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Updated: Feb 13, 2026

In Vitro Model of Physiological and Pathological Blood Flow with Application to Investigations of Vascular Cell Remodeling
Published on: November 3, 2015
Role of Caveolae and Caveolin in Vascular Physiology and Pathology
Chi Zhang1, Wenting Hu2, Jiaye Zhang1
1Department of Pharmacology, Joint Laboratory of Guangdong-Hong Kong Universities for Vascular Homeostasis and Diseases, School of Medicine Southern University of Science and Technology Shenzhen Guangdong China.
Abstract:
Caveolae, 50-100 nm cholesterol-rich plasma membrane invaginations, serve as critical signaling hubs in vascular cells. These structures-scaffolded by caveolin proteins (CAV1, CAV2, CAV3) and regulated by Cavins-orchestrate membrane dynamics, mechanotransduction, and lipid trafficking in endothelial cells, smooth muscle cells, and macrophages. In vascular physiology, caveolae modulate vascular tone, regulate lipoprotein metabolism, and mediate mechanosensation. In pathology, caveolae are implicated in atherosclerosis, pulmonary hypertension, and diabetic vasculopathy. This review synthesizes advances in caveolae biology, highlighting their roles in vascular homeostasis and disease. We propose caveolae-targeted therapies as promising strategies for cardiovascular disorders, contingent on resolving context-dependent signaling complexity.
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