首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Molecular hydrogen potentiates beneficial anti-infarct effect of hypoxic postconditioning in isolated rat hearts: a novel cardioprotective intervention
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Molecular hydrogen potentiates beneficial anti-infarct effect of hypoxic postconditioning in isolated rat hearts: a novel cardioprotective intervention

机译:分子氢气增强脱氧后后处理脱氧后病人的有益抗梗塞效应:一种新型心脏保护干预

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2 ) reduces oxidative stress due to its ability to react with strong oxidants and easily penetrate cells by diffusion, without disturbing metabolic redox reactions. This study was designed to explore cardioprotective potential of hypoxic postconditioning (HpostC) against I/R (30 min global I – 120 min R) in isolated rat hearts using oxygen-free Krebs-Henseleit buffer (KHB). Furthermore, the possibility to potentiate the effect of HpostC by H 2 using oxygen-free KHB saturated with H 2 (H 2 + HpostC) was tested. HPostC was induced by 4 cycles of 1-minute perfusion with oxygen-free KHB intercepted by 1-minute perfusion with normal KHB, at the onset of reperfusion. H 2 + HPostC was applied in a similar manner using H 2 -enriched oxygen-free KHB. Cardioprotective effects were evaluated on the basis of infarct size (IS, in % of area at risk, AR) reduction, post-I/R recovery of heart function, and occurrence of reperfusion arrhythmias. HPostC significantly reduced IS/AR compared with non-conditioned controls. H 2 present in KHB during HPostC further decreased IS/AR compared with the effect of HPostC, attenuated severe arrhythmias, and significantly restored heart function (vs. controls). Cardioprotection by HpostC can be augmented by molecular hydrogen infusion.]]>
机译:2)通过其与强氧化剂反应的能力和通过扩散易于穿透细胞的能力来减少氧化应激,而不会扰乱代谢氧化还原反应。本研究旨在探讨使用无氧krebs-henseleit缓冲液(KHB)探讨孤立的大鼠心中的I / R(30分钟全球I - 120 min R)的缺氧后处理(HPostc)的心脏保护潜力。此外,通过H 2使用用H 2(H 2 + HPOSTC)使用无氧的KHb通过H 2对HPOSTC的影响进行增强的可能性。在再灌注开始时,将HPOSTC诱导1分钟灌注的1分钟灌注,其无氧kHb截取。 H 2 + HPOSTC以类似的方式使用H 2 - 烯丙基无氧kHb施用。基于梗死大小(占风险区域的占面积%)的梗塞的基础评估心脏保护作用,心脏功能后I / R恢复和再灌注心律失常的发生。与非调节对照相比,HPOSTC显着降低。与HPOSTC,减毒严重心律失常和明显恢复的心功能(对照组)相比,HPOSTC期间kHB中的HPOST期间进一步降低了。 HPOSTC的心脏保护可以通过分子氢输注来增强。]>

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