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Hydrogen sulfide attenuates cardiac dysfunction in a rat model of heart failure: a mechanism through cardiac mitochondrial protection

机译:硫化氢减轻大鼠心力衰竭模型的心脏功能障碍:一种通过心脏线粒体保护的机制

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摘要

HF (heart failure) after MI (myocardial infarction) is a major cause of morbidity and mortality worldwide. Recent studies have shown that hydrogen sulfide (H2S) has cardioprotective effects. Hence, we aimed to elucidate the potential effects of H2S on HF after MI in rats. The HF model after MI was made by ligating the left anterior descending coronary artery. HF groups and sham-operated groups of rats were treated with vehicle, sodium hydrosulfide (NaHS) or PAG (propagylglycine). Equal volumes of saline, 3.136 mg·kg−1·day−1 NaHS or 37.5 mg·kg−1·day−1 PAG, were intraperitoneally injected into rats for 6 weeks after operation. Survival, lung-to-body weight ratio and left ventricular haemodynamic parameters were measured. The protein and gene expression of Bcl-2, Bax, caspase 3 and cytochrome c were analysed by Western blotting and RT–PCR (reverse transcription–PCR). TUNEL (terminal deoxynucleotidyl transferase-mediated dUTP nick-end labelling) and EM (electron microscopy) were used to examine apoptosis of heart tissues. NaHS was found to improve the survival and lower the lung-to-body weight ratio. It increased the LVSP (left ventricular systolic pressure) and the maximum rate of pressure and decreased LVEDP (left ventricular end-diastolic pressure). Furthermore, NaHS promoted Bcl-2 protein and mRNA expression and demoted Bax, caspase 3 protein and mRNA expression in HF rats. We also showed that NaHS decreased the leakage of cytochrome c protein from the mitochondria to the cytoplasm. Histological observation by TUNEL and EM proved that NaHS inhibited cardiac apoptosis in HF hearts and improved mitochondrial derangements, but that PAG aggravated those indices. Hence, H2S has protective effects in HF rats.
机译:MI(心肌梗塞)后的HF(心力衰竭)是全世界发病率和死亡率的主要原因。最近的研究表明,硫化氢(H2S)具有心脏保护作用。因此,我们旨在阐明H2S对MI大鼠心衰的潜在作用。通过结扎左冠状动脉前降支,制成心梗后的HF模型。 HF组和假手术组分别用赋形剂,硫化氢钠(NaHS)或PAG(丙氨酰甘氨酸)治疗。等体积的生理盐水,即3.136 mg·kg -1 ·day -1 NaHS或37.5 mg·kg -1 ·day −术后6周腹腔注射PAG 1 。测量存活率,肺与体重的比率以及左心室血流动力学参数。通过蛋白质印迹和RT-PCR(逆转录-PCR)分析了Bcl-2,Bax,caspase 3和细胞色素c的蛋白质和基因表达。使用TUNEL(末端脱氧核苷酸转移酶介导的dUTP缺口末端标记)和EM(电子显微镜)检查心脏组织的细胞凋亡。发现NaHS可以提高生存率并降低肺与体重的比率。它增加了LVSP(左心室收缩压)和最大压力率,并降低了LVEDP(左心室舒张末期压)。此外,NaHS促进了HF大鼠的Bcl-2蛋白和mRNA表达,并降低了Bax,caspase 3蛋白和mRNA表达。我们还显示,NaHS减少了细胞色素c蛋白从线粒体到细胞质的泄漏。 TUNEL和EM的组织学观察证明,NaHS抑制了HF心脏的心脏凋亡并改善了线粒体排列,但PAG加剧了这些指标。因此,H2S对HF大鼠具有保护作用。

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