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首页> 外文期刊>Regenerative Medicine >Hemangioblasts from human embryonic stem cells generate multilayered blood vessels with functional smooth muscle cells
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Hemangioblasts from human embryonic stem cells generate multilayered blood vessels with functional smooth muscle cells

机译:来自人类胚胎干细胞的成血成血管细胞产生具有功能性平滑肌细胞的多层血管

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Background: The formation and regeneration of functional vasculatures require both endothelial cells (ECs) and vascular smooth muscle cells (SMCs). Identification and isolation of progenitors with potential for both EC and SMC lineage differentiation from an inexhaustible source, such as human embryonic stem (hES) or induced pluripotent stem cells, will be desirable for cell replacement therapy. Method: Recently, we have developed a serum-free and animal feeder-free differentiation system to generate blast cells (BCs) from hESCs. These cells possess the characteristics of hemangioblasts in vitro and are capable of repairing damaged retinal vasculatures, restoring blood flow in hind-limb ischemia and reducing the mortality rate after myocardial infarction in vivo. We demonstrate here that BCs express markers of SMCs and differentiate into smooth muscle-like cells (SMLCs), in addition to ECs and hematopoietic cells. Results: When BCs from individual blast colonies were cultured in SMC medium, they differentiated into both ECs and SMLCs, which formed capillary-vascular-like structures after replating on Matrigel™. The SMLCs expressed SMC-specific markers (α-SM actin and calponin) and contracted upon treatment with carbachol. When implanted in nude mice, these cells formed microvasculature with ECs in Matrigel plaques. The BCs differentiated into both ECs and SMLCs, and incorporated into blood vessels after injection into ischemic tissue. Conclusion: These results demonstrate that hemangioblasts (BCs) generated from hESCs are tripotential and can provide a potentially inexhaustible source of cells for the treatment of human blood and vascular diseases.
机译:背景:功能性脉管系统的形成和再生需要内皮细胞(EC)和血管平滑肌细胞(SMC)。从细胞取之不尽的来源,例如人类胚胎干(hES)或诱导性多能干细胞,鉴定和分离具有EC和SMC谱系分化潜能的祖细胞,对于细胞替代治疗将是理想的。方法:最近,我们开发了一种无血清和无动物饲养者的分化系统,可从hESC生成胚细胞(BCs)。这些细胞在体外具有成血成血管细胞的特性,并能够修复受损的视网膜脉管系统,恢复后肢缺血中的血流并降低体内心肌梗死后的死亡率。我们在这里证明,除了EC和造血细胞,BCs表达SMCs的标记并分化为平滑肌样细胞(SMLCs)。结果:当将来自各个原始菌落的BCs在SMC培养基中培养时,它们分化为ECs和SMLCs,它们重新铺在Matrigel™上后形成了毛细血管样结构。 SMLC表达SMC特异性标志物(α-SM肌动蛋白和钙蛋白),并在用卡巴胆碱处理后收缩。当植入裸鼠中时,这些细胞与基质胶斑块中的EC形成微脉管系统。 BCs分化为ECs和SMLCs,并在注射入缺血组织后并入血管。结论:这些结果表明,从人类胚胎干细胞产生的成血成血管细胞(BCs)具有潜在的潜力,可以为人类血液和血管疾病的治疗提供潜在的取之不尽的用之不竭的细胞来源。

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