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丙酮酸灌注大鼠心脏代谢的计算机模拟。V. 生理学意义。

Computer simulation of metabolism in pyruvate-perfused rat heart. V. Physiological implications.

作者信息

Garfinkel D, Kohn M C, Achs M J

出版信息

Am J Physiol. 1979 Sep;237(3):R181-6. doi: 10.1152/ajpregu.1979.237.3.R181.

Abstract

The results of a simulation of metabolism in the pyruvate-perfused rat heart subjected to a sudden increase in work load are interpreted to provide a coherent explanation for the observed physiology. Respiration is most closely correlated with the mitochondrial phosphate potential, calculated from the MgATP and MgADP levels. No correlation between respiration and the pH gradient across the mitochondrial membrane was found. The transient falls in pH in the cytosol and perhaps the mitochondria are due largely to carbonic and lactic acidosis and appear to be only weakly coupled. The heart maintains a high ATP level during the transition to increased work by utilizing its energy reserves in order of decreasing availability in response to physiological signals mediated by Mg2+, Ca2+, and cAMP.

摘要

对丙酮酸灌注的大鼠心脏在工作负荷突然增加时的代谢模拟结果进行了解释,以对观察到的生理学现象提供连贯的解释。呼吸作用与根据MgATP和MgADP水平计算出的线粒体磷酸势最密切相关。未发现呼吸作用与跨线粒体膜的pH梯度之间存在相关性。细胞质以及可能还有线粒体中pH的短暂下降主要是由于碳酸和乳酸酸中毒,并且似乎只有微弱的耦合。心脏在向增加的工作负荷转变过程中,通过按照Mg2+、Ca2+和cAMP介导的生理信号所决定的可用性递减顺序利用其能量储备,维持了较高的ATP水平。

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