硫化氢在衰老过程中舒张功能恢复中的作用。

K O Drachuk, N A Dorofeyeva, V F Sagach
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引用次数: 5

摘要

本研究的目的是考察外源性硫化氢供体的影响;氢硫化钠(NaHS)对老年大鼠自由基生成、心肌cNOS解偶联及舒张功能的影响。为了评估心脏舒张功能,我们使用了美国Millar Instruments公司的压力-容量(PV)传导导管系统。结果表明,H2S在。与成年大鼠相比,老年大鼠分离的线粒体和全心均浆明显降低。氧化和亚硝化联合应激标志物(0₂⁰H生成速率、H₂0₂池、二烯偶联物、丙二醛、尿酸、iNOS活性、硝酸盐还原酶和NO池)在老年心脏中随着cNOS解耦而增加。NOS偶联的改变导致舒张功能丧失(左心室舒张率(dp/dtmin)降低33%,舒张末期压升高3倍,左室舒张时间常数(Tau g)升高1.5倍,舒张末期僵硬度升高2倍)。研究发现,NaHS抑制氧化应激和亚硝化应激,恢复cNOS偶联和一氧化氮(NO)的组成性从头合成,促进舒张功能的改善(dp/dtmin增加20%,Tau g降低13%)。关键词:老化;碳氮氧解偶联;心;硫化氢;nitrosative压力;氧化应激。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of hydrogen sulfide in diastolic function restoration during aging.

The objective of the study was to examine the effect of exogenous hydrogen sulde donor; sodium hydrosulfide (NaHS), on thefree radical generation, cNOS uncoupling in the myocardium, and diastolicfunction in old rats. To evaluate diastolic function of the heart, we used pressure-volume (PV) conductance catheter system (Millar Instruments, USA). It was shown that H2S levels in. the isolated mitochondria and whole heart homogenates obtained from old age rats were significantly lower comparing with adult animals. The markers of combined oxidative and nitrosative stress (the rate of 0 ₂⁰ H generation, pools of H₂0₂, diene conjugates, malondialdehyde, uric acid, the activity of iNOS, nitrate reductase, and NO pools) were increased in the old hearts in line with cNOS uncoupling. Such changes in NOS coupling resulted in the loss of diastolic relaxation (decrease of the rate of relaxation of the left ventricle (dp/dtmin) by 33%, 3-times increase of the end-diastolic pressure, 1.5-time increase of the time constant of left ventricular relaxation (Tau g) and 2-time increase of the end-diastolic stiffness). It has been found that NaHS inhibits oxidative and nitrosative stress, restores cNOS coupling and constitutive de novo synthesis of nitric oxide (NO), which promotes an improvement of the diastolic function (increase of the dp/dtmin by 20% and decrease of Tau g by 13%) . Key words: aging; cNOS uncoupling; heart; hydrogen sulfide; nitrosative stress; oxidative stress.

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