Effect of ursodeoxycholic acid on the expression of the hepatocellular bile acid transporters (Ntcp and bsep) in rats with estrogen-induced cholestasis
被引:34
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作者:
Micheline, D
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机构:Hop Beaujon, INSERM, U481, Unite Rech Mecan & Traitement Malad Foie, F-92118 Clichy, France
Micheline, D
Emmanuel, J
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机构:Hop Beaujon, INSERM, U481, Unite Rech Mecan & Traitement Malad Foie, F-92118 Clichy, France
Emmanuel, J
Serge, E
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机构:Hop Beaujon, INSERM, U481, Unite Rech Mecan & Traitement Malad Foie, F-92118 Clichy, France
Serge, E
机构:
[1] Hop Beaujon, INSERM, U481, Unite Rech Mecan & Traitement Malad Foie, F-92118 Clichy, France
[2] CHU Bicetre, Publ Hop Paris, INSERM, U347,Unite Genet & Mecan Malad Foie Enfant, Le Kremlin Bicetre, France
[3] CHU Bicetre, Publ Hop Paris, INSERM, U347,Serv Hepatol Pediat, Le Kremlin Bicetre, France
来源:
JOURNAL OF PEDIATRIC GASTROENTEROLOGY AND NUTRITION
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2002年
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35卷
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02期
关键词:
cholestasis;
bile salt export pump;
ursodeoxycholic acid;
D O I:
10.1097/00005176-200208000-00015
中图分类号:
R57 [消化系及腹部疾病];
学科分类号:
摘要:
Objectives: Rats with ethinyl estradiol-induced cholestasis have a decreased bile flow and a decreased expression of basolateral and canalicular hepatocyte membrane transporters. The bile acid ursodeoxycholic acid improves bile flow in these animals. The purpose of this study was to examine the effect of ursodeoxycholic acid on the expression of hepatocellular bile acid carriers. Methods: Rats received either ethinyl estradiol (5 mg.kg(-1) body wt. for 10 days) or ethinyl estradiol associated with ursodeoxycholic acid (1% in the diet). A third group of rats received ursodeoxycholic acid alone. Bile flow, bile acid, and glutathione biliary outputs were measured. Messenger RNA levels and protein expression of Na+-dependent taurocholate co-transporting polypeptide, and bile salt export pump were determined in basolateral and canalicular membrane preparations by Northern and Western blot analysis. Results: Ursodeoxycholic acid restored bile flow in ethinyl estradiol-treated rats by increasing bile acid secretion. It did not improve glutathione output nor bile acid-independent flow. Na+-dependent taurocholate co-transporting polypeptide mRNA and protein were decreased by ethinyl estradiol and not restored by ursodeoxycholic acid. In contrast, canalicular bile salt export pump protein expression was decreased by ethinyl estradiol and fully restored to control levels by ursodeoxycholic acid. Conclusions: Ursodeoxycholic acid increases bile flow in ethinyl estradiol-treated rats by increasing bile acid secretion. This increase is possibly mediated by a normalization of the expression of the canalicular bile salt export pump.