首页> 外文期刊>Bulletin of experimental biology and medicine >Mechanism of Cardioprotective Effect of Adenodne and Non-Glycoside Cardiotonic Drugs during Experimental Chronic Cardiac Insufficiency
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Mechanism of Cardioprotective Effect of Adenodne and Non-Glycoside Cardiotonic Drugs during Experimental Chronic Cardiac Insufficiency

机译:腺苷和非糖苷强直性药物在实验性慢性心功能不全期间的心脏保护作用机制

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摘要

The therapeutic action of adenocine during cardiac insufficiency (heart failure) caused by ischemic (stenosis) or reperfusion (removal of ligature) injury to the myocardium prevents depletion of ATP, the major energy source for myocytes in the right and left ventricles, and a drop in NAD/NADH ratio. The development of energy shortage during heart failure cannot be eliminated by P-acetyldigoxin, levosimendan, or milrinone: the content of ATP in the right and left ventricular myocardium remained below the normal level by 28 and 29%, 37 and 33%, 32 and 28%, respectively; the NAD/NADH ratio of the energy supply system in cardiomyocytes did not return to normal. Adenocine increased the content of NAD to the normal level in both the right and left ventricles, while it remained below the normal level after administration of P-acetyldigoxin (by 24 and 19.5%, respectively), levosimendan (by 27 and 29%), and milrinone (by 26 and 24%). In contrast to p-acetyldigoxin, levosimendan, and milrinone, adenocine inhibited activity of poly(ADP-ribose) polymerase in both ventricles. It is concluded that adenocine directly inhibits the key enzyme triggering apoptosis; we also hypothesized that this drug activates the regulatory and signal mechanisms arresting apoptotic alterations in the myocardium during heart failure.
机译:腺苷在缺血(狭窄)或再灌注(去除结扎)对心肌造成的心脏机能不全(心力衰竭)期间的治疗作用可防止ATP的消耗,ATP是右心室和左心室中心肌细胞的主要能源,以NAD / NADH比率表示。心力衰竭期间能量不足的发展不能通过P-乙酰基地高辛,左西孟旦或米力农来消除:左右心室心肌中的ATP含量分别低于正常水平28%和29%,37%和33%,32%和32%。分别为28%;心肌细胞能量供应系统的NAD / NADH比值未恢复正常。腺苷使左心室和左心室中NAD的含量均增加到正常水平,而施用P-乙酰基地高辛(分别为24和19.5%),左西孟旦(分别为27和29%)后,其腺苷含量仍低于正常水平,和米力农(分别为26%和24%)。与对乙酰基地高辛,左西孟旦和米力农相反,腺苷在两个心室中均抑制聚(ADP-核糖)聚合酶的活性。结论是腺苷直接抑制触发细胞凋亡的关键酶。我们还假设该药物激活了心力衰竭期间抑制心肌细胞凋亡改变的调节和信号机制。

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