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对衰老的一种新见解:成年组织中是否存在多能性的极小型类胚胎干细胞(VSELs),其随时间推移以依赖胰岛素样生长因子-1(Igf-1)的方式耗尽?

A novel insight into aging: are there pluripotent very small embryonic-like stem cells (VSELs) in adult tissues overtime depleted in an Igf-1-dependent manner?

作者信息

Ratajczak Mariusz Z, Shin Dong-Myung, Ratajczak Janina, Kucia Magda, Bartke Andrzej

机构信息

Stem Cell Institute at James Graham Brown Cancer Center, University of Louisville, Louisville, KY 40202, USA.

出版信息

Aging (Albany NY). 2010 Nov;2(11):875-83. doi: 10.18632/aging.100231.

Abstract

Tissue and organ rejuvenation and senescence/aging are closely related to the function of stem cells. Recently, we demonstrated that a population of pluripotent Oct-4+ SSEA-1+Sca-1+Lin-CD45- very small embryonic-like stem cells (VSELs) resides in the adult murine bone marrow (BM) and other murine tissues. We hypothesize that these pluripotent stem cells play an important role in tissue/organ rejuvenation, and have demonstrated that their proliferation and potentially premature depletion is negatively controlled by epigenetic changes of some imprinted genes that regulate insulin factor signaling (Igf2-H19 locus, Igf2R and RasGRF1). Since the attenuation of insulin/insulin growth factor (Ins/Igf) signaling positively correlates with longevity, we propose, based on our experimental data, that gradual decrease in the number of VSELs deposited in adult tissues, which occurs throughout life in an Ins/Igf signaling-dependent manner is an important mechanism of aging. In contrast, a decrease in Ins/Igf stimulation of VSELs that extends the half life of these cells in adult organs would have a beneficial effect on life span. Our preliminary data in long-living Igf-1-signaling-deficient mice show that these animals possess a 3-4 times higher number of VSELs deposited in adult BM, lending support to this novel hypothesis.

摘要

组织和器官的年轻化以及衰老与干细胞的功能密切相关。最近,我们证明了一群多能的Oct-4+ SSEA-1+Sca-1+Lin-CD45-非常小的胚胎样干细胞(VSELs)存在于成年小鼠骨髓(BM)和其他小鼠组织中。我们假设这些多能干细胞在组织/器官年轻化中发挥重要作用,并已证明它们的增殖以及潜在的过早耗竭受到一些调控胰岛素因子信号传导的印记基因(Igf2-H19位点、Igf2R和RasGRF1)表观遗传变化的负调控。由于胰岛素/胰岛素生长因子(Ins/Igf)信号传导的减弱与寿命呈正相关,基于我们的实验数据,我们提出,成年组织中沉积的VSELs数量逐渐减少,这种减少在整个生命过程中以Ins/Igf信号传导依赖的方式发生,是衰老的一个重要机制。相反,减少Ins/Igf对VSELs的刺激,从而延长这些细胞在成年器官中的半衰期,将对寿命产生有益影响。我们在长寿的Igf-1信号缺陷小鼠中的初步数据表明,这些动物成年骨髓中沉积的VSELs数量高出3 - 4倍,这支持了这一新颖的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c34d/3006029/02faae708255/aging-02-875-g001.jpg

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