Characterization of contracting cardiomyocyte colonies in the primary culture of neonatal rat myocardial cells A model of in vitro cardiomyogenesis

被引:17
作者
Belostotskaya, Galina B. [1 ,2 ]
Golovanova, Tatyana A. [2 ]
机构
[1] Russian Acad Sci, IM Sechenov Evolutionary Physiol & Biochem Inst, Ctr Cytoanal, St Petersburg 196140, Russia
[2] Fed Almazov Med Res Ctr, Inst Expt Med, St Petersburg, Russia
关键词
primary culture of neonatal myocardial cells; cardiac myocytes; resident cardiac stem cells; proliferation; differentiation; contracting cardiomyocyte colonies; electromechanical coupling; Ca2+-induced Ca2+ release; CARDIAC STEM-CELLS; SIDE POPULATION CELLS; PROGENITOR CELLS; MOUSE HEART; DIFFERENTIATION; MYOCYTES; REGENERATION; MULTIPOTENT; EXPRESSION; MECHANISM;
D O I
10.4161/cc.27768
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The unmet clinical need for myocardial repair after irreversible ischemic injury requires a better understanding of the biological properties of cardiac stem cells (CSCs). Using a primary culture of neonatal rat myocardial cells, we describe the formation and maturation of contracting cardiomyocyte colonies stemming from c-kit(+), Sca(+), or Isl1(+) CSCs, which occurs in parallel to the hypertrophy of the major cardiac myocyte population. The contracting cardiomyocyte colonies (similar to 1-2 colonies per 1 x 10(5) of myocardial cells) were identified starting from eighth day of culturing. At first, spontaneous weak, asynchronous, and arrhythmic contractions of the colonies at a rate of 2-3 beats/min were registered. Over time, the contractions of the colonies became more synchronous and frequent, with a contraction rate of 58-60 beats/min by the 30th day of culturing. The colonies were characterized by the CSCs subtype-specific pattern of growth and structure. The cells of the colonies were capable of spontaneous cardiomyogenic differentiation, demonstrating expression of both sarcomeric a-actinin and a-sarcomeric actin as well as the maturation of contractile machinery and typical Ca2+ responses to caffeine (5 m.) and K+ (120 m.). Electromechanical coupling, characterized by cardiac muscle-specific Ca2+-induced Ca2+ release, was evident at 3 weeks of culturing. Thus, the co-cultivation of CSCs with mature cardiac cells resulted in the formation of contracting cardiomyocyte colonies, resembling the characteristics of in vivo cardiomyogenesis. The proposed model can be used for the investigation of fundamental mechanisms underlying cardiomyogenic differentiation of CSCs as well as for drug testing and/or other applications.
引用
收藏
页码:910 / 918
页数:9
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