Antagonism of the Thromboxane-Prostanoid Receptor as a Potential Therapy for Cardiomyopathy of Muscular Dystrophy
James D West1, Cristi L Galindo2, Kyungsoo Kim3
1Division of Allergy, Pulmonary, and Critical Care Vanderbilt University Medical Center Nashville TN.
Insights
Thromboxane-prostanoid receptor (TPr) antagonism improved survival and cardiac function in mouse models of muscular dystrophy (MD). This suggests TPr antagonists like ifetroban may treat MD-related cardiomyopathy.
Area of Science:
- Cardiology
- Genetics
- Pharmacology
Background:
- Muscular dystrophy (MD) leads to progressive cardiomyopathy, fibrosis, and heart failure.
- Thromboxane-prostanoid receptor (TPr) activation exacerbates cardiac dysfunction and fibrosis.
Purpose of the Study:
- To investigate if TPr antagonism mitigates cardiac pathology in MD mouse models.
- To assess if TPr antagonists improve cardiac fibrosis and function in MD.
Main Methods:
- Three MD mouse models (mdx/utrn, mdx/mTR, delta-sarcoglycan knockout) were treated with TPr antagonist ifetroban or placebo.
- Cardiac and skeletal muscle function were evaluated after 6 months (or 10 weeks for mdx/utrn).
Main Results:
- Ifetroban treatment significantly improved survival rates across all MD models.
- TPr antagonism enhanced cardiac output and normalized key cardiac function parameters.
- Cardiac fibrosis was reduced, and specific protein expressions were normalized in treated mice.
Conclusions:
- TPr antagonism effectively reduced cardiomyopathy and mortality in preclinical MD models.
- Ifetroban and other TPr antagonists show potential as novel therapeutics for MD-associated heart disease.
Abstract:
Background Muscular dystrophy (MD) causes a progressive cardiomyopathy characterized by diffuse fibrosis, arrhythmia, heart failure, and early death. Activation of the thromboxane-prostanoid receptor (TPr) increases calcium transients in cardiomyocytes and is proarrhythmic and profibrotic. We hypothesized that TPr activation contributes to the cardiac phenotype of MD, and that TPr antagonism would improve cardiac fibrosis and function in preclinical models of MD. Methods and Results Three different mouse models of MD (mdx/utrn double knockout, second generation mdx/mTR double knockout, and delta-sarcoglycan knockout) were given normal drinking water or water containing 25 mg/kg per day of the TPr antagonist ifetroban, beginning at weaning. After 6 months (10 weeks for mdx/utrn double knockout), mice were evaluated for cardiac and skeletal muscle function before euthanization. There was a 100% survival rate of ifetroban-treated mice to the predetermined end point, compared with 60%, 43%, and 90% for mdx/utrn double knockout, mdx/mTR double knockout, and delta-sarcoglycan knockout mice, respectively. TPr antagonism improved cardiac output in mdx/utrn double knockout and mdx/mTR mice, and normalized fractional shortening, ejection fraction, and other parameters in delta-sarcoglycan knockout mice. Cardiac fibrosis in delta-sarcoglycan knockout was reduced with TPr antagonism, which also normalized cardiac expression of claudin-5 and neuronal nitric oxide synthase proteins and multiple signature genes of Duchenne MD. Conclusions TPr antagonism reduced cardiomyopathy and spontaneous death in mouse models of Duchenne and limb-girdle MD. Based on these studies, ifetroban and other TPr antagonists could be novel therapeutics for treatment of the cardiac phenotype in patients with MD.
Related Concept Videos
Directly Acting Muscle Relaxants: Dantrolene and Botulinum Toxin
The binding of dantrolene to the RYR1...
Treatment for Pulmonary Arterial Hypertension: Endothelin Receptor Antagonists
ETs are synthesized through a complex sequence of enzymatic steps, primarily involving an enzyme referred to as endothelin-converting enzyme...
Myocarditis III: Medical Management
Cardiomyopathy V: Interprofessional Care
Cardiomyopathy II: Dilated Cardiomyopathy
Satellite Stem Cells and Muscular Dystrophy


