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肾脏祖细胞调控的分子机制:拼图中有多少块?

Molecular Mechanisms of Renal Progenitor Regulation: How Many Pieces in the Puzzle?

机构信息

Department of Experimental and Clinical Biomedical Sciences "Mario Serio", University of Florence, Viale Morgagni 50, 50134 Florence, Italy.

Nephrology and Dialysis Unit, Meyer Children's University Hospital, Viale Pieraccini 24, 50139 Florence, Italy.

出版信息

Cells. 2021 Jan 2;10(1):59. doi: 10.3390/cells10010059.

Abstract

Kidneys of mice, rats and humans possess progenitors that maintain daily homeostasis and take part in endogenous regenerative processes following injury, owing to their capacity to proliferate and differentiate. In the glomerular and tubular compartments of the nephron, consistent studies demonstrated that well-characterized, distinct populations of progenitor cells, localized in the parietal epithelium of Bowman capsule and scattered in the proximal and distal tubules, could generate segment-specific cells in physiological conditions and following tissue injury. However, defective or abnormal regenerative responses of these progenitors can contribute to pathologic conditions. The molecular characteristics of renal progenitors have been extensively studied, revealing that numerous classical and evolutionarily conserved pathways, such as Notch or Wnt/β-catenin, play a major role in cell regulation. Others, such as retinoic acid, renin-angiotensin-aldosterone system, TLR2 (Toll-like receptor 2) and leptin, are also important in this process. In this review, we summarize the plethora of molecular mechanisms directing renal progenitor responses during homeostasis and following kidney injury. Finally, we will explore how single-cell RNA sequencing could bring the characterization of renal progenitors to the next level, while knowing their molecular signature is gaining relevance in the clinic.

摘要

鼠、大鼠和人类的肾脏都拥有祖细胞,这些祖细胞能够增殖和分化,从而维持日常的体内平衡,并在受伤后参与内源性再生过程。在肾小球和肾小管肾单位中,大量研究表明,在肾小囊壁层上皮和近端及远端小管中存在特征明确、不同的祖细胞群体,它们可以在生理条件下和组织损伤后产生特定节段的细胞。然而,这些祖细胞的再生反应缺陷或异常可能会导致病理状况。肾脏祖细胞的分子特征已得到广泛研究,揭示了许多经典的、进化上保守的途径,如 Notch 或 Wnt/β-catenin,在细胞调节中发挥着重要作用。其他途径,如视黄酸、肾素-血管紧张素-醛固酮系统、TLR2(Toll 样受体 2)和瘦素,在这个过程中也很重要。在这篇综述中,我们总结了指导肾脏祖细胞在维持体内平衡和肾脏损伤后反应的大量分子机制。最后,我们将探讨单细胞 RNA 测序如何将肾脏祖细胞的特征描述提升到一个新的水平,同时了解其分子特征在临床上的相关性也在不断增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/befd/7823786/738f05d5a335/cells-10-00059-g001.jpg

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