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Publication : Integrin β3 inhibition is a therapeutic strategy for supravalvular aortic stenosis.

First Author  Misra A Year  2016
Journal  J Exp Med Volume  213
Issue  3 Pages  451-63
PubMed ID  26858344 Mgi Jnum  J:232801
Mgi Id  MGI:5780244 Doi  10.1084/jem.20150688
Citation  Misra A, et al. (2016) Integrin beta3 inhibition is a therapeutic strategy for supravalvular aortic stenosis. J Exp Med 213(3):451-63
abstractText  The aorta is the largest artery in the body, yet processes underlying aortic pathology are poorly understood. The arterial media consists of circumferential layers of elastic lamellae and smooth muscle cells (SMCs), and many arterial diseases are characterized by defective lamellae and excess SMCs; however, a mechanism linking these pathological features is lacking. In this study, we use lineage and genetic analysis, pharmacological inhibition, explant cultures, and induced pluripotent stem cells (iPSCs) to investigate supravalvular aortic stenosis (SVAS) patients and/or elastin mutant mice that model SVAS. These experiments demonstrate that multiple preexisting SMCs give rise to excess aortic SMCs in elastin mutants, and these SMCs are hyperproliferative and dedifferentiated. In addition, SVAS iPSC-derived SMCs and the aortic media of elastin mutant mice and SVAS patients have enhanced integrin beta3 levels, activation, and downstream signaling, resulting in SMC misalignment and hyperproliferation. Reduced beta3 gene dosage in elastin-null mice mitigates pathological aortic muscularization, SMC misorientation, and lumen loss and extends survival, which is unprecedented. Finally, pharmacological beta3 inhibition in elastin mutant mice and explants attenuates aortic hypermuscularization and stenosis. Thus, integrin beta3-mediated signaling in SMCs links elastin deficiency and pathological stenosis, and inhibiting this pathway is an attractive therapeutic strategy for SVAS.
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