Connexins in Vascular Physiology and Pathology
- 1 February 2009
- journal article
- review article
- Published by Mary Ann Liebert Inc in Antioxidants and Redox Signaling
- Vol. 11 (2) , 267-282
- https://doi.org/10.1089/ars.2008.2115
Abstract
Cellular interaction in blood vessels is maintained by multiple communication pathways, including gap junctions. They consist of intercellular channels ensuring direct interaction between endothelial and smooth muscle cells and the synchronization of their behavior along the vascular wall. Gap-junction channels arise from the docking of two hemichannels or connexons, formed by the assembly of six connexins, and achieve direct cellular communication by allowing the transport of small metabolites, second messengers, and ions between two adjacent cells. Physiologic variations in connexin expression are observed along the vascular tree, with most common connexins being Cx37, Cx40, and Cx43. Changes in the level of expression of connexins have been correlated to the development of vascular disease, such as hypertension, atherosclerosis, or restenosis. Recent studies on connexin-deficient mice highlighted key roles of these communication pathways in the development of these pathologies and confirmed the need for targeted pharmacologic approaches for their prevention and treatment. The aim of this issue is to review the current knowledge on the implication of gap junctions in vascular function and most common cardiovascular diseases. Antioxid. Redox Signal. 11, 267–282.This publication has 146 references indexed in Scilit:
- Smooth Muscle–Targeted Knockout of Connexin43 Enhances Neointimal Formation in Response to Vascular InjuryArteriosclerosis, Thrombosis, and Vascular Biology, 2007
- Ca 2+ and Inositol 1,4,5-Trisphosphate–Mediated Signaling Across the Myoendothelial JunctionCirculation Research, 2007
- Spatial separation of endothelial small‐ and intermediate‐conductance calcium‐activated potassium channels (KCa) and connexins: possible relationship to vasodilator function?Journal of Anatomy, 2006
- Connexin 43 mediates spread of Ca2+ -dependent proinflammatory responses in lung capillariesJournal of Clinical Investigation, 2006
- Up-regulation of connexin43 correlates with increased synthetic activity and enhanced contractile differentiation in TGF-β-treated human aortic smooth muscle cellsEuropean Journal of Cell Biology, 2006
- A Role for Heterocellular Coupling and EETs in Dilation of Rat Cremaster ArteriesMicrocirculation, 2006
- A Role for Oxidized Phospholipids in AtherosclerosisNew England Journal of Medicine, 2005
- Inflammation in atherosclerosisNature, 2002
- Upregulation of Connexin43 Gap Junctions During Early Stages of Human Coronary AtherosclerosisArteriosclerosis, Thrombosis, and Vascular Biology, 1995
- Spontaneous Hypercholesterolemia and Arterial Lesions in Mice Lacking Apolipoprotein EScience, 1992