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[诱导多能干细胞与衰老]

[iPSCs and aging].

作者信息

Sakuma Ikki, Tanaka Tomoaki

出版信息

Nihon Rinsho. 2016 Sep;74(9):1560-1564.

Abstract

In addition to the discovery that mature cells can be reprogrammed to become pluripotent stem cells(iPS cells), the technical innovations of big-data analyses as well as the cutting- edge technologies such as nuclear reprogramming technique and genome-editing system are emerging a big paradigm shift in the field of regenerative medicine and aging. This is bonafide a kind of the molecular biological movement of the Renaissance to answer the question of 120 years ago "D'ofi Venons Nous Que Sommes Nous Oi Allons Nous", a testament of Paul Gauguin. These technologies enable us, particularly inexhaustible researchers with challenging spirits, not only to dynamically, qualitatively and visually systematically understand underling mechanisms of single gene, single molecule, single cell and their complicated networks in vivo with broadly combining them from cells to organs and individuals', but also to pursue the mechanistic insight into "Life, Aging, Disease, and Death" and thereby con- trol them. We herein review about recent hot topic findings focused on regenerative medicine, cellular senescence & aging as well as aging-related disease, and then discuss the functional interconnection between reprogramming process and senescence signal.

摘要

除了发现成熟细胞可以被重编程成为多能干细胞(诱导多能干细胞)之外,大数据分析的技术创新以及诸如核重编程技术和基因组编辑系统等前沿技术正在使再生医学和衰老领域发生重大的范式转变。这确实是一种分子生物学的复兴运动,以回答120年前保罗·高更提出的问题“我们从何处来?我们是谁?我们向何处去?”。这些技术使我们,尤其是那些具有挑战精神、永不满足的研究人员,不仅能够通过从细胞到器官再到个体广泛地将它们结合起来,动态、定性和直观地系统理解体内单个基因、单个分子、单个细胞及其复杂网络的潜在机制,而且能够深入探究“生命、衰老、疾病和死亡”的机制并加以控制。我们在此回顾近期聚焦于再生医学、细胞衰老与老化以及衰老相关疾病的热点研究发现,然后讨论重编程过程与衰老信号之间的功能联系。

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