Center for iPS cell Research and Application, Institute for Integrated Cell-Material Sciences, Kyoto University, Sakyo-ku, Kyoto, Japan.
Dev Growth Differ. 2010 Apr;52(3):319-33. doi: 10.1111/j.1440-169X.2010.01169.x. Epub 2010 Mar 7.
Direct reprogramming of somatic cells into a pluripotent state has been achieved with a set of just four transcription factors. Many scientists and medical doctors are trying to elucidate the causes of intractable diseases and discover new drugs using the newest types of technology. Various methods have been developed to produce clinical-grade fully reprogrammed cells for cell transplantation therapy. Augmenting agents, such as small-molecules, have been extensively screened to improve the reprogramming efficiency. The molecular mechanisms of reprogramming have been revealed by embryonic stem cell research. The accumulation of knowledge by the pioneers has driven the reprogramming field. In the present article, the contents of gift boxes from the studies of pluripotency to the nuclear reprogramming field are introduced.
体细胞直接重编程为多能状态已通过仅仅四种转录因子实现。许多科学家和医生正在使用最新类型的技术试图阐明难治性疾病的原因并发现新的药物。已经开发了各种方法来生产用于细胞移植治疗的临床级完全重编程细胞。增强剂,如小分子,已被广泛筛选以提高重编程效率。通过胚胎干细胞研究揭示了重编程的分子机制。先驱者的知识积累推动了重编程领域的发展。在本文中,介绍了从多能性研究到核重编程领域的礼品盒内容。