首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Adenoviral gene transfer of SERCA2a improves left-ventricular function in aortic-banded rats in transition to heart failure
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Adenoviral gene transfer of SERCA2a improves left-ventricular function in aortic-banded rats in transition to heart failure

机译:SERCA2a腺病毒基因转移改善主动脉束缚性大鼠向心力衰竭的左心室功能

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摘要

In human and experimental models of heart failure, sarcoplasmic reticulum Ca2+ ATPase (SERCA2a) activity is decreased, resulting in abnormal calcium handling. The disturbances in calcium metabolism have been shown to contribute significantly to the contractile dysfunction observed in heart failure. We investigated whether increasing SERCA2a expression can improve ventricular function in an animal model of heart failure obtained by creating ascending aortic constriction in rats. After 19–23 wk of banding during the transition from compensated hypertrophy to heart failure (documented by >25% decrease in fractional shortening), rats were randomized to receive either an adenovirus carrying the SERCA2a gene (Ad.SERCA2a, n = 13) or β-galactosidase (Ad.βgal, n = 14) by using a catheter-based technique. The failing hearts infected with Ad.βgal were characterized by a significant decrease in SERCA2a expression and a decrease in SERCA2a activity compared with nonfailing sham-operated rats (n = 11). In addition, these failing hearts had reduced left-ventricular systolic pressure, maximal rate of left-ventricular pressure rise and decline (+dP/dt, −dP/dt), and rate of isovolumic relaxation (τ). Overexpression of SERCA2a restored both SERCA2a expression and ATPase activity to nonfailing levels. Furthermore, rats infected with Ad.SERCA2a had significant improvement in left-ventricular systolic pressure, +dP/dt, −dP/dt, and rate of isovolumic relaxation (τ) normalizing them back to levels comparable to sham-operated rats. In this study, we show that in an animal model of heart failure where SERCA2a protein levels and activity are decreased and severe contractile dysfunction is present, overexpression of SERCA2a in vivo restores both systolic and diastolic function to normal levels.
机译:在人和实验性心力衰竭模型中,肌浆网Ca 2 + ATPase(SERCA2a)活性降低,导致钙处理异常。钙代谢紊乱已被证明可显着促进心力衰竭中观察到的收缩功能障碍。我们调查了增加的SERCA2a表达是否可以改善通过创建大鼠升主动脉缩窄获得的心力衰竭动物模型的心室功能。在从代偿性肥大到心力衰竭的过渡过程中出现19–23 wk的束带后(记录的分数缩短幅度降低了25%以上),将大鼠随机分为携带SERCA2a基因的腺病毒(Ad.SERCA2a,n = 13)或β-半乳糖苷酶(Ad.βgal,n = 14),采用基于导管的技术。与无假手术的大鼠(n = 11)相比,感染Ad.βgal的衰竭心脏的特征是SERCA2a表达显着下降,SERCA2a活性下降。另外,这些衰竭的心脏具有降低的左心室收缩压,最大的左心室压力升高和降低速率(+ dP / dt,-dP / dt)以及等容舒张率(τ)。 SERCA2a的过表达将SERCA2a的表达和ATPase活性都恢复到正常水平。此外,感染Ad.SERCA2a的大鼠左室收缩压,+ dP / dt,-dP / dt和等容舒张率(τ)均恢复至与假手术大鼠相当的水平。在这项研究中,我们表明,在心力衰竭的动物模型中,SERCA2a蛋白水平和活性降低,并且存在严重的收缩功能障碍,体内SERCA2a的过表达将收缩和舒张功能都恢复到正常水平。

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