丙基甘氨酸对老年大鼠血流动力学的影响。

K. Drachuk, N. Dorofeyeva, A. Kotsjuruba, V. Sagach
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引用次数: 2

摘要

衰老会增加患心血管疾病的风险。本研究旨在观察丙氨酸(PPG)对老年大鼠血流动力学的影响。我们使用美国Millar Instruments公司的压力-容量(PV)传导导管系统在体内评估心脏收缩和舒张功能。研究表明,引入PPG (11,31 mg/kg)可降低老年大鼠动脉硬度(1.5倍)和舒张末期硬度(2.1倍)。在心脏线粒体中使用PPG导致H2S(增加112%),NO2-(增加162%)水平和cNOS活性(增加3倍)。此外,PPG减少了尿酸的线粒体池,尿酸是超氧化物(*O2-)形成和ATP降解的标志。这些结果表明,PPG激活H2S合成的替代途径,刺激NO和H2S的合成,抑制ATP降解和*O2的形成。PPG的这些作用可改善动脉僵硬度和舒张末期僵硬度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[EFFECT OF PROPARGYLGLYCINE UPON CARDIOHEMODYNAMICS IN OLD RATS].
Aging increases the risk of cardiovascular diseases. The objective of this study was to show the effect of propargylg- lycine (PPG) upon cardiohemodynamics in old rats. We used pressure-volume (PV) conductance catheter system (Millar Instruments, USA) in order to evaluate systolic and diastolic function in vivo. It has been shown that introducted PPG (11,31 mg/kg) decrises both arterial stiffness (by 1,5 times) and end-diastolic stiffness (by 2,1 times) in old rats. Using PPG in heart mitochondria resulted in increasing levels of H2S (by 112%), NO2- (by 162%) and in growing activity of cNOS (by 3 times). Additionally, PPG decreased the mitochondrial pools of the uric acid, the marker of the superoxide (*O2-) formation and of the ATP degradation. These results suggest that PPG activates alternative ways of H2S synthesis, stimulates the NO and H2S synthesis and suppresses the ATP degradation and *O2 formation. These actions of PPG improve arterial stiffness and end-diastolic stiffness.
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