Please use this identifier to cite or link to this item: https://dora.health.qld.gov.au/qldresearchjspui/handle/1/2855
Title: EPHA4-FC treatment reduces ischemia/reperfusion-induced intestinal injury by inhibiting vascular permeability
Authors: Lipman, J.
Coulthard, M. G.
Taylor, S. M.
Boyd, A. W.
Ting, M. J.
Woodruff, T. M.
Wu, M. C. L.
Morgan, M.
Bain, N. T.
Jeanes, A.
Issue Date: 2016
Source: 45, (2), 2016, p. 184-191
Pages: 184-191
Journal: Shock
Abstract: The inflammatory response is characterized by increased endothelial permeability,which permits the passage of fluid and inflammatory cells into interstitial spaces. The Eph/ephrin receptor ligand system plays a role in inflammation through a signaling cascade, which modifies Rho-GTPase activity. We hypothesized that blocking Eph/ephrin signaling using an EphA4-Fc would result in decreased inflammation and tissue injury in a model of ischemia/reperfusion (I/R) injury. Mice undergoing intestinal I/Rpretreatedwith the EphA4-Fc had significantly reduced intestinal injury compared tomice injectedwith the control Fc. This reduction in I/R injury was accompanied by significantly reduced neutrophil infiltration, but did not affect intestinal inflammatory cytokine generation. Using microdialysis, we identified that intestinal I/R induced a marked increase in systemic vascular leakage, which was completely abrogated in EphA4-Fc-treatedmice. Finally, we confirmed the direct role of Eph/ephrin signaling in endothelial leakage by demonstrating that EphA4-Fc inhibited tumor necrosis factor-a-induced vascular permeability in human umbilical vein endothelial cells. This study identifies that Eph/ephrin interaction induces proinflammatory signaling in vivo by inducing vascular leak and neutrophil infiltration, which results in tissue injury in intestinal I/R. Therefore, therapeutic targeting of Eph/ephrin interaction using inhibitors, such as EphA4-Fc, may be a novel method to prevent tissue injury in acute inflammation by influencing endothelial integrity and by controlling vascular leak.L6082917002016-02-17
2016-02-26
DOI: 10.1097/SHK.0000000000000494
Resources: https://www.embase.com/search/results?subaction=viewrecord&id=L608291700&from=exporthttp://dx.doi.org/10.1097/SHK.0000000000000494 |
Keywords: receptor blocking agent;tumor necrosis factor;unclassified drug;animal experiment;animal model;animal tissue;antiinflammatory activity;article;blood vessel permeability;cell membrane permeability;controlled study;human;human cell;immunocytochemistry;intestine injury;intestine ischemia;intestine villus;male;microdialysis;mouse;neutrophil chemotaxis;nonhuman;fusion protein;reperfusion injury;signal transduction;tight junction;umbilical vein endothelial cell;F actin;ephrin receptor A4 FC;ephrin receptor;antiinflammatory agentcomplement component C5a;receptor blocking;interleukin 1beta;interleukin 6;protein ZO1
Type: Article
Appears in Sites:Children's Health Queensland Publications

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