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Intravitreal AAV2.COMP-Ang1 Prevents Neurovascular Degeneration in a Murine Model of Diabetic Retinopathy

Authors :
Judd Cahoon
Dean Y. Li
David Krizaj
Bonnie Archer
Xiaohui Zhang
Subtrata K. Das
Christopher C. Gibson
Wyatt B. Messenger
Reinhold J. Medina
Paul R. Olson
Guangping Gao
Kortnie Walker
Ruju R. Rai
Spencer Nielson
Santosh Kumar Muddana
Peter Barabas
Balamurali K. Ambati
Alan W. Stitt
Lara S Carroll
Christina L. O’Neil
Gou Y. Koh
Maggie Marie Flood
Hironori Uehara
Source :
Diabetes
Publication Year :
2015
Publisher :
American Diabetes Association, 2015.

Abstract

Diabetic retinopathy (DR) is the leading cause of blindness in the working-age population in the U.S. The vision-threatening processes of neuroglial and vascular dysfunction in DR occur in concert, driven by hyperglycemia and propelled by a pathway of inflammation, ischemia, vasodegeneration, and breakdown of the blood retinal barrier. Currently, no therapies exist for normalizing the vasculature in DR. Here, we show that a single intravitreal dose of adeno-associated virus serotype 2 encoding a more stable, soluble, and potent form of angiopoietin 1 (AAV2.COMP-Ang1) can ameliorate the structural and functional hallmarks of DR in Ins2Akita mice, with sustained effects observed through six months. In early DR, AAV2.COMP-Ang1 restored leukocyte-endothelial interaction, retinal oxygenation, vascular density, vascular marker expression, vessel permeability, retinal thickness, inner retinal cellularity, and retinal neurophysiological response to levels comparable with nondiabetic controls. In late DR, AAV2.COMP-Ang1 enhanced the therapeutic benefit of intravitreally delivered endothelial colony-forming cells by promoting their integration into the vasculature and thereby stemming further visual decline. AAV2.COMP-Ang1 single-dose gene therapy can prevent neurovascular pathology, support vascular regeneration, and stabilize vision in DR.

Details

ISSN :
1939327X and 00121797
Volume :
64
Database :
OpenAIRE
Journal :
Diabetes
Accession number :
edsair.doi.dedup.....f4d0c2aa257c5b74abd56172ebbd739f
Full Text :
https://doi.org/10.2337/db14-1030