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Regulation and Dysregulation of Endothelial Permeability During Systemic Inflammation

Overview
Journal Cells
Publisher MDPI
Date 2022 Jun 24
PMID 35741064
Authors
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Abstract

Systemic inflammation can be triggered by infection, surgery, trauma or burns. During systemic inflammation, an overshooting immune response induces tissue damage resulting in organ dysfunction and mortality. Endothelial cells make up the inner lining of all blood vessels and are critically involved in maintaining organ integrity by regulating tissue perfusion. Permeability of the endothelial monolayer is strictly controlled and highly organ-specific, forming continuous, fenestrated and discontinuous capillaries that orchestrate the extravasation of fluids, proteins and solutes to maintain organ homeostasis. In the physiological state, the endothelial barrier is maintained by the glycocalyx, extracellular matrix and intercellular junctions including adherens and tight junctions. As endothelial cells are constantly sensing and responding to the extracellular environment, their activation by inflammatory stimuli promotes a loss of endothelial barrier function, which has been identified as a hallmark of systemic inflammation, leading to tissue edema formation and hypotension and thus, is a key contributor to lethal outcomes. In this review, we provide a comprehensive summary of the major players, such as the angiopoietin-Tie2 signaling axis, adrenomedullin and vascular endothelial (VE-) cadherin, that substantially contribute to the regulation and dysregulation of endothelial permeability during systemic inflammation and elucidate treatment strategies targeting the preservation of vascular integrity.

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References
1.
Languino L, Gehlsen K, Wayner E, Carter W, Engvall E, Ruoslahti E . Endothelial cells use alpha 2 beta 1 integrin as a laminin receptor. J Cell Biol. 1989; 109(5):2455-62. PMC: 2115839. DOI: 10.1083/jcb.109.5.2455. View

2.
David S, Ghosh C, Mukherjee A, Parikh S . Angiopoietin-1 requires IQ domain GTPase-activating protein 1 to activate Rac1 and promote endothelial barrier defense. Arterioscler Thromb Vasc Biol. 2011; 31(11):2643-52. PMC: 3249617. DOI: 10.1161/ATVBAHA.111.233189. View

3.
Heemskerk N, Schimmel L, Oort C, van Rijssel J, Yin T, Ma B . F-actin-rich contractile endothelial pores prevent vascular leakage during leukocyte diapedesis through local RhoA signalling. Nat Commun. 2016; 7:10493. PMC: 4737874. DOI: 10.1038/ncomms10493. View

4.
Kevil C, Okayama N, Trocha S, Kalogeris T, Coe L, Specian R . Expression of zonula occludens and adherens junctional proteins in human venous and arterial endothelial cells: role of occludin in endothelial solute barriers. Microcirculation. 1998; 5(2-3):197-210. View

5.
Dupuis J, Caron A, Ruel N . Biodistribution, plasma kinetics and quantification of single-pass pulmonary clearance of adrenomedullin. Clin Sci (Lond). 2005; 109(1):97-102. DOI: 10.1042/CS20040357. View