Di Lisa F, Menabò R, Siliprandi N
Centro Studio Fisiologia Mitocondriale, CNR, Università di Padova, Italy.
Mol Cell Biochem. 1989;88(1-2):169-73. doi: 10.1007/BF00223439.
The energy-linked processes (transmembrane potential and oxidative phosphorylation) resulted in impaired mitochondria isolated from ischemic perfused rat hearts. Addition of 1.5 mM L-propionyl-carnitine to the perfusate significantly reduced the ischemic damage and ameliorated mitochondrial Ca2+ homeostasis. In both normoxic and ischemic hearts perfused with L-propionyl-carnitine a consistent amount of propionyl-CoA-otherwise undetectable-was produced. L-propionyl-carnitine treatment also prevented the decrease of succinyl-CoA associated with the ischemic condition. These results and the decrease of myocardial acetyl-CoA induced by exogenous L-propionyl-carnitine points to the anaplerotic effect of this ester. The consequently improved flux in the tricarboxylic-acid cycle may account for the observed protection of mitochondrial functions afforded by L-propionyl-carnitine in the ischemic perfused hearts.
能量关联过程(跨膜电位和氧化磷酸化)在从缺血灌注大鼠心脏分离出的线粒体中出现了损伤。向灌注液中添加1.5 mM L-丙酰肉碱可显著减轻缺血损伤并改善线粒体钙稳态。在灌注L-丙酰肉碱的常氧和缺血心脏中,均产生了一定量原本无法检测到的丙酰辅酶A。L-丙酰肉碱处理还可防止与缺血状态相关的琥珀酰辅酶A减少。这些结果以及外源性L-丙酰肉碱诱导的心肌乙酰辅酶A减少表明了该酯的回补作用。三羧酸循环中通量的相应改善可能解释了L-丙酰肉碱在缺血灌注心脏中对线粒体功能的保护作用。