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首页> 外文期刊>Biomaterials >A 3-D cardiac muscle construct for exploring adult marrow stem cell based myocardial regeneration.
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A 3-D cardiac muscle construct for exploring adult marrow stem cell based myocardial regeneration.

机译:一种3D心肌构造,用于探索基于成人骨髓干细胞的心肌再生。

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Adult bone marrow stromal cells (BMSCs) are capable of differentiating into cardiomyocyte-like cells in vitro and contribute to myocardial regeneration in vivo. Consequently, BMSCs may potentially play a vital role in cardiac repair and regeneration. However, this concept has been limited by inadequate and inconsistent differentiation of BMSCs into cardiomyocytes along with poor survival and integration of neo-cardiomyocytes after implantation into ischemic myocardium. In order to overcome these barriers and to explore adult stem cell based myocardial regeneration, we have developed an in vitro model of three-dimensional (3-D) cardiac muscle using rat ventricular embryonic cardiomyocytes (ECMs) and BMSCs. When ECMs and BMSCs were seeded sequentially onto a 3-D tubular scaffold engineered from topographically aligned type I collagen-fibers and cultured in basal medium for 7, 14, 21, or 28 days, the maturation and co-differentiation into a cardiomyocyte lineage was observed. Phenotypic induction was characterized at morphological, immunological, biochemical and molecular levels. The observed expression of transcripts coding for cardiomyocyte phenotypic markers and the immunolocalization of cardiomyogenic lineage-associated proteins revealed typical expression patterns of neo-cardiomyogenesis. At the biochemical level differentiating cells exhibited appropriate metabolic activity and at the ultrastructural level myofibrillar and sarcomeric organization were indicative of an immature phenotype. Our 3-D co-culture system sustains the ECMs in vitro continuum of differentiation process and simultaneously induces the maturation and differentiation of BMSCs into cardiomyocyte-like cells. Thus, this novel 3-D co-culture system provides a useful in vitro model to investigate the functional role and interplay of developing ECMs and BMSCs during cardiomyogenic differentiation.
机译:成人骨髓基质细胞(BMSC)能够在体外分化为心肌样细胞,并有助于体内的心肌再生。因此,骨髓间充质干细胞可能在心脏修复和再生中起至关重要的作用。然而,该概念受到BMSCs分化为心肌细胞的不足和不一致以及存活性差和植入心肌缺血后新心肌细胞整合的限制。为了克服这些障碍并探索基于成人干细胞的心肌再生,我们使用大鼠心室胚性心肌细胞(ECM)和BMSC建立了三维(3-D)心肌的体外模型。当将ECM和BMSC顺序接种到由地形对齐的I型胶原纤维制成的3-D管状支架上并在基础培养基中培养7、14、21或28天时,成熟和共分化为心肌细胞谱系观测到的。在形态,免疫,生化和分子水平上表征表型诱导。观察到的编码心肌细胞表型标记的转录物表达和与心肌发生谱系相关的蛋白质的免疫定位揭示了新的心肌发生的典型表达模式。在生化水平上,分化细胞表现出适当的代谢活性,而在超微结构水平上,肌原纤维和肌节组织表明其表型未成熟。我们的3-D共培养系统可在体外维持ECM分化过程的连续性,并同时诱导BMSC的成熟和分化为心肌样细胞。因此,该新颖的3-D共培养系统提供了有用的体外模型,以研究在心原性分化过程中发育中的ECM和BMSC的功能作用和相互作用。

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