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过表达松弛素的骨骼肌成肌细胞可改善原代小鼠心肌细胞培养物的分化和通讯。

Skeletal myoblasts overexpressing relaxin improve differentiation and communication of primary murine cardiomyocyte cell cultures.

作者信息

Formigli Lucia, Francini Fabio, Nistri Silvia, Margheri Martina, Luciani Giorgia, Naro Fabio, Silvertown Josh D, Orlandini Sandra Zecchi, Meacci Elisabetta, Bani Daniele

机构信息

Department of Anatomy, Histology and Forensic Medicine, University of Florence, viale G. Morgagni 85, I-50134, Florence, Italy.

出版信息

J Mol Cell Cardiol. 2009 Aug;47(2):335-45. doi: 10.1016/j.yjmcc.2009.05.008. Epub 2009 May 22.

Abstract

The possibility that resident myocardial progenitor cells may be re-activated by transplantation of exogenous stem cells into the post-infarcted heart has been suggested as a possible mechanism to explain the heart's functional improvement after stem cell therapy. Here we studied whether differentiation of mouse neonatal immature cardiomyocytes in vitro was influenced by mouse skeletal myoblasts C2C12, wild type or engineered to secrete the cardiotropic hormone relaxin. The cultured cardiomyocytes formed spontaneously beating clusters and temporally exhibited cardiac immunophenotypical (cKit, atrial natriuretic peptide, troponin T, connexin-43, HCN4) and electrical features (inward voltage-dependent Na(+), T- and L-type Ca(2+) currents, outward and inward K(+) currents, I(f) pacemaker current). These clusters were functionally connected through nanotubular structures and undifferentiated cardiac cells in the form of flattened stripes, bridging the clusters through connexin-43-containing gap junctions. These findings suggested the existence of long distance cell-to-cell communications among the cardiomyocyte aggregates involved in the intercellular transfer of Ca(2+) signals and organelles, likely required for coordination of myocardial differentiation. Co-presence of the myoblasts greatly increased cardiomyocyte differentiation and the amount of intercellular connections. In fact, these cells formed a structural support guiding elongation of nanotubules and stripe-like cells. The secretion of relaxin by the engineered myoblasts accelerated and enhanced the cardiomyogenic potential of the co-culture. These findings underscore the possibility that grafted myoblasts and cardiotropic factors, such as relaxin, may influence regeneration of resident immature cardiac cells, thus adding a tile to the mosaic of mechanisms involved in the functional benefits of cell transplantation for cardiac repair.

摘要

梗死心脏中驻留的心肌祖细胞可能会被外源性干细胞移植重新激活,这一可能性已被提出,作为解释干细胞治疗后心脏功能改善的一种可能机制。在此,我们研究了小鼠新生未成熟心肌细胞在体外的分化是否受小鼠骨骼肌成肌细胞C2C12的影响,C2C12为野生型或经过改造以分泌心肌营养激素松弛素。培养的心肌细胞自发形成跳动的细胞簇,并暂时表现出心脏免疫表型(cKit、心房利钠肽、肌钙蛋白T、连接蛋白-43、HCN4)和电生理特征(内向电压依赖性Na(+)、T型和L型Ca(2+)电流、外向和内向K(+)电流、I(f)起搏电流)。这些细胞簇通过纳米管结构和扁平条纹形式的未分化心脏细胞进行功能连接,通过含连接蛋白-43的缝隙连接桥接细胞簇。这些发现提示,参与Ca(2+)信号和细胞器细胞间转移的心肌细胞聚集体之间存在长距离细胞间通讯,这可能是心肌分化协调所必需的。成肌细胞的共同存在极大地增加了心肌细胞的分化和细胞间连接的数量。事实上,这些细胞形成了一种结构支撑,引导纳米管和条纹状细胞的延伸。经改造的成肌细胞分泌松弛素加速并增强了共培养物的心肌生成潜能。这些发现强调了移植的成肌细胞和心肌营养因子(如松弛素)可能影响驻留未成熟心脏细胞再生的可能性,从而为细胞移植促进心脏修复功能益处的机制拼图增添了一块。

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