Buddhist Tzu Chi Bioinnovation Center, Tzu Chi Foundation, Hualien, Republic of China.
Department of Medical Research, Hualien Tzu Chi Hospital, Hualien, Republic of China.
Cell Transplant. 2020 Jan-Dec;29:963689720907565. doi: 10.1177/0963689720907565.
Stem cell transplantation is a fast-developing technique, which includes stem cell isolation, purification, and storage, and it is in high demand in the industry. In addition, advanced applications of stem cell transplantation, including differentiation, gene delivery, and reprogramming, are presently being studied in clinical trials. In contrast to somatic cells, stem cells are self-renewing and have the ability to differentiate; however, the molecular mechanisms remain unclear. (sex-determining region Y [RY]-b 2) is one of the well-known reprogramming factors, and it has been recognized as an oncogene associated with cancer induction. The exclusion of in reprogramming methodologies has been used as an alternative cancer treatment approach. However, the manner by which induces oncogenic effects remains unclear, with most studies demonstrating its regulation of the cell cycle and no insight into the maintenance of cellular stemness. For controlling certain critical pathways, including Shh and Wnt pathways, is considered irreplaceable and is required for the normal functioning of stem cells, particularly neural stem cells. In this report, we discussed the functions of in both stem and cancer cells, as well as how this powerful regulator can be used to control cell fate.
干细胞移植是一项快速发展的技术,包括干细胞的分离、纯化和储存,在工业界有很高的需求。此外,干细胞移植的先进应用,包括分化、基因传递和重编程,目前正在临床试验中进行研究。与体细胞不同,干细胞具有自我更新和分化的能力;然而,其分子机制尚不清楚。(性别决定区 Y [RY]-b2)是众所周知的重编程因子之一,它已被认为是与癌症诱导相关的致癌基因。在重编程方法中排除 已被用作癌症治疗的替代方法。然而, 诱导致癌效应的方式尚不清楚,大多数研究表明其调节细胞周期,而对维持细胞干性则没有深入了解。为了控制某些关键途径,包括 Shh 和 Wnt 途径, 被认为是不可替代的,是干细胞,特别是神经干细胞正常功能所必需的。在本报告中,我们讨论了 在干细胞和癌细胞中的功能,以及这个强大的调节剂如何用于控制细胞命运。