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成纤维细胞调节心肌细胞兴奋性:对心脏基因治疗的启示。

Fibroblasts modulate cardiomyocyte excitability: implications for cardiac gene therapy.

作者信息

Kizana E, Ginn S L, Smyth C M, Boyd A, Thomas S P, Allen D G, Ross D L, Alexander I E

机构信息

Department of Cardiology, Westmead Hospital, Westmead, New South Wales, Australia.

出版信息

Gene Ther. 2006 Nov;13(22):1611-5. doi: 10.1038/sj.gt.3302813. Epub 2006 Jul 13.

Abstract

In an earlier study exploring the potential of gene transfer to repair myocardial conduction defects, we observed that myotubes, generated by forced expression of MyoD, exhibit reduced excitability when also modified to express connexin43 (Cx43). We hypothesized that this effect was caused by gap junction-mediated coupling between myotubes and the underlying fibroblast feeder layer. This intriguing possibility has important implications for ongoing efforts to develop strategies for repairing myocardial conduction defects by gene transfer, and also provides novel insights into the electrophysiological function of naturally occurring heterologous cell coupling within the heart. Although a conductive function for fibroblasts through heterologous coupling has previously been reported, the current study provides novel evidence that fibroblasts can modulate cardiomyocyte excitability in a Cx43-dependent manner. In a co-culture study system, neonatal rat cardiomyocytes were grown on monolayers of mouse fibroblasts with genetically altered Cx43 expression and the effect on intrinsic beat frequency examined. Cardiomyocytes grown on wild-type (WT) fibroblasts expressing native levels of Cx43 beat significantly slower than cells grown on fibroblasts devoid of this molecule (germline knockout) or with dominant-negative functional suppression. Expression of Cx43 in fibroblasts from Cx43 knockout mice restored cardiomyocyte beat frequency, to rates comparable with those observed in co-culture with WT fibroblasts.

摘要

在一项早期研究中,我们探索了基因转移修复心肌传导缺陷的潜力,观察到通过强制表达MyoD生成的肌管,在同时被修饰以表达连接蛋白43(Cx43)时,其兴奋性降低。我们推测这种效应是由肌管与下层成纤维细胞饲养层之间的缝隙连接介导的偶联引起的。这种有趣的可能性对于目前通过基因转移开发修复心肌传导缺陷策略的努力具有重要意义,也为心脏内天然存在的异源细胞偶联的电生理功能提供了新的见解。虽然先前已报道成纤维细胞通过异源偶联具有传导功能,但当前研究提供了新的证据,表明成纤维细胞可以以Cx43依赖的方式调节心肌细胞的兴奋性。在共培养研究系统中,将新生大鼠心肌细胞接种在具有基因改变的Cx43表达的小鼠成纤维细胞单层上,并检测对固有搏动频率的影响。在表达天然水平Cx43的野生型(WT)成纤维细胞上生长的心肌细胞搏动明显慢于在缺乏该分子的成纤维细胞(种系敲除)或具有显性负性功能抑制的成纤维细胞上生长的细胞。来自Cx43敲除小鼠的成纤维细胞中Cx43的表达恢复了心肌细胞的搏动频率,达到与在与WT成纤维细胞共培养中观察到的频率相当的水平。

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