Vascular Endothelial Growth Factor-Angiopoietin Chimera With Improved Properties for Therapeutic Angiogenesis

Author:

Anisimov Andrey1,Tvorogov Denis1,Alitalo Annamari1,Leppänen Veli-Matti1,An Yuri1,Han Eun Chun1,Orsenigo Fabrizio1,Gaál Emília Ilona1,Holopainen Tanja1,Koh Young Jun1,Tammela Tuomas1,Korpisalo Petra1,Keskitalo Salla1,Jeltsch Michael1,Ylä-Herttuala Seppo1,Dejana Elisabetta1,Koh Gou Young1,Choi Chulhee1,Saharinen Pipsa1,Alitalo Kari1

Affiliation:

1. From the Wihuri Research Institute, Helsinki, Finland (A. Anisimov, V.-M.L., P.S., K.A.); Molecular/Cancer Biology Program, Biomedicum Helsinki and Helsinki University Central Hospital, University of Helsinki, Helsinki, Finland (A. Anisimov, D.T., V.-M.L., E.I.G., T.H., T.T., S.K., M.J., P.S., K.A.); Department of Biotechnology and Molecular Medicine, A.I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, Kuopio, Finland (A. Alitalo, P.K., S.Y.-H.); National Research...

Abstract

Background— There is an unmet need for proangiogenic therapeutic molecules for the treatment of tissue ischemia in cardiovascular diseases. However, major inducers of angiogenesis such as vascular endothelial growth factor (VEGF/VEGF-A) have side effects that limit their therapeutic utility in vivo, especially at high concentrations. Angiopoietin-1 has been considered to be a blood vessel stabilization factor that can inhibit the intrinsic property of VEGF to promote vessel leakiness. In this study, we have designed and tested the angiogenic properties of chimeric molecules consisting of receptor-binding parts of VEGF and angiopoietin-1. We aimed at combining the activities of both factors into 1 molecule for easy delivery and expression in target tissues. Methods and Results— The VEGF–angiopoietin-1 (VA1) chimeric protein bound to both VEGF receptor-2 and Tie2 and induced the activation of both receptors. Detailed analysis of VA1 versus VEGF revealed differences in the kinetics of VEGF receptor-2 activation and endocytosis, downstream kinase activation, and VE-cadherin internalization. The delivery of a VA1 transgene into mouse skeletal muscle led to increased blood flow and enhanced angiogenesis. VA1 was also very efficient in rescuing ischemic limb perfusion. However, VA1 induced less plasma protein leakage and myeloid inflammatory cell recruitment than VEGF. Furthermore, angioma-like structures associated with VEGF expression were not observed with VA1. Conclusions— The VEGF–angiopoietin-1 chimera is a potent angiogenic factor that triggers a novel mode of VEGF receptor-2 activation, promoting less vessel leakiness, less tissue inflammation, and better perfusion in ischemic muscle than VEGF. These properties of VA1 make it an attractive therapeutic tool.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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