Structural and functional coupling of cardiac myocytes and fibroblasts.

Patrizia Camelliti, Colin R Green, Peter Kohl
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引用次数: 92

Abstract

Cardiac myocytes and fibroblasts form extensive networks in the heart, with numerous anatomical contacts between cells. Fibroblasts, obligatory components of the extracellular matrix, represent the majority of cells in the normal heart, and their number increases with aging and during disease. The myocyte network, coupled by gap junctions, is generally believed to be electrically isolated from fibroblasts in vivo. In culture, however, the heterogeneous cell types form functional gap junctions, which can provide a substrate for electrical coupling of distant myocytes, interconnected by fibroblasts only. Whether similar behavior occurs in vivo has been the subject of considerable debate. Recent electrophysiological, immunohistochemical, and dye-coupling data confirmed the presence of direct electrical coupling between the two cell types in normal cardiac tissue (sinoatrial node), and it has been suggested that similar interactions may occur in post-infarct scar tissue. Such heterogeneous cell coupling could have major implications on in vivo electrical impulse conduction and the transport of small molecules or ions in both the normal and pathological myocardium. This review illustrates that it would be wrong to adhere to a scenario of functional integration of the heart that does not allow for a potential active contribution of non-myocytes to cardiac electrophysiology, and proposes to focus further research on the relevance of non-myocytes for cardiac structure and function.

心肌细胞和成纤维细胞的结构和功能偶联。
心肌细胞和成纤维细胞在心脏中形成广泛的网络,细胞之间有大量的解剖接触。成纤维细胞是细胞外基质的必需成分,代表了正常心脏中大多数细胞,它们的数量随着年龄的增长和疾病的发生而增加。一般认为,通过间隙连接连接的肌细胞网络是在体内从成纤维细胞中电分离出来的。然而,在培养中,异质细胞类型形成功能性间隙连接,这可以为远端肌细胞的电偶联提供底物,仅通过成纤维细胞相互连接。类似的行为是否发生在体内一直是争论的主题。最近的电生理、免疫组织化学和染料偶联数据证实,在正常心脏组织(窦房结)中,两种细胞类型之间存在直接电偶联,并且已经表明,类似的相互作用可能发生在梗死后疤痕组织中。这种异质细胞偶联可能对正常和病理心肌的体内电脉冲传导和小分子或离子的转运有重要影响。这篇综述表明,坚持认为心脏功能整合不允许非肌细胞对心脏电生理的潜在积极贡献是错误的,并建议进一步研究非肌细胞与心脏结构和功能的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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