Abstract 4368248: Endothelial ILK deficiency promotes cardiac dysfunction via pro-inflammatory extracellular vesicle signaling.

A Alberto Cook (UNIVERSIDAD ALCALA, Alcala De Henares Madrid, Spain) M Maria Delgado-Marin (Universidad de Alcala, Alcala de Henares, Spain) S Silvia Moreta (Universidad de Alcala, Alcala de Henares, Spain) B Beatriz Jimenez-Guirado (Fundacion Univ Francisco de Vitoria, Pozuelo De Alarcon, Spain) L Laura Tesoro (Fundacion Univ Francisco de Vitoria, Pozuelo De Alarcon, Spain) C Carlos Zaragoza (Fundacion Univ Francisco de Vitoria, Pozuelo De Alarcon, Spain) M Marta Saura (UNIVERSIDAD ALCALA, Alcala De Henares Madrid, Spain)

Abstract

Introduction: Endothelial function is crucial for maintaining vascular homeostasis. Integrin-linked kinase (ILK) has emerged as a key regulator of endothelial homeostasis, preventing endothelial dysfunction by stabilizing eNOS activity and counteracting inflammation. However, the mechanisms by which ILK loss contributes to vascular pathology remain poorly understood. Hypothesis: This study tested the hypothesis that extracellular vesicles (EVs) secreted by ILK deficient endothelium serve as mediators of coronary endothelial activation leading to cardiac dysfunction. Methods: We investigated the role of endothelial ILK in microvascular damage and endothelial activation via extracellular vesicles (EV) using an endothelial-specific ILK knockout mouse model (ecILK-cKO) and ILK deleted mouse endothelial cells. Results: Endothelial ILK deletion led to sustained inflammation in vivo as revealed by CD68+ infiltration and ICAM and VCAM coronary endothelial expression as early as one week after deletion which increased three weeks after ecILK deletion. Endothelial cell-ILK deletion led to endothelial activation, marked by increased expression of endothelial activation markers (iNOS and ICAM), NF-kB signaling, macrophage adhesion to the endothelium and the release of proinflammatory EV. EVs derived from ILK-deficient endothelial cells impaired endothelial function in vitro, decreasing proliferation and migration, and disrupting the angiogenic processes. Moreover, circulating EV from ecILK-cKO mice (cEVecILK-cKO) induce endothelial cell activation and vascular inflammation when administered to healthy mice. Prolonged exposure to cEVecILK-cKO resulted in progressive cardiac dysfunction, characterized by reduced ejection fraction, increased fibrosis, and microvascular remodeling mimicking the phenotype of th ecILKcKO mice. Conclussions: These results identify ILK as a critical suppressor of endothelial inflammation and highlight EV as key mediators of endothelial crosstalk in cardiovascular pathology. Targeting ILK-dependent EV signaling could offer novel therapeutic strategies for preventing microvascular damage and cardiac remodeling in ischemic heart disease and heart failure. Keywords: extracellular vesicles; Integrin-linked kinase; endothelial cell activation; inflammation; cardiac dysfunction; microvascular remodeling.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (7)

A

Alberto Cook

UNIVERSIDAD ALCALA, Alcala De Henares Madrid, Spain

M

Maria Delgado-Marin

Universidad de Alcala, Alcala de Henares, Spain

S

Silvia Moreta

Universidad de Alcala, Alcala de Henares, Spain

B

Beatriz Jimenez-Guirado

Fundacion Univ Francisco de Vitoria, Pozuelo De Alarcon, Spain

L

Laura Tesoro

Fundacion Univ Francisco de Vitoria, Pozuelo De Alarcon, Spain

C

Carlos Zaragoza

Fundacion Univ Francisco de Vitoria, Pozuelo De Alarcon, Spain

M

Marta Saura

UNIVERSIDAD ALCALA, Alcala De Henares Madrid, Spain