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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]:205 TC[Scopus]:229 | 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