ANG2 Blockade Diminishes Proangiogenic Cerebrovascular Defects Associated With Models of Hereditary Hemorrhagic Telangiectasia

Author:

Zhou Xingyan1ORCID,Pucel Jenna C.1,Nomura-Kitabayashi Aya2,Chandakkar Pallavi2,Guidroz Adella P.1ORCID,Jhangiani Nikita L.1ORCID,Bao Duran3ORCID,Fan Jia3,Arthur Helen M.4ORCID,Ullmer Christoph5,Klein Christian6,Marambaud Philippe27ORCID,Meadows Stryder M.18ORCID

Affiliation:

1. Cell and Molecular Biology Department, Tulane University, New Orleans (X.Z., J.C.P., A.P.G., N.L.J., S.M.M.).

2. Litwin-Zucker Alzheimer’s Research Center, The Feinstein Institutes for Medical Research, Northwell Health, Manhasset, NY (A.N.-K., P.C., P.M.).

3. Biochemistry and Molecular Biology Department, Tulane University School of Medicine, New Orleans, LA (D.B., J.F.).

4. Biosciences Institute, Center for Life, Newcastle University, United Kingdom (H.M.A.).

5. Roche Innovation Center, Basel, Switzerland (C.U.).

6. Roche Innovation Center, Zurich, Switzerland (C.K.).

7. Donald and Barbara Zucker School of Medicine at Hofstra/Northwell, Hempstead, NY (P.M.).

8. Tulane Brain Institute, Tulane University, New Orleans, LA (S.M.M.).

Abstract

BACKGROUND: Hereditary hemorrhagic telangiectasia (HHT) is a vascular disorder characterized by arteriovenous malformations and blood vessel enlargements. However, there are no effective drug therapies to combat arteriovenous malformation formation in patients with HHT. Here, we aimed to address whether elevated levels of ANG2 (angiopoietin-2) in the endothelium is a conserved feature in mouse models of the 3 major forms of HHT that could be neutralized to treat brain arteriovenous malformations and associated vascular defects. In addition, we sought to identify the angiogenic molecular signature linked to HHT. METHODS: Cerebrovascular defects, including arteriovenous malformations and increased vessel calibers, were characterized in mouse models of the 3 common forms of HHT using transcriptomic and dye injection labeling methods. RESULTS: Comparative RNA sequencing analyses of isolated brain endothelial cells revealed a common, but unique proangiogenic transcriptional program associated with HHT. This included a consistent upregulation in cerebrovascular expression of ANG2 and downregulation of its receptor Tyr kinase with Ig and EGF homology domains (TIE2/TEK) in HHT mice compared with controls. Furthermore, in vitro experiments revealed TEK signaling activity was hampered in an HHT setting. Pharmacological blockade of ANG2 improved brain vascular pathologies in all HHT models, albeit to varying degrees. Transcriptomic profiling further indicated that ANG2 inhibition normalized the brain vasculature by impacting a subset of genes involved in angiogenesis and cell migration processes. CONCLUSIONS: Elevation of ANG2 in the brain vasculature is a shared trait among the mouse models of the common forms of HHT. Inhibition of ANG2 activity can significantly limit or prevent brain arteriovenous malformation formation and blood vessel enlargement in HHT mice. Thus, ANG2-targeted therapies may represent a compelling approach to treat arteriovenous malformations and vascular pathologies related to all forms of HHT.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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