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4-(4'-氯苄氧基)苄基烟酸酯(KCD-232)对大鼠甘油三酯和脂肪酸代谢的影响

Effect of 4-(4'-chlorobenzyloxy)benzyl nicotinate (KCD-232) on triglyceride and fatty acid metabolism in rats.

作者信息

Yagasaki K, Okada K, Mochizuki T, Takagi K, Irikura T

出版信息

Biochem Pharmacol. 1984 Oct 15;33(20):3151-63. doi: 10.1016/0006-2952(84)90071-6.

Abstract

The effects of KCD-232, a new hypolipidemic agent with a structure of 4-(4'-chlorobenzyloxy) benzyl nicotinate, on triglyceride (TG) and fatty acid (FA) metabolism were studied in rats. KCD-232 dose-dependently reduced both liver and serum TG levels. From in vivo and in vitro studies, the hypotriglyceridemic action of KCD-232 was shown to be based on the inhibition of hepatic TG synthesis due to both decreased FA synthesis and increased FA oxidation in the liver. Of two metabolites of KCD-232, i.e. 4-(4'-chlorobenzyloxy)benzoic acid (MII) and nicotinic acid, MII was found to be responsible for the decreased synthesis and increased oxidation of FA in the liver, the latter apparently being due to increased mitochondrial oxidation activated by MII. MII was demonstrated to form a xenobiotic TG in which one fatty acid moiety was substituted by MII and to form a thioester with CoA by rat liver microsomes. This thioester, MII-CoA, inhibited fatty acid syntheses from [14C]acetate, [14C] acetyl-CoA and [14C]malonyl-CoA in cell-free enzyme systems from rat liver both with and without an NADPH-generating system, whereas MII as such showed no effect. MII-CoA were therefore considered to be a chemical entity for the inhibition of hepatic fatty acid synthesis by KCD-232 and was suggested to inhibit fatty acid synthetase directly.

摘要

研究了一种新型降血脂药物KCD - 232(化学结构为4 - (4'-氯苄氧基)苄基烟酸酯)对大鼠甘油三酯(TG)和脂肪酸(FA)代谢的影响。KCD - 232能剂量依赖性地降低肝脏和血清中的TG水平。体内和体外研究表明,KCD - 232的降甘油三酯作用是基于对肝脏TG合成的抑制,这是由于肝脏中FA合成减少以及FA氧化增加所致。在KCD - 232的两种代谢产物中,即4 - (4'-氯苄氧基)苯甲酸(MII)和烟酸,发现MII是肝脏中FA合成减少和氧化增加的原因,后者显然是由于MII激活了线粒体氧化。已证明MII能形成一种异生物质TG,其中一个脂肪酸部分被MII取代,并能被大鼠肝脏微粒体与辅酶A形成硫酯。这种硫酯,即MII - CoA,在有无NADPH生成系统的大鼠肝脏无细胞酶系统中,均抑制了从[14C]乙酸、[14C]乙酰辅酶A和[14C]丙二酰辅酶A合成脂肪酸,而MII本身则无此作用。因此,MII - CoA被认为是KCD - 232抑制肝脏脂肪酸合成的化学实体,并被认为直接抑制脂肪酸合成酶。

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