首页> 外文期刊>British Journal of Pharmacology >Effect of crilvastatin, a new cholesterol lowering agent, on unesterified LDL-cholesterol metabolism into bile salts by rat isolated hepatocytes
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Effect of crilvastatin, a new cholesterol lowering agent, on unesterified LDL-cholesterol metabolism into bile salts by rat isolated hepatocytes

机译:新型降胆固醇药克里伐他汀对大鼠离体肝细胞未酯化的低密度脂蛋白胆固醇代谢为胆盐的影响

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1 The aim of these experiments was to determine the effect of crilvastatin, a new cholesterol lowering agent, on the metabolism of unesterified low density lipoprotein (LDL)-cholesterol by rat freshly isolated hepatocytes. This preclinical model was developed as an alternative to in vivo experiments, to mimic the metabolic effects of a molecule on its target cells and to define optimal conditions for future experimentation on human hepatocytes. 2 Cells were obtained from normolipidaemic or hypercholesterolaemic rats, hypercholesterolaemia was nutritionally induced. Incubations were performed in a medium containing 600 μM taurocholate and 50 μM or 300 μM crilvastatin. 3 This molecule was shown in vitro to be carried by physiological transporters, i.e., albumin-bile salt micellar associations and LDL. Crilvastatin induced a significance increase in the synthesis and secretion by hepatocytes of bile salts resulting from the metabolism of unesterified LDL-cholesterol in both normolipidaemic and hypercholesterolaemic rats. Stimulation involved non-conjugated as well as tauro-and glyco-conjugated bile salts. These findings corroborate preliminary studies showing in vivo that crilvastatin enhances the secretion of bile acids by stimulating the uptake and incorporation of LDL-cholesterol by the liver.
机译:这些实验的目的是确定一种新的降胆固醇药物crilvastatin对大鼠新鲜分离的肝细胞对未酯化的低密度脂蛋白(LDL)-胆固醇代谢的影响。开发该临床前模型作为体内实验的替代方法,以模拟分子对其靶细胞的代谢作用,并为将来在人肝细胞上进行实验定义最佳条件。 2从正常血脂血症或高胆固醇血症大鼠中获得细胞,营养诱导高胆固醇血症。在含有600μM牛磺胆酸盐和50μM或300μMcrilvastatin的培养基中进行孵育。 3该分子在体外显示是由生理转运蛋白,即胆白蛋白盐胶束缔合体和LDL所携带。克里伐他汀在正常血脂和高胆固醇血症大鼠中,由于未酯化的LDL-胆固醇的代谢而导致胆汁盐的肝细胞合成和分泌显着增加。刺激涉及非结合的以及牛磺酸和糖结合的胆盐。这些发现证实了体内的初步研究,即克里伐他汀通过刺激肝脏对LDL-胆固醇的吸收和吸收来增强胆汁酸的分泌。

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