Phenotypic Diversity and Metabolic Specialization of Renal Endothelial Cells
Overview
Affiliations
Complex multicellular life in mammals relies on functional cooperation of different organs for the survival of the whole organism. The kidneys play a critical part in this process through the maintenance of fluid volume and composition homeostasis, which enables other organs to fulfil their tasks. The renal endothelium exhibits phenotypic and molecular traits that distinguish it from endothelia of other organs. Moreover, the adult kidney vasculature comprises diverse populations of mostly quiescent, but not metabolically inactive, endothelial cells (ECs) that reside within the kidney glomeruli, cortex and medulla. Each of these populations supports specific functions, for example, in the filtration of blood plasma, the reabsorption and secretion of water and solutes, and the concentration of urine. Transcriptional profiling of these diverse EC populations suggests they have adapted to local microenvironmental conditions (hypoxia, shear stress, hyperosmolarity), enabling them to support kidney functions. Exposure of ECs to microenvironment-derived angiogenic factors affects their metabolism, and sustains kidney development and homeostasis, whereas EC-derived angiocrine factors preserve distinct microenvironment niches. In the context of kidney disease, renal ECs show alteration in their metabolism and phenotype in response to pathological changes in the local microenvironment, further promoting kidney dysfunction. Understanding the diversity and specialization of kidney ECs could provide new avenues for the treatment of kidney diseases and kidney regeneration.
Microenvironmental determinants of endothelial cell heterogeneity.
Gomez-Salinero J, Redmond D, Rafii S Nat Rev Mol Cell Biol. 2025; .
PMID: 39875728 DOI: 10.1038/s41580-024-00825-w.
Verma S, Sen C, Srivastava R, Gnyawali S, Katiyar P, Sahi A Mol Ther. 2025; 33(3):950-969.
PMID: 39863930 PMC: 11897775. DOI: 10.1016/j.ymthe.2025.01.034.
Salmon-Cabrales I, de la Garza-Kalife D, Garcia-Gonzalez G, Estrada-Rodriguez A, Jimenez-Gutierrez M, Santoyo-Suarez M Life (Basel). 2025; 14(12.
PMID: 39768378 PMC: 11728015. DOI: 10.3390/life14121671.
Chen Q, Yang Y, Ying X, Huang C, Chen J, Wang J Adv Sci (Weinh). 2024; 12(6):e2411254.
PMID: 39703158 PMC: 11809360. DOI: 10.1002/advs.202411254.
Macrophage metabolic reprogramming ameliorates diabetes-induced microvascular dysfunction.
Zhang Q, Zhang H, Feng S, Yao M, Ding J, Li X Redox Biol. 2024; 79():103449.
PMID: 39647239 PMC: 11667058. DOI: 10.1016/j.redox.2024.103449.