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Acquired Cell-to-Cell Coupling and 'Cardiac-Like' Calcium Oscillations in Adult Stem Cells in a Cardiomyocyte Microenvironment

机译:在心肌微环境中成人干细胞中获得的细胞间耦合和“类心肌”钙振荡。

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Adult-derived stem cells have recently been found to respond in vivo to inductive signals from the microenvironment and to differentiate into a phenotype that is characteristic of cells in that microenvironment. We examined the differentiation potential of an adult liver stem cell line (WBF344) in a cardiac microenvironment in vitro. WBF344 cells were established from a single cloned non-parenchymal epithelial cell isolated from a normal male adult rat liver. Genetically modified, WBF344 cells that express beta-galactosidase, green fluorescent protein (GFP) or mitochondrial red fluorescent protein (DsRed) were co-cultured with rat neonatal cardiac cells. After 4-14 days, we identified WBF344-derived cardiomyocytes that were elongated, binucleated and expressed the cardiac specific proteins cardiac troponin T, cardiac troponin I and N cadherin. These WBF344-derived cardiomyocytes also exhibited myofibrils, sarcomeres, and a nascent sarcoplasmic reticulum. Furthermore, rhythmically beating WBF344-derived cardiomyocytes displayed "cardiac-like" calcium transients similar to the surrounding neonatal cardiomyocytes. Fluorescent recovery after photobleaching demonstrated that WBF344-derived cardiomyocytes were electrically coupled with adjacent neonatal cardiomyocytes through gap junctions (GJs). Collectively, these results support the conclusion that these adult-derived liver stem cells respond to signals generated in a cardiac microenvironment in vitro acquiring a cardiomyocyte phenotype and function. The identification of micro-environmental signals that appear to cross germ layer and species specificities should prove valuable in understanding the regulation of normal development and stem cell differentiation in vivo
机译:最近发现成人来源的干细胞在体内对来自微环境的诱导信号作出反应,并分化成该微环境中细胞特征的表型。我们在体外心脏微环境中检查了成人肝干细胞系(WBF344)的分化潜能。 WBF344细胞是从从正常雄性成年大鼠肝脏分离的单个克隆的非实质上皮细胞建立的。经过基因修饰的,表达β-半乳糖苷酶,绿色荧光蛋白(GFP)或线粒体红色荧光蛋白(DsRed)的WBF344细胞与大鼠新生心肌细胞共培养。 4-14天后,我们鉴定出了WBF344衍生的心肌细胞,这些细胞被拉长,双核并表达了心脏特异性蛋白心肌肌钙蛋白T,心肌肌钙蛋白I和N钙黏着蛋白。这些源自WBF344的心肌细胞还表现出肌原纤维,肉瘤和新生的肌质网。此外,有节奏地跳动源自WBF344的心肌细胞显示出类似于周围新生心肌细胞的“心脏样”钙瞬变。光漂白后的荧光恢复表明,源自WBF344的心肌细胞通过间隙连接(GJ)与相邻的新生儿心肌细胞电耦合。总体而言,这些结果支持以下结论:这些成体来源的肝干细胞对体外在心肌微环境中产生的信号作出反应,从而获得心肌细胞的表型和功能。鉴定出似乎跨过细菌层和物种特异性的微环境信号,对于理解体内正常发育和干细胞分化的调控,应该被证明是有价值的。

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