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2-巯基丙酰甘氨酸及相关化合物在治疗线粒体功能障碍和缺血后心肌损伤中的应用

2-Mercaptopropionylglycine and related compounds in treatment of mitochondrial dysfunction and postischemic myocardial damage.

作者信息

Fuchs J, Mainka L, Zimmer G

出版信息

Arzneimittelforschung. 1985;35(9):1394-402.

PMID:2935161
Abstract

Reversal of mitochondrial dysfunction caused by uncouplers of oxidative phosphorylation, diamide, ageing and ischemia was studied using 2-mercaptopropionylglycine (MPG) in reduced and oxidized (ox-MPG) forms and other SH compounds. Rat heart mitochondria and mitochondrial ATPase, OS-ATPase from beef heart and the isolated working rat heart preparation were examined. MPG and ox-MPG partly prevented and reversed mitochondrial uncoupling and improved deteriorated heart function. ATPase activities were decreased by MPG and ox-MPG in both types of preparation. Three mechanisms are probably involved in thiol action. These comprise alternatively and/or additively: a) SH/S-S interchange reactions; b) free radical scavenger function; c) polar-polar (apolar) interactions. This may contribute to improve oxidative phosphorylation which is considered as a result of recoupling damaged mitochondria by MPG.

摘要

使用还原型和氧化型(氧化型MPG)的2-巯基丙酰甘氨酸(MPG)以及其他含巯基化合物,研究了由氧化磷酸化解偶联剂、二酰胺、衰老和缺血引起的线粒体功能障碍的逆转情况。对大鼠心脏线粒体、线粒体ATP酶、牛心脏的OS-ATP酶以及离体工作大鼠心脏标本进行了检测。MPG和氧化型MPG部分预防并逆转了线粒体解偶联,改善了恶化的心脏功能。在两种标本中,MPG和氧化型MPG均降低了ATP酶活性。硫醇作用可能涉及三种机制。这些机制交替和/或相加包括:a)SH/S-S交换反应;b)自由基清除功能;c)极性-极性(非极性)相互作用。这可能有助于改善氧化磷酸化,这被认为是MPG使受损线粒体重新偶联的结果。

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