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首页> 外文期刊>American Journal of Physiology >H2S ameliorates oxidative and proteolytic stresses and protects the heart against adverse remodeling in chronic heart failure.
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H2S ameliorates oxidative and proteolytic stresses and protects the heart against adverse remodeling in chronic heart failure.

机译:H2S改善氧化和蛋白水解胁迫,并保护心脏免受慢性心力衰竭的不利重塑。

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摘要

Reactive oxygen and nitrogen species (ROS and RNS, respectively) generate nitrotyrosine and activate latent resident myocardial matrix metalloproteinases (MMPs). Although in chronic heart failure (CHF) there is robust increase in ROS, RNS, and MMP activation, recent data suggest that hydrogen sulfide (H(2)S, a strong antioxidant gas) is cardioprotective. However, the role of H(2)S in mitigating oxidative and proteolytic stresses in cardiac remodeling/apoptosis in CHF was unclear. To test the hypothesis that H(2)S ameliorated cardiac apoptosis and fibrosis by decreasing oxidative and proteolytic stresses, arteriovenous fistula (AVF) was created in wild-type (C57BL/6J) mice. The hearts were analyzed at 0, 2, and 6 wk after AVF. To reverse the remodeling, AVF mice were treated with NaHS (an H(2)S donor, 30 micromol/l in drinking water) at 8 and 10 wk. The levels of MMPs were measured by gelatin-gel zymography. The levels of nitrotyrosine, tissue inhibitors of metalloproteinase (TIMPs), beta(1)-integrin, and a disintegrin and metalloproteinase-12 (ADAM-12) were analyzed by Western blots. The levels of pericapillary and interstitial fibrosis were identified by Masson trichrome stains. The levels of apoptosis were measured by identifying the TdT-mediated dUTP nick end labeling (TUNEL)-positive cells and caspase-3 levels. The results suggested robust nitrotyrosine and MMP activation at 2 and 6 wk of AVF. The treatment with H(2)S donor mitigated nitrotyrosine generation and MMP activation (i.e., oxidative and proteolytic stresses). The levels of TIMP-1 and TIMP-3 were increased and TIMP-4 decreased in AVF hearts. The treatment with H(2)S donor reversed this change in TIMPs levels. The levels of ADAM-12, apoptosis, and fibrosis were robust and integrin were decreased in AVF hearts. The treatment with H(2)S donor attenuated the fibrosis, apoptosis, and decrease in integrin.
机译:反应性氧和氮物质(分别)产生硝基曲霉和激活潜伏的植物心肌基质金属蛋白酶(MMP)。虽然在慢性心力衰竭(CHF)中,ROS,RNS和MMP活化的稳健增加,但最近的数据表明硫化氢(H(2)S,强烈的抗氧化气体)是心脏保护的。然而,H(2)S在CHF中心脏重塑/细胞凋亡中减轻氧化和蛋白水解胁迫的作用尚不清楚。为了测试H(2)S改善心脏凋亡和通过降低氧化和蛋白水解应力的纤维化,在野生型(C57BL / 6J)小鼠中产生动静脉瘘(AVF)。在AVF之后,在0,2和6周下分析心脏。为了逆转重塑,将AVF小鼠用NaHS(H(2)S供体,30μm饮用水30μm)处理,在8和10周下处理。通过明胶 - 凝胶酶谱法测量MMP的水平。通过蛋白质印迹分析了硝基替肽,金属蛋白组织酶(TIMP),β(1) - integrin和Disintegin和金属蛋白酶-12(ADAM-12)的水平。 Masson Trichrome污渍鉴定了植物和间质纤维化水平。通过鉴定TDT介导的DUTP缺口末端标记(TUNEL) - 阳性细胞和Caspase-3水平来测量细胞凋亡水平。结果表明,在2和6周的AVF下强大的硝基霉素和MMP活化。用H(2)的供体缓解硝基荧光蛋白产生和MMP活化(即,氧化和蛋白水解应力)的处理。 TIMP-1和TIMP-3的水平增加,AVF心中的TIMP-4降低。 H(2)的捐助者的治疗扭转了TIMPS水平的这种变化。 ADAM-12,细胞凋亡和纤维化的水平是强壮的,整联蛋白在AVF心中减少。 H(2)的施主治疗可减轻整联蛋白的纤维化,细胞凋亡和减少。

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