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Induced pluripotent stem cells a giant leap for mankind therapeutic applications

机译:诱导多能干细胞人类治疗应用的巨大飞跃

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摘要

Induced pluripotent stem cells (iPSC) technology has propelled the field of stem cells biology, providing new cells to explore the molecular mechanisms of pluripotency, cancer biology and aging. A major advantage of human iPSC, compared to the pluripotent embryonic stem cells, is that they can be generated from virtually any embryonic or adult somatic cell type without destruction of human blastocysts. In addition, iPSC can be generated from somatic cells harvested from normal individuals or patients, and used as a cellular tool to unravel mechanisms of human development and to model diseases in a manner not possible before. Besides these fundamental aspects of human biology and physiology that are revealed using iPSC or iPSC-derived cells, these cells hold an immense potential for cell-based therapies, and for the discovery of new or personalized pharmacological treatments for many disorders. Here, we review some of the current challenges and concerns about iPSC technology. We introduce the potential held by iPSC for research and development of novel health-related applications. We briefly present the efforts made by the scientific and clinical communities to create the necessary guidelines and regulations to achieve the highest quality standards in the procedures for iPSC generation, characterization and long-term preservation. Finally, we present some of the audacious and pioneer clinical trials in progress with iPSC-derived cells.
机译:诱导多能干细胞(iPSC)技术推动了干细胞生物学领域的发展,为探索多能性,癌症生物学和衰老的分子机制提供了新的细胞。与多能胚胎干细胞相比,人iPSC的主要优势在于它们几乎可以从任何胚胎或成年体细胞类型产生,而不会破坏人胚泡。此外,iPSC可以从正常人或患者体内收集的体细胞产生,并用作细胞工具来揭示人类发育的机制并以前所未有的方式对疾病进行建模。除了使用iPSC或iPSC衍生的细胞揭示了人类生物学和生理学的这些基本方面以外,这些细胞还具有巨大的潜力,可用于基于细胞的疗法以及发现许多新的或个性化的药物治疗方法。在这里,我们回顾了有关iPSC技术的当前挑战和担忧。我们介绍了iPSC在研究与健康相关的新型应用方面的潜力。我们简要介绍了科学界和临床界为创建必要的指导原则和法规而做出的努力,以在iPSC生成,表征和长期保存的过程中达到最高质量标准。最后,我们介绍了iPSC衍生细胞正在进行的一些大胆而开创的临床试验。

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