Indoxyl Sulfate-Induced Valve Endothelial Cell Endothelial-to-Mesenchymal Transition and Calcification in an Integrin-Linked Kinase-Dependent Manner

Author:

Delgado-Marin Maria1ORCID,Sánchez-Esteban Sandra1,Cook-Calvete Alberto1,Jorquera-Ortega Sara1ORCID,Zaragoza Carlos23ORCID,Saura Marta13ORCID

Affiliation:

1. Unidad de Fisiología, Departamento de Biología de Sistemas, Facultad de Medicina, IRYCIS, Universidad de Alcalá, 28871 Alcalá de Henares, Spain

2. Cardiovascular Research University Francisco de Vitoria and Hospital Ramon y Cajal, IRYCIS, 28034 Madrid, Spain

3. Centro de Investigación Biomédica en Red de Enfermedades Cardiovasculares (CIBERCV), Instituto de Salud Carlos III, 28029 Madrid, Spain

Abstract

Calcific Aortic Valve Disease (CAVD) is a significant concern for cardiovascular health and is closely associated with chronic kidney disease (CKD). Aortic valve endothelial cells (VECs) play a significant role in the onset and progression of CAVD. Previous research has suggested that uremic toxins, particularly indoxyl sulfate (IS), induce vascular calcification and endothelial dysfunction, but the effect of IS on valve endothelial cells (VECs) and its contribution to CAVD is unclear. Our results show that IS reduced human VEC viability and increased pro-calcific markers RUNX2 and alkaline phosphatase (ALP) expression. Additionally, IS-exposed VECs cultured in pro-osteogenic media showed increased calcification. Mechanistically, IS induced endothelial-to-mesenchymal transition (EndMT), evidenced by the loss of endothelial markers and increased expression of mesenchymal markers. IS triggered VEC inflammation, as revealed by NF-kB activation, and decreased integrin-linked kinase (ILK) expression. ILK overexpression reversed the loss of endothelial phenotype and RUNX2, emphasizing its relevance in the pathogenesis of CAVD in CKD. Conversely, a lower dose of IS intensified some of the effects in EndMT caused by silencing ILK. These findings imply that IS affects valve endothelium directly, contributing to CAVD by inducing EndMT and calcification, with ILK acting as a crucial modulator.

Funder

Instituto de Salud Carlos III

European Union regional fund

Comunidad de Madrid I+D Biomedicine Activities Program 2022

Publisher

MDPI AG

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