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Cardiomyocyte differentiation induced in cardiac progenitor cells by cardiac fibroblast-conditioned medium

机译:心脏成纤维细胞条件培养液诱导心脏祖细胞分化成心肌细胞

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Our previous study showed that after being treated with 5-azacytidine, Nkx2.5+ human cardiac progenitor cells (CPCs) derived from embryonic heart tubes could differentiate into cardiomyocytes. Although 5-azacytidine is a classical agent that induces myogenic differentiation in various types of cells, the drug is toxic and unspecific for myogenic differentiation. To investigate the possibility of inducing CPCs to differentiate into cardiomyocytes by a specific and non-toxic method, CPCs of passage 15 and mesenchymal stem cells (MSCs) were treated with cardiac ventricular fibroblast-conditioned medium (CVF-conditioned medium). Following this treatment, the Nkx2.5+ CPCs underwent cardiomyogenic differentiation. Phase-contrast microscopy showed that the morphology of the treated CPCs gradually changed. Ultrastructural observation confirmed that the cells contained typical sarcomeres. The expression of cardiomyocyte-associated genes, such as alpha-cardiac actin, cardiac troponin T, and beta-myosin heavy chain (MHC), was increased in the CPCs that had undergone cardiomyogenic differentiation compared with untreated cells. In contrast, the MSCs did not exhibit changes in morphology or molecular expression after being treated with CVF-conditioned medium. The results indicated that Nkx2.5+ CPCs treated with CVF-conditioned medium were capable of differentiating into a cardiac phenotype, whereas treated MSCs did not appear to undergo cardiomyogenic differentiation. Subsequently, following the addition of Dkk1 and the blocking of Wnt signaling pathway, CVF-conditioned medium-induced morphological changes and expression of cardiomyocyte-associated genes of Nkx2.5+ CPCs were inhibited, which indicates that CVF-conditioned medium-induced cardiomyogenic differentiation of Nkx2.5+ CPCs is associated with Wnt signaling pathway. In addition, we also found that the activation of Wnt signaling pathway was accompanied by higher expression of GATA-4 and the blocking of the pathway inhibited the expression of GATA-4 in CVF-conditioned medium-incubated Nkx2.5+ CPCs. This finding suggests that Wnt signaling pathway may alter GATA-4 expression and activate the cardiogenic program in the regulation of differentiation. In conclusion, Nkx2.5+ CPCs have enormous potential for cardiomyogenic differentiation and the CVF-conditioned medium specifically induces CPCs to differentiate into a cardiac phenotype. Wnt signaling pathway is involved in CVF-conditioned medium-induced cardiomyogenic differentiation of Nkx2.5+ CPCs.
机译:我们以前的研究表明,经5-氮胞苷处理后,源自胚胎心管的Nkx2.5 +人心脏祖细胞(CPC)可以分化为心肌细胞。尽管5-氮杂胞苷是在多种类型的细胞中诱导肌原性分化的经典药物,但该药物有毒且对肌原性分化没有特异性。为了研究通过特定的无毒方法诱导CPC分化为心肌细胞的可能性,将15代和间充质干细胞(MSC)的CPC分别用心室成纤维细胞条件培养基(CVF条件培养基)处理。在此治疗之后,Nkx2.5 + CPCs发生了心肌分化。相差显微镜显示处理后的CPC的形态逐渐改变。超微结构观察证实该细胞含有典型的肉瘤。与未经处理的细胞相比,在经历了心肌细胞分化的CPC中,与心肌细胞相关的基因(例如α-心脏肌动蛋白,心脏肌钙蛋白T和β-肌球蛋白重链(MHC))的表达增加了。相反,在用CVF条件培养基处理后,MSC没有表现出形态或分子表达的变化。结果表明,用CVF条件培养基处理的Nkx2.5 + CPCs能够分化为心脏表型,而处理后的MSC似乎没有发生心肌分化。随后,在添加Dkk1和阻断Wnt信号通路后,抑制了CVF条件培养基诱导的Nkx2.5 + CPCs的形态变化和心肌细胞相关基因的表达,这表明CVF条件培养基诱导的心肌细胞分化Nkx2.5 + CPC的数量与Wnt信号通路相关。此外,我们还发现Wnt信号通路的激活伴随着GATA-4的高表达,而通路的阻断抑制了CVF条件下培养的Nkx2.5 + CPCs中GATA-4的表达。该发现表明,Wnt信号传导途径可以改变GATA-4的表达并激活分化过程中的心源性程序。总之,Nkx2.5 + CPCs具有巨大的心肌分化潜力,CVF条件培养基可特异性诱导CPCs分化为心脏表型。 Wnt信号通路参与CVF条件培养基诱导的Nkx2.5 + CPC的心肌分化。

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