Sulindac is excreted into bile by a canalicular bile salt pump and undergoes a cholehepatic circulation in rats

被引:62
作者
Bolder, U
Trang, NV
Hagey, LR
Schteingart, CD
Ton-Nu, HT
Cerrè, C
Elferink, RPJO
Hofmann, AF [1 ]
机构
[1] Univ Calif San Diego, Dept Med, Div Gastroenterol, La Jolla, CA 92093 USA
[2] Free Univ Amsterdam, Acad Ziekenhuis, Dept Gastroenterol, NL-1007 MC Amsterdam, Netherlands
关键词
D O I
10.1016/S0016-5085(99)70356-2
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Background & Aims: Dihydroxy bile acids induce a bicarbonate-rich hypercholeresis when secreted into canalicular bile in unconjugated form; the mechanism is cholehepatic shunting. The aim of this study was to identify a xenobiotic that induces hypercholeresis by a similar mechanism. Methods: Five organic acids (sulindac, ibuprofen, ketoprofen, diclofenac, and norfloxacin) were infused into rats with biliary fistulas. Biliary recovery, bile flow, and biliary bicarbonate were analyzed. Sulindac transport was further characterized using Tr(-) rats (deficient in mrp2, a canalicular transporter for organic anions), the isolated perfused rat liver, and hepatocyte membrane fractions. Results: In biliary fistula rats, sulindac Was recovered in bile in unconjugated form and induced hypercholeresis of canalicular origin. Other compounds underwent glucuronidation and were not hypercholeretic. In the isolated liver, sulindac had delayed biliary recovery and induced prolonged choleresis, consistent with a cholehepatic circulation. Sulindac was secreted normally in Tr- rats, indicating that its canalicular transport did not require mrp2. In the perfused liver, sulindac inhibited cholyltaurine uptake, and when coinfused with cholyltaurine, induced acute cholestasis. With both basolateral and canalicular membrane fractions, sulindac inhibited cholyltaurine transport competitively. Conclusions: Sulindac is secreted into bile in unconjugated form by a canalicular bile acid transporter and is absorbed by cholangiocytes, inducing hypercholeresis. At high flux rates, sulindac competitively inhibits canalicular bile salt transport; such inhibition may contribute to the propensity of sulindac to induce cholestasis in patients.
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页码:962 / 971
页数:10
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