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
Smad4
‐
iKO
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
Smad4
‐
iKO
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
Smad4
‐
iKO
s appeared to be comparable with those found in
Alk1
‐
iKO
and
Eng
‐
iKO
mice.
Conclusions
These data further confirm that
SMAD
signaling is crucial for normal arteriovenous network formation, and
Smad4
‐
iKO
will be an alternative animal model of
AVM
research associated with
HHT
.
Publisher
Ovid Technologies (Wolters Kluwer Health)
Subject
Cardiology and Cardiovascular Medicine
Cited by
38 articles.
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