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首页> 外文期刊>American Journal of Physiology >Calcium-mediated activation of pyruvate dehydrogenase in severely injured postischemic myocardium.
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Calcium-mediated activation of pyruvate dehydrogenase in severely injured postischemic myocardium.

机译:钙损伤的心肌缺血后心肌中丙酮酸脱氢酶的钙介导活化。

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摘要

Indirect evidence suggests that activity of pyruvate dehydrogenase (PDH) influences recovery of the myocardium after transient ischemia. The present study examined the relationship between postischemic injury and activity of PDH and the role of mitochondrial calcium uptake for observed changes in PDH activity. Isovolumically beating isolated rat hearts perfused with erythrocyte-enriched buffer containing glucose, palmitate, and insulin were submitted to either 20 or 35 min of no-flow ischemia. After 20 min of no-flow ischemia, hearts exhibited complete recovery of developed left ventricular pressure (DLVP). The proportion of myocardial PDH in the active state was modestly increased to 38% (compared with 13% in control hearts) without a change in glucose oxidation. In contrast, in hearts subjected to 35 min of no-flow ischemia (which exhibited poor recovery of DLVP), there was marked stimulation of glucose oxidation (+460%; P < 0.01) and pronounced increase in the active fraction of PDH to 72% (P < 0.01). Glycolytic flux was not significantly altered. Ruthenium red (6 microM) completely abolished the activation of PDH and the increase in glucose oxidation. The results indicate that variable stimulation of glucose oxidation during reperfusion is related to different degrees of activation of PDH, which depends on the severity of the ischemic injury. Activation of PDH seems to be mediated by myocardial calcium uptake.
机译:间接证据表明丙酮酸脱氢酶(PDH)的活性影响短暂性缺血后心肌的恢复。本研究检查了缺血后损伤与PDH活性之间的关系,以及线粒体钙摄取对于观察到的PDH活性变化的作用。用充满葡萄糖的富含葡萄糖,棕榈酸酯和胰岛素的缓冲液等体积​​跳动的离体大鼠心脏进行20分钟或35分钟的无血流缺血治疗。无流动性缺血20分钟后,心脏显示完全恢复发展的左心室压力(DLVP)。处于活动状态的心肌PDH的比例适度增加至38%(对照组为13%),而葡萄糖氧化没有变化。相反,在无流动性缺血35分钟(表现出较差的DLVP)的心脏中,葡萄糖氧化明显受到刺激(+ 460%; P <0.01),PDH的活性分数显着增加至72 %(P <0.01)。糖酵解通量没有明显改变。钌红(6 microM)完全消除了PDH的活化和葡萄糖氧化的增加。结果表明,再灌注过程中葡萄糖氧化的可变刺激与PDH活化程度不同有关,这取决于缺血性损伤的严重程度。 PDH的激活似乎是由心肌钙摄取介导的。

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