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肝细胞多倍体化及其与病理生理过程的关系。

Hepatocyte polyploidization and its association with pathophysiological processes.

机构信息

Department of Cell Biology, Center for Stem Cell and Medicine, Second Military Medical University, Shanghai 200433, China.

Department of Molecular and Cellular Biology, Roswell Park Cancer Institute, Buffalo, NY 14263, USA.

出版信息

Cell Death Dis. 2017 May 18;8(5):e2805. doi: 10.1038/cddis.2017.167.

Abstract

A characteristic cellular feature of the mammalian liver is the progressive polyploidization of the hepatocytes, where individual cells acquire more than two sets of chromosomes. Polyploidization results from cytokinesis failure that takes place progressively during the course of postnatal development. The proportion of polyploidy also increases with the aging process or with cellular stress such as surgical resection, toxic stimulation, metabolic overload, or oxidative damage, to involve as much as 90% of the hepatocytes in mice and 40% in humans. Hepatocyte polyploidization is generally considered an indicator of terminal differentiation and cellular senescence, and related to the dysfunction of insulin and p53/p21 signaling pathways. Interestingly, the high prevalence of hepatocyte polyploidization in the aged mouse liver can be reversed when the senescent hepatocytes are serially transplanted into young mouse livers. Here we review the current knowledge on the mechanism of hepatocytes polyploidization during postnatal growth, aging, and liver diseases. The biologic significance of polyploidization in senescent reversal, within the context of new ways to think of liver aging and liver diseases is considered.

摘要

哺乳动物肝脏的一个特征性细胞特征是肝细胞的渐进多倍体化,其中单个细胞获得超过两套染色体。多倍体化是由于细胞分裂失败导致的,这种失败在出生后的发育过程中逐渐发生。多倍体的比例也随着衰老过程或细胞应激(如手术切除、毒性刺激、代谢过载或氧化损伤)而增加,在小鼠中多达 90%的肝细胞和人类中多达 40%的肝细胞会发生多倍体化。肝细胞多倍体化通常被认为是终末分化和细胞衰老的标志,与胰岛素和 p53/p21 信号通路的功能障碍有关。有趣的是,当衰老的肝细胞被连续移植到年轻小鼠的肝脏中时,年老小鼠肝脏中高比例的肝细胞多倍体化可以被逆转。在这里,我们综述了在出生后生长、衰老和肝脏疾病过程中肝细胞多倍体化的机制的最新知识。考虑到新的方法来思考肝脏衰老和肝脏疾病,我们还考虑了多倍体化在衰老逆转中的生物学意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0b3/5520697/3992afe6e8cc/cddis2017167f1.jpg

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