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肉碱依赖性脂肪酸氧化的动力学:对人类肉碱缺乏症的影响。

Kinetics of carnitine-dependent fatty acid oxidation: implications for human carnitine deficiency.

作者信息

Long C S, Haller R G, Foster D W, McGarry J D

出版信息

Neurology. 1982 Jun;32(6):663-6. doi: 10.1212/wnl.32.6.663.

Abstract

The relationship between the concentration of carnitine and the oxidation of oleate was examined in homogenates prepared from skeletal muscle, liver, kidney, and heart of the rat, and from canine and human skeletal muscle. the carnitine content of these tissues in situ spanned a wide range, from about 0.1 mumol per gram in rat liver to about 3.0 mumol per gram in human muscle. The concentration of carnitine required for half-maximal rates of fatty acid oxidation in vitro also varied greatly (10 to 15 microM for rat liver to 200 to 400 microM for human muscle), and in rough proportion to the normal carnitine content of the tissues. For any given tissue, the carnitine content seems to be set at a level necessary for optimal rates of fatty acid oxidation. The data provide a plausible explanation for the fact that muscle fatty acid metabolism is severely impaired in the syndrome of human carnitine deficiency, since measured carnitine levels are in the range expected to limit substantially the capacity for fatty acid oxidation.

摘要

在从大鼠的骨骼肌、肝脏、肾脏和心脏以及犬类和人类骨骼肌制备的匀浆中,研究了肉碱浓度与油酸氧化之间的关系。这些组织原位的肉碱含量范围很广,从大鼠肝脏中每克约0.1微摩尔到人类肌肉中每克约3.0微摩尔。体外脂肪酸氧化半最大速率所需的肉碱浓度也有很大差异(大鼠肝脏为10至15微摩尔,人类肌肉为200至400微摩尔),且与组织的正常肉碱含量大致成比例。对于任何给定的组织,肉碱含量似乎设定在脂肪酸氧化最佳速率所需的水平。这些数据为人类肉碱缺乏综合征中肌肉脂肪酸代谢严重受损这一事实提供了一个合理的解释,因为测得的肉碱水平处于预计会大幅限制脂肪酸氧化能力的范围内。

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