Polyploid tubular cells: a short cut to stress adaptation

多倍体 生物 细胞生物学 祖细胞 功能(生物学) 再生(生物学) 真核生物 平衡 干细胞 遗传学 倍性 基因 基因组
作者
Letizia De Chiara,Elena Lazzeri,Paola Romagnani
出处
期刊:Kidney International [Elsevier]
被引量:4
标识
DOI:10.1016/j.kint.2023.10.036
摘要

Abstract

Tubular epithelial cells (TC) compose the majority of kidney parenchyma and play fundamental roles in maintaining homeostasis. Like other tissues, mostly immature TC with progenitor capabilities are able to replace TC lost during injury via clonal expansion and differentiation. In contrast, differentiated TC lack this capacity. However, as the kidney is frequently exposed to toxic injuries, evolution positively selected a response program that endows differentiated TC to maintain residual kidney function during kidney injury. Recently, we and others have described polyploidization of differentiated TC, a mechanism to augment the function of remnant TC after an injury by rapid hypertrophy. Polyploidy is a condition characterized by more than two complete sets of chromosomes. Polyploid cells often display an increased functional capacity and are generally more resilient to stress as evidenced by being conserved across many plants and eukaryote species from flies to mammals. Here, we discuss the occurrence of TC polyploidy in different contexts and conditions and how this integrates into existing concepts of kidney cell responses to injury. Collectively, we aim at stimulating the acquisition of novel knowledge in the kidney field as well as accelerating the translation of this basic response mechanism to the clinical sphere.
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