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首页> 外文期刊>American Journal of Physiology >Desmin loss and mitochondrial damage precede left ventricular systolic failure in volume overload heart failure
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Desmin loss and mitochondrial damage precede left ventricular systolic failure in volume overload heart failure

机译:Desmin损失和线粒体损伤在剩余的体积过载心力衰竭中左心室收缩衰竭

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摘要

Heart failure due to chronic volume overload (VO) in rats and humans is characterized by disorganization of the cardiomyocyte desmin/mito-chondrial network. Here, we tested the hypothesis that desmin breakdown is an early and continuous process throughout VO. Male Sprague-Dawley rats had aortocaval fistula (ACF) or sham surgery and were examined 24 h and 4 and 12 wk later. Desmin/mitochondrial ultrastructure was examined by transmission electron microscopy (TEM) and immunohistochemistry (IHC). Protein and kinome analysis were performed in isolated cardiomyocytes, and desmin cleavage was assessed by mass spectrometry in left ventricular (LV) tissue. Echocardiography demonstrated a 40% decrease in the LV mass-to-volume ratio with spherical remodeling at 4 wk with ACF and LV systolic dysfunction at 12 wk. Starting at 24 h and continuing to 4 and 12 wk, with ACF there is TEM evidence of extensive mitochondrial clustering, IHC evidence of disorganization associated with desmin breakdown, and desmin protein cleavage verified by Western blot analysis and mass spectrometry. IHC results revealed that ACF cardiomyocytes, at 4 and 12 wk had perinuclear translocation of oiB-crystallin from the Z disk with increased a, p-unsaturated aldehyde 4-hydroxynonelal. Use of protein markers with verification by TUNEL staining and kinome analysis revealed an absence of cardiomyocyte apoptosis at 4 and 12 wk of ACF. Significant increases in protein indicators of mitophagy were countered by a sixfold increase in p62/sequestosome-1, which is indicative of an inability to complete autophagy. An early and continuous disruption of the desmin/mitochondrial architecture, accompanied by oxidative stress and inhibition of apoptosis and mitophagy, suggests its causal role in LV dilatation and systolic dysfunction in VO.
机译:大鼠和人类慢性体积过载(VO)引起的心力衰竭的特征在于心肌细胞脱霉素/ MITOM-WONDRIAL网络的紊乱。在这里,我们测试了Desmin崩溃的假设是在vo中早期和连续的过程。雄性Sprague-Dawley大鼠有主动脉瘤瘘(ACF)或假手术,并在以后检查24小时和4和12周。通过透射电子显微镜(TEM)和免疫组织化学(IHC)检查Desmin /线粒体超微结构。在分离的心肌细胞中进行蛋白质和血管分析,并通过左心室(LV)组织中的质谱法评估DESMIN切割。超声心动图表明,LV质量比例降低了40%的降低,在4周下,在12WK下用ACF和LV收缩功能障碍的球形重塑。从24小时开始并继续为4和12周,ACF存在广泛的线粒体聚类的TEM证据,IHC与Desmin击穿相关的混乱证据,并通过Western印迹分析和质谱验证了Desmin蛋白裂解。 IHC结果表明,ACF心肌细胞,4和12周的液体核易刻从Z盘具有增加的A,P-不饱和醛4-羟基α。使用TUNEL染色和Kinome分析验证蛋白质标志物揭示了4和12周的缺乏心肌细胞凋亡。通过P62 /杀料体-1的六倍增加,蛋白质蛋白质指标的显着增加,这表明不能完全自噬。伴随氧化应激和抑制细胞凋亡和乳化剂的脱霉/线粒体结构的早期和持续破坏,表明其在LV扩张和vo中的收缩功能障碍中的因果作用。

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