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胆酸在小鼠胆石形成过程中有助于胆固醇的吸收、胆汁分泌及相变。

Cholic acid aids absorption, biliary secretion, and phase transitions of cholesterol in murine cholelithogenesis.

作者信息

Wang D Q, Lammert F, Cohen D E, Paigen B, Carey M C

机构信息

Department of Medicine, Harvard Medical School, Gastroenterology Division, Brigham and Women's Hospital and Harvard Digestive Diseases Center, Boston, Massachusetts 02115, USA.

出版信息

Am J Physiol. 1999 Mar;276(3):G751-60. doi: 10.1152/ajpgi.1999.276.3.G751.

Abstract

Cholic acid is a critical component of the lithogenic diet in mice. To determine its pathogenetic roles, we fed chow or 1% cholesterol with or without 0.5% cholic acid to C57L/J male mice, which because of lith genes have 100% gallstone prevalence rates. After 1 yr on the diets, we measured bile flow, biliary lipid secretion rates, hepatic cholesterol and bile salt synthesis, and intestinal cholesterol absorption. After hepatic conjugation with taurine, cholate replaced most tauro-beta-muricholate in bile. Dietary cholic acid plus cholesterol increased bile flow and biliary lipid secretion rates and reduced cholesterol 7alpha-hydroxylase activity significantly mostly via deoxycholic acid, cholate's bacterial 7alpha-dehydroxylation product but did not downregulate cholesterol biosynthesis. Intestinal cholesterol absorption doubled, and biliary cholesterol crystallized as phase boundaries shifted. Feeding mice 1% cholesterol alone produced no lithogenic or homeostatic effects. We conclude that in mice cholic acid promotes biliary cholesterol hypersecretion and cholelithogenesis by enhancing intestinal absorption, hepatic bioavailability, and phase separation of cholesterol in bile.

摘要

胆酸是小鼠致石性饮食的关键成分。为确定其致病作用,我们给C57L/J雄性小鼠喂食普通饲料或含1%胆固醇且添加或不添加0.5%胆酸的饲料,这些小鼠由于存在致石基因,胆结石患病率为100%。在喂食这些饲料1年后,我们测量了胆汁流量、胆汁脂质分泌率、肝脏胆固醇和胆汁盐合成以及肠道胆固醇吸收。胆酸盐在与牛磺酸进行肝脏结合后,取代了胆汁中大部分的牛磺-β-鼠胆酸盐。饮食中的胆酸加胆固醇增加了胆汁流量和胆汁脂质分泌率,并显著降低了胆固醇7α-羟化酶活性,这主要是通过胆酸盐的细菌7α-脱羟基化产物脱氧胆酸实现的,但并未下调胆固醇生物合成。肠道胆固醇吸收增加了一倍,并且随着相界的移动,胆汁中的胆固醇结晶。单独给小鼠喂食1%胆固醇未产生致石或内稳态效应。我们得出结论,在小鼠中,胆酸通过增强肠道吸收、肝脏生物利用度以及胆汁中胆固醇的相分离来促进胆汁胆固醇分泌过多和胆石形成。

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