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底物对离体豚鼠心脏的代谢作用与再灌注期间心律失常的关系。

Metabolic effects of substrates on the isolated guinea-pig heart in relation to arrhythmias during reperfusion.

作者信息

Dennis S C, Hearse D J, Coltart D J

出版信息

Cardiovasc Res. 1982 Apr;16(4):209-19. doi: 10.1093/cvr/16.4.209.

Abstract

Mechanisms whereby glucose reduces the incidence of pyruvate induced reperfusion arrhythmias in isolated guinea-pig hearts have been investigated. Alterations in cytoplasmic ATP/ADP ratios, creatine phosphate and glycogen were excluded as possible mechanisms. Likewise, data are presented that appear to be at variance with the proposition that glycolytically derived ATP may play a special role in the maintenance of electrical stability. To explain the anti-arrhythmic effects of glucose in terms of this thesis it is necessary to invoke compartmentation of glycolysis. A correlation between the incidence of arrhythmias and glycolytic ATP production can only exist if the contributions to glycolytic flux from glucose and glycogen utilisation can be regarded as separate.

摘要

已对葡萄糖降低丙酮酸诱导的离体豚鼠心脏再灌注心律失常发生率的机制进行了研究。细胞质中ATP/ADP比值、磷酸肌酸和糖原的变化被排除为可能的机制。同样,所呈现的数据似乎与糖酵解产生的ATP可能在维持电稳定性中起特殊作用这一观点不一致。根据这一论点来解释葡萄糖的抗心律失常作用,有必要引入糖酵解的区室化概念。只有当葡萄糖和糖原利用对糖酵解通量的贡献可被视为相互独立时,心律失常发生率与糖酵解ATP生成之间才可能存在相关性。

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