4.1 Article

Paroxetine decreased plasma exposure of glyburide partly via inhibiting intestinal absorption in rats

期刊

DRUG METABOLISM AND PHARMACOKINETICS
卷 30, 期 3, 页码 240-246

出版社

JAPANESE SOC STUDY XENOBIOTICS
DOI: 10.1016/j.dmpk.2015.02.004

关键词

Glyburide; Paroxetine; Oral absorption; Intestinal transport; Caco-2 cells; Pharmacokinetics; Organic anion transporting polypeptides

资金

  1. National Science foundation of China [81373482, 81473273]
  2. Fundamental Research Funds for the Central Universities [2015PT042, ZD2014YX0026, PT2014YX0057]
  3. Priority Academic Program Development of Jiangsu Higher Education Institutions

向作者/读者索取更多资源

Accumulating evidences have shown that diabetes is often accompanied with depression, thus it is possible that oral antidiabetic agent glyburide and antidepressive agent paroxetine are co-administered in diabetic patients. The aim of this study was to assess interactions between glyburide and paroxetine in rats. Effect of paroxetine on pharmacokinetics of orally administered glyburide was investigated. Effect of naringin (NAR), an inhibitor of rat intestinal organic anion transporting polypeptides 1a5 (Oatp1a5), on pharmacokinetics of glyburide was also studied. The results showed that co-administration of paroxetine markedly reduced plasma exposure and prolonged T-max of glyburide, accompanied by significant increase in fecal excretion of glyburide. Co-administration of naringin also significantly decreased plasma exposure of glyburide. Data from intestinal perfusion experiments showed that both paroxetine and naringin significantly inhibited intestinal absorption of glyburide. Caco-2 cells were used to investigate whether paroxetine and naringin affected intestinal transport of glyburide and fexofenadine (a substrate of Oatp1a5). The results showed that both paroxetine and naringin greatly inhibited absorption of glyburide and fexofenadine. All results gave a conclusion that co-administration of paroxetine decreased plasma exposure of glyburide in rats via inhibiting intestinal absorption of glyburide, which may partly be attributed to the inhibition of intestinal Oatp1a5 activity. Copyright (C) 2015, The Japanese Society for the Study of Xenobiotics. Published by Elsevier Ltd. All rights reserved.

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