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Titlebook: Etiology and Morphogenesis of Congenital Heart Disease; From Gene Function a Toshio Nakanishi,Roger R. Markwald,Hiroyuki Yamagi Book‘‘‘‘‘‘‘

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楼主: arouse
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Future Treatment of Heart Failure Using Human iPSC-Derived Cardiomyocytesdifferent mechanisms of glucose and lactate metabolism. Based on these findings, we succeeded in metabolically selecting cardiomyocytes using glucose-free and lactate-supplemented medium, with up to 99 % purity and no teratoma formation. Using our aggregation technique, we also showed that >90 % of
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Role of Cilia and Left-Right Patterning in Congenital Heart Diseaseunborn human fetal population. Clinically, congenital heart disease patients with ciliary dysfunction were found to have more respiratory symptoms and disease, a finding with significant clinical implications, as congenital heart disease patients undergoing surgical palliation often have respiratory
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Meis1 Regulates Postnatal Cardiomyocyte Cell Cycle Arresteis1 in cardiomyocytes decreased neonatal myocyte proliferation and inhibited neonatal heart regeneration. Finally, we show that Meis1 is required for transcriptional activation of the synergistic CDK inhibitors p15, p16, and p21. These results identify Meis1 as a critical transcriptional regulator
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Etiology and Morphogenesis of Congenital Heart DiseaseFrom Gene Function a
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Etiology and Morphogenesis of Congenital Heart Disease978-4-431-54628-3
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Stewart Johnstone,Adrian Wilkinsonith impact on development, disease, and repair. The epicardium differentiates from the proepicardial organ located at the venous pole (vPEO). The differentiation capacities of the vPEO into epicardium-derived cells (EPDCs) have been extensively described. A hitherto escaped part of the epicardium de
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Forest vitality and stress implications,Direct injection of bone marrow-derived cells and isolated skeletal myoblasts has already been used clinically as a method to improve cardiac function by regenerating cardiac muscle cells and blood vessels. The research on reconstructing functional three-dimensional (3D) cardiac grafts using tissue
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