Selective endothelin A receptor antagonism with sitaxentan reduces neointimal lesion size in a mouse model of intraluminal injury
Author(s)
Type
Journal Article
Abstract
BACKGROUND AND PURPOSE: Endothelin (ET) receptor antagonism reduces neointimal lesion formation in animal models. This investigation addressed the hypothesis that the selective ETA receptor antagonist sitaxentan would be more effective than mixed ETA / B receptor antagonism at inhibiting neointimal proliferation in a mouse model of intraluminal injury. EXPERIMENTAL APPROACH: Antagonism of ETA receptors by sitaxentan (1-100 nM) was assessed in femoral arteries isolated from adult, male C57Bl6 mice using isometric wire myography. Neointimal lesion development was induced by intraluminal injury in mice receiving sitaxentan (ETA antagonist; 15 mg·kg(-1) ·day(-1) ), A192621 (ETB antagonist; 30 mg·kg(-1) ·day(-1) ), the combination of both antagonists or vehicle. Treatment began 1 week before, and continued for 28 days after, surgery. Femoral arteries were then harvested for analysis of lesion size and composition. KEY RESULTS: Sitaxentan produced a selective, concentration-dependent parallel rightward shift of ET-1-mediated contraction in isolated femoral arteries. Sitaxentan reduced neointimal lesion size, whereas ETB and combined ETA / B receptor antagonism did not. Macrophage and α-smooth muscle actin content were unaltered by ET receptor antagonism but sitaxentan reduced the amount of collagen in lesions. CONCLUSIONS AND IMPLICATIONS: These results suggest that ETA receptor antagonism would be more effective than combined ETA /ETB receptor antagonism at reducing neointimal lesion formation.
Date Issued
2015-04-23
Date Acceptance
2015-01-03
Citation
British Journal of Pharmacology, 2015, 172 (11), pp.2827-2837
ISSN
1476-5381
Publisher
Wiley
Start Page
2827
End Page
2837
Journal / Book Title
British Journal of Pharmacology
Volume
172
Issue
11
Copyright Statement
© 2015 The British Pharmacological Society
Subjects
Animals
Disease Models, Animal
Endothelin A Receptor Antagonists
Endothelin B Receptor Antagonists
Femoral Artery
Isoxazoles
Male
Mice
Mice, Inbred C57BL
Muscle Contraction
Muscle, Smooth, Vascular
Myography
Neointima
Pyrrolidines
Thiophenes
Pharmacology & Pharmacy
1115 Pharmacology And Pharmaceutical Sciences
Publication Status
Published