SMAD4 Deficiency Leads to Development of Arteriovenous Malformations in Neonatal and Adult Mice

Author:

Kim Yong Hwan12,Choe Se‐woon3,Chae Min‐Young1,Hong Suntaek14,Oh S. Paul12

Affiliation:

1. Department of Physiology and Functional Genomics College of Medicine University of Florida Gainesville FL

2. Department of Neurobiology Barrow Neurological Institute Phoenix AZ

3. Department of Medical IT Convergence Engineering Kumoh National Institute of Technology Gumi Korea

4. Lee Gil Ya Cancer and Diabetes Institute Gachon University Incheon Korea

Abstract

Background Hereditary hemorrhagic telangiectasia ( HHT ) is a rare genetic vascular disorder caused by mutations in endoglin ( ENG ), activin receptor‐like kinase 1 ( ACVRL 1 ; ALK 1 ), or SMAD 4 . Major clinical symptoms of HHT are arteriovenous malformations ( AVM s) found in the brain, lungs, visceral organs, and mucosal surface. Animal models harboring mutations in Eng or Alk1 recapitulate all of these HHT clinical symptoms and have been useful resources for studying mechanisms and testing potential drugs. However, animal models representing SMAD 4 mutations have been lacking. The goal of this study is to evaluate Smad4 ‐inducible knockout ( iKO ) mice as an animal model of HHT and compare the phenotypes with other established HHT animal models. Methods and Results Global Smad4 deletion was induced at neonatal and adult stages, and hemoglobin levels, gastrointestinal hemorrhage, and presence of aberrant arteriovenous connections were examined. Neonatal Smad4iKO mice exhibited signs of gastrointestinal bleeding and AVM s in the brain, intestine, nose, and retina. The radial expansion was decreased, and AVM s were detected on both distal and proximal retinal vasculature of Smad4iKO s. Aberrant smooth muscle actin staining was observed in the initial stage AVM s and their connecting veins, indicating abnormal arterial flow to veins. In adult mice, Smad4 deficiency caused gastrointestinal bleeding and AVM s along the gastrointestinal tract and wounded skin. HHT ‐related phenotypes of Smad4iKO s appeared to be comparable with those found in Alk1iKO and EngiKO mice. Conclusions These data further confirm that SMAD signaling is crucial for normal arteriovenous network formation, and Smad4iKO will be an alternative animal model of AVM research associated with HHT .

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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