Endothelial dysfunction in the aging kidney.

IF 3.4 American journal of physiology. Renal physiology Pub Date : 2025-04-01 Epub Date: 2025-02-11 DOI:10.1152/ajprenal.00287.2024
Mila Borri, Marleen E Jacobs, Peter Carmeliet, Ton J Rabelink, Sébastien J Dumas
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Abstract

Global population aging is an escalating challenge in modern society, especially as it impairs the function of multiple organs and increases the burden of age-related diseases. The kidneys, in particular, experience function decline, reduced regenerative capacity, and increased susceptibility to injury as they age. As a result, the prevalence of chronic kidney disease (CKD) rises with aging, further contributing to the growing health burden in older populations. One of the key factors in this process is the dysfunction of specialized renal endothelial cells (RECs), which are essential for maintaining kidney health by regulating blood flow and supporting filtration, solute and water reabsorption, and vascular integrity. As the kidneys age, REC dysfunction drives vascular and microenvironmental changes, contributing to the overall decline in kidney function. In this review, we outline the structural and functional effects of aging on the kidney's macrovascular and microvascular compartments and provide a phenotypic description of the aged endothelium. We particularly focus on the molecular and metabolic rewiring driving and sustaining growth-arrested EC senescence phenotype. We finally give an overview of senotherapies acting on ECs, especially of those modulating metabolism. Given that the pathophysiological processes underlying kidney aging largely overlap with those observed in CKD, REC rejuvenation could also benefit patients with CKD. Moreover, such interventions may hold promise in improving the outcomes of aged kidney transplants. Hence, advancing our understanding of REC and kidney aging will create opportunities for innovations that could improve outcomes for both elderly individuals and patients with CKD.

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衰老肾脏的内皮功能障碍。
全球人口老龄化是现代社会日益严峻的挑战,特别是因为它损害了多个器官的功能,增加了与年龄有关的疾病的负担。尤其是肾脏,随着年龄的增长,肾脏的功能下降,再生能力降低,对损伤的易感性增加。因此,慢性肾脏疾病(CKD)的患病率随着年龄的增长而上升,进一步加剧了老年人群日益增长的健康负担。这一过程的关键因素之一是特化肾内皮细胞(RECs)的功能障碍,这些细胞通过调节血流、支持过滤、溶质和水的重吸收以及血管完整性来维持肾脏健康。随着肾脏的老化,REC功能障碍驱动血管和微环境的变化,导致肾功能的整体下降。在这篇综述中,我们概述了衰老对肾脏大血管和微血管腔室的结构和功能的影响,并提供了衰老内皮的表型描述。我们特别关注分子和代谢重新布线驱动和维持生长受阻的EC衰老表型。最后,我们概述了作用于内皮细胞的老年疗法,特别是那些调节代谢的疗法。鉴于肾脏衰老的病理生理过程与CKD中观察到的病理生理过程在很大程度上重叠,REC年轻化也可能有益于CKD患者。此外,这种干预措施可能有望改善老年肾脏移植的结果。因此,推进我们对REC和肾脏衰老的理解将为创新创造机会,从而改善老年人和CKD患者的预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Correction for Trott et al., volume 315, 2018, p. F1855-F1868. Correction for Hamatani et al., volume 330, 2026, p. F269-F284. The transcription factor Tcf21 is necessary for adoption of cell fates by Foxd1+ stromal progenitors during kidney development. Making a portal for podocyte-parietal cell communication in glomerular injury. Kidney kallikrein-1 contributes to cleavage of γ-ENaC in vivo.
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