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Differentiation and genetic manipulation of human embryonic stem cells and the analysis of the cardiovascular system.

机译:人类胚胎干细胞的分化和遗传操作以及心血管系统分析。

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Human embryonic stem (ES) cells are pluripotent cells derived from blastocyst-stage embryos. The cells are characterized by their self-renewal capability and by their ability to differentiate into a wide range of cell types. In vivo, injection of the human ES cells into immune-deficient mice generates teratomas harboring derivatives of all three embryonic germ layers. In vitro, spontaneous aggregation of human ES cells results in the formation of embryoid bodies (EBs) comprised of differentiated cells from the three embryonic germ layers. Induced differentiation of ES cells into specific subsets of cells may be generated by treatment with several growth factors. Cardiomyocytes and endothelial cells were among the tissue types identified in vitro, and one of the most dramatic examples for the differentiation of human ES cells is the formation of rhythmic contractions of EBs containing pulsing cardiac muscle cells. Cells of the cardiovascular system were characterized by many molecular markers and by their structural and functional properties. The ability to genetically manipulate human ES cells now allows for the purification of specific cell types. Human ES cells have tremendous value as an in vitro model to study embryonic differentiation and as a source of cells for cellular transplantation in various pathologies among them cardiovascular diseases.
机译:人胚胎干(ES)细胞是源自胚泡期胚胎的多能细胞。这些细胞的特征在于它们的自我更新能力和分化为多种细胞类型的能力。在体内,将人ES细胞注射到免疫缺陷小鼠中会产生畸胎瘤,这些畸胎瘤具有所有三个胚芽层的衍生物。在体外,人ES细胞的自发聚集导致形成胚状体(EB),该胚状体由来自三个胚芽层的分化细胞组成。通过用几种生长因子处理,可以诱导ES细胞分化为特定的细胞亚群。心肌细胞和内皮细胞是体外鉴定的组织类型之一,而人类ES细胞分化的最引人注目的例子之一是含有搏动的心肌细胞的EB的节律性收缩形成。心血管系统细胞的特征在于许多分子标记及其结构和功能特性。遗传操纵人类ES细胞的能力现在可以纯化特定的细胞类型。人类ES细胞作为研究胚胎分化的体外模型以及在包括心血管疾病在内的各种病理形式中进行细胞移植的细胞来源具有巨大的价值。

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