dimer bis(7)-tacrine
Journal article
Zhang L., Yu H., Li W.M., Cheung M.C., Pang Y.P., Gu Z.M., Chan K., Wang Y.T., Zuo Z., Han Y.F.. Preclinical characterization of intestinal absorption and metabolism of promising anti-Alzheimer's dimer bis(7)-tacrine[J]. International Journal of Pharmaceutics, 2008, 357(2018-01-02), 85.
Authors:
Zhang L.
;
Yu H.
;
Li W.M.
;
Cheung M.C.
;
Pang Y.P.
; et al.
Favorite
|
TC[WOS]:
19
TC[Scopus]:
20
IF:
5.3
/
5.6
|
Submit date:2018/10/31
Bis(7)-tacrine
Intestinal Absorption
Metabolism