Everson G T, Fennessey P, Kern F
Department of Medicine, University of Colorado Medical School, Denver 80262.
J Lipid Res. 1988 Jan;29(1):68-76.
Contraceptive steroids increase the ratio of cholic acid to chenodeoxycholic acid in bile. This alteration may contribute to the development of cholesterol gallstones. The objective of this study was to measure the effects of contraceptive steroids on bile acid kinetics and to relate them to changes in cholesterol metabolism. Steady-state kinetics of bile acids were measured in 15 healthy women, on and off contraceptive steroids. Cholic acid synthesis increased 30.3% (P less than 0.025) and its pool increased by 37.4% (P less than 0.025). Chenodeoxycholic acid synthesis decreased 6.4% (P = 0.08) and its pool decreased by 11.8% (P less than 0.05) during use of contraceptive steroids. The fractional turnover rates of both primary bile acids did not change. The changes in kinetics of the primary bile acids were related to alterations in biliary lipid and cholesterol metabolism, separately reported. (J. Lipid Res. 1987. 28: 828-839). During use of contraceptive steroids, total bile acid pool and total bile acid synthesis correlated directly with cholesterol synthesis, assayed in mononuclear leukocytes (r = 0.50 and r = 0.54, respectively) but not with the plasma clearance of chylomicron remnants, measured with retinyl palmitate. The data indicate that contraceptive steroids directly alter the hepatic synthesis of bile acids and suggest that newly synthesized cholesterol may be a preferred substrate for bile acid synthesis during use of contraceptive steroids.
避孕类固醇会增加胆汁中胆酸与鹅去氧胆酸的比例。这种改变可能促使胆固醇性胆结石的形成。本研究的目的是测定避孕类固醇对胆汁酸动力学的影响,并将其与胆固醇代谢的变化联系起来。在15名健康女性服用和停用避孕类固醇期间,测量了胆汁酸的稳态动力学。服用避孕类固醇期间,胆酸合成增加了30.3%(P<0.025),其池增加了37.4%(P<0.025)。鹅去氧胆酸合成减少了6.4%(P=0.08),其池在服用避孕类固醇期间减少了11.8%(P<0.05)。两种初级胆汁酸的分数周转率均未改变。初级胆汁酸动力学的变化与胆汁脂质和胆固醇代谢的改变有关,相关内容已另行报道。(《脂质研究杂志》1987年。28:828 - 839)。在服用避孕类固醇期间,总胆汁酸池和总胆汁酸合成与在单核白细胞中测定的胆固醇合成直接相关(r分别为0.50和0.54),但与用棕榈酸视黄酯测量的乳糜微粒残余物的血浆清除率无关。数据表明,避孕类固醇直接改变肝脏胆汁酸的合成,并提示在服用避孕类固醇期间,新合成的胆固醇可能是胆汁酸合成的首选底物。