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心力衰竭时心脏钠钙交换体过表达后的功能改变

Functional alterations after cardiac sodium-calcium exchanger overexpression in heart failure.

作者信息

Münch Götz, Rosport Kai, Baumgartner Christine, Li Zhongmin, Wagner Silvia, Bültmann Andreas, Ungerer Martin

机构信息

Trigen GmbH, Fraunhoferstr. 9, D-82152 Martinsried, Germany.

出版信息

Am J Physiol Heart Circ Physiol. 2006 Aug;291(2):H488-95. doi: 10.1152/ajpheart.01324.2005. Epub 2006 Apr 7.

Abstract

The sodium-calcium exchanger (NCX) is discussed as one of the key proteins involved in heart failure. However, the causal role and the extent to which NCX contributes to contractile dysfunction during heart failure are poorly understood. NCX overexpression was induced by infection with an adenovirus coding for NCX, which coexpressed green fluorescence protein (GFP) (AdNCX) by ex vivo gene transfer to nonfailing and failing rabbit cardiomyocytes. Myocardial gene transfer in rabbits in vivo was achieved by adenoviral delivery via aortic cross-clamping. Peak cell shortening of cardiomyocytes was determined photo-optically. Hemodynamic parameters in vivo were determined by echocardiography (fractional shortening) and tip catheter [maximal first derivative of left ventricular (LV) pressure (dP/dt(max)); maximal negative derivative of LV pressure (-dP/dt(max))]. Peak cell shortening was depressed after NCX gene delivery in isolated nonfailing and in failing cardiomyocytes. In nonfailing rabbits in vivo, basal systolic contractility (fractional shortening and dP/dt(max)) and maximum rate of LV relaxation (-dP/dt(max)) in vivo were largely unaffected after NCX overexpression. However, during heart failure, long-term NCX overexpression over 2 wk significantly improved fractional shortening and dP/dt(max) compared with AdGFP-infected rabbits, both without inotropic stimulation and after beta-adrenergic stimulation with isoproterenol. -dP/dt(max) was also improved after NCX overexpression in the failing rabbits group. These results indicate that short-term effects of NCX overexpression impair contractility of isolated failing and nonfailing rabbit cardiomyocytes. NCX overexpression over 2 wk in vivo does not seem to affect myocardial contractility in nonfailing rabbits. Interestingly, in vivo overexpression of NCX decreased the progression of systolic and diastolic contractile dysfunction and improved beta-adrenoceptor-mediated contractile reserve in heart failure in rabbits in vivo.

摘要

钠钙交换体(NCX)被认为是参与心力衰竭的关键蛋白之一。然而,NCX在心力衰竭期间对收缩功能障碍的因果作用及程度仍知之甚少。通过用编码NCX并共表达绿色荧光蛋白(GFP)的腺病毒(AdNCX)感染,经离体基因转移至未衰竭和衰竭的兔心肌细胞来诱导NCX过表达。通过主动脉交叉夹闭经腺病毒递送实现兔体内心肌基因转移。用光光学方法测定心肌细胞的峰值缩短。通过超声心动图(缩短分数)和顶端导管测定体内血流动力学参数[左心室(LV)压力的最大一阶导数(dP/dt(max));LV压力的最大负导数(-dP/dt(max))]。在分离的未衰竭和衰竭心肌细胞中进行NCX基因递送后,峰值细胞缩短受到抑制。在体内未衰竭的兔中,NCX过表达后,基础收缩期收缩力(缩短分数和dP/dt(max))以及体内LV舒张的最大速率(-dP/dt(max))基本未受影响。然而,在心力衰竭期间,与感染AdGFP的兔相比,超过2周的长期NCX过表达在无变力刺激以及用异丙肾上腺素进行β-肾上腺素能刺激后,显著改善了缩短分数和dP/dt(max)。在衰竭兔组中,NCX过表达后-dP/dt(max)也有所改善。这些结果表明,NCX过表达的短期效应损害了分离的衰竭和未衰竭兔心肌细胞的收缩力。在体内,超过2周的NCX过表达似乎不会影响未衰竭兔的心肌收缩力。有趣的是,在体内,NCX过表达减少了收缩期和舒张期收缩功能障碍的进展,并改善了兔体内心力衰竭时β-肾上腺素能受体介导的收缩储备。

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