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The first reported generation of human induced pluripotent stem cells (iPS cells) and iPS cell-derived cardiomyocytes in the Netherlands

机译:在荷兰首次报道了人类诱导多能干细胞(iPS细胞)和iPS细胞衍生的心肌细胞的生成

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摘要

One of the recent breakthroughs in stem cell research has been the reprogramming of human somatic cells to an embryonic stem cell (ESC)-like state (induced pluripotent stem cells, iPS cells). Similar to ESCs, iPS cells can differentiate into derivatives of the three germ layers, for example cardiomyocytes, pancreatic cells or neurons. This technique offers a new approach to investigating disease pathogenesis and to the development of novel therapies. It may now be possible to generate iPS cells from somatic cells of patients who suffer from vascular genetic diseases, such as hereditary haemorrhagic telangiectasia (HHT). The iPS cells will have a similar genotype to that of the patient and can be differentiated in vitro into the cell type(s) that are affected in the patient. Thus they will serve as excellent models for a better understanding of mechanisms underlying the disease. This, together with the ability to test new drugs, could potentially lead to novel therapeutic concepts in the near future. Here we report the first derivation of three human iPS cell lines from two healthy individuals and one HHT patient in the Netherlands. The iPS cells resembled ESCs in morphology and expressed typical ESC markers. In vitro, iPS cells could be differentiated into cells of the three germ layers, including beating cardiomyocytes and vascular cells. With this technique it will be possible to establish human cardiovascular disease models from patient biopsies provided by the principal hospitals in the Netherlands. (Neth Heart J 2010;18:51-4. [] [] [])
机译:干细胞研究的最新突破之一是将人类体细胞重编程为类似胚胎干细胞(ESC)的状态(诱导多能干细胞,iPS细胞)。与ESC相似,iPS细胞可以分化为三个胚层的衍生物,例如心肌细胞,胰腺细胞或神经元。该技术为研究疾病的发病机理和开发新疗法提供了一种新方法。现在有可能从患有遗传性出血性毛细血管扩张(HHT)等血管遗传疾病的患者的体细胞中产生iPS细胞。 iPS细胞将具有与患者相似的基因型,并且可以在体外分化为在患者中受影响的细胞类型。因此,它们将作为更好的模型,以更好地了解疾病的潜在机制。这与测试新药的能力一起,有可能在不久的将来引发新的治疗概念。在这里,我们报告了来自荷兰的两名健康个体和一名HHT患者的三种人iPS细胞系的首次衍生。 iPS细胞在形态上类似于ESC,并表达典型的ESC标记。在体外,iPS细胞可以分化为三个胚层的细胞,包括跳动的心肌细胞和血管细胞。通过这种技术,将有可能根据荷兰主要医院提供的活检样本建立人类心血管疾病模型。 (Neth Heart J 2010; 18:51-4。[] [] [])

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