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Muscularization of the Mesenchymal Outlet Septum during Cardiac Development

机译:心脏发育期间间充质出口隔膜的肌肉辐射

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摘要

After the formation of the linear heart tube, it becomes divided into right and left components by the process of septation. Relatively late during this process, within the developing outflow tract, the initially mesenchymal outlet septum becomes muscularized as the result of myocardialization. Myocardialization is defined as the process in which existing cardiomyocytes migrate into flanking mesenchyme. Studies using genetically modified mice, as well as experimental approaches using in vitro models, demonstrate that Wnt and TGFβ signaling play an essential role in the regulation of myocardialization. They also show the significance of the interaction between cardiomyocytes, endocardial derived cells, neural crest cells, and the extracellular matrix. Interestingly, Wnt-mediated non-canonical planar cell polarity signaling was found to be a crucial regulator of myocardialization in the outlet septum and Wnt-mediated canonical β-catenin signaling is an essential regulator of the expansion of mesenchymal cells populating the outflow tract cushions.
机译:在形成线性心脏管之后,通过荚膜的过程分成右侧和左组分。在该过程中相对深,在显影流出道内,由于心肌化的结果,最初间充质出口隔膜变得肌肉大小。心肌化被定义为现有心肌细胞迁移到侧翼间充质的过程中。使用基因改性小鼠的研究以及使用体外模型的实验方法证明WNT和TGFβ信号传导在心肌化的调节中起重要作用。它们还表明了心肌细胞,内心膜内衍生细胞,神经嵴细胞和细胞外基质之间的相互作用的重要性。有趣的是,发现WNT介导的非规范平面细胞极性信号传导是出口隔膜中的心肌化的关键调节剂,并且WNT介导的规范β-catenin信号传导是填充流出道垫的间充质细胞的扩张的必要调节因子。

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