Helmholtz Gemeinschaft

Search
Browse
Statistics
Feeds

EphrinB2 activation enhances vascular repair mechanisms and reduces brain swelling after mild cerebral ischemia

Item Type:Article
Title:EphrinB2 activation enhances vascular repair mechanisms and reduces brain swelling after mild cerebral ischemia
Creators Name:Ghori, A. and Freimann, F.B. and Nieminen-Kelhae, M. and Kremenetskaia, I. and Gertz, K. and Endres, M. and Vajkoczy, P.
Abstract:Objective- Cerebral edema caused by the disruption of the blood-brain barrier is a major complication after stroke. Therefore, strategies to accelerate and enhance neurovascular recovery after stroke are of prime interest. Our main aim was to study the role of ephrinB2/EphB4 signaling in mediating the vascular repair and in blood-brain barrier restoration after mild cerebral ischemia occlusion/reperfusion. Approach and results- Here, we show that the guidance molecule ephrinB2 plays a key role in neurovascular protection and blood-brain barrier restoration after stroke. In a focal stroke model, we characterize the stroke-induced damage to cerebral blood vessels and their subsequent endogenous repair on a cellular, molecular, and functional level. EphrinB2 and its tyrosine kinase receptor EphB4 are upregulated early after stroke by endothelial cells and perivascular support cells, in parallel to their reassembly during neurovascular recovery. Using both retroviral and pharmacological approaches, we show that the inhibition of ephrinB2/EphB4 signaling suppresses post-middle cerebral artery occlusion neurovascular repair mechanisms resulting in an aggravation of brain swelling. In contrast, the activation of ephrinB2 after brain ischemia leads to an increased pericyte recruitment and increased endothelial-pericyte interaction, resulting in an accelerated neurovascular repair after ischemia. Conclusions- We show that reducing swelling could result in improved outcome because of reduction in damaged brain tissue. We also identify a novel role for ephrinB2/EphB4 signaling in the maintenance of the neurovascular homeostasis and provide a novel therapeutic approach in reducing brain swelling after stroke.
Keywords:Blood-Brain Barrier, Brain Edema, Brain Ischemia, Endothelial Cells, Homeostasis, Animals, Mice
Source:Arteriosclerosis Thrombosis and Vascular Biology
ISSN:1079-5642
Publisher:American Heart Association
Volume:37
Number:5
Page Range:867-878
Date:May 2017
Official Publication:https://doi.org/10.1161/ATVBAHA.116.308620
PubMed:View item in PubMed

Repository Staff Only: item control page

Open Access
MDC Library