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Published on: February 11, 2017
Increased MAO-A Activity Promotes Progression of Pulmonary Arterial Hypertension
Xiao-Qing Sun1, Eva L Peters1,2, Ingrid Schalij1
1Department of Pulmonary Medicine, Amsterdam Cardiovascular Sciences Research Institute, and.
Abstract:
Monoamine oxidases (MAOs), a class of enzymes bound to the outer mitochondrial membrane, are important sources of reactive oxygen species. Increased MAO-A activity in endothelial cells and cardiomyocytes contributes to vascular dysfunction and progression of left heart failure. We hypothesized that inhibition of MAO-A can be used to treat pulmonary arterial hypertension (PAH) and right ventricular (RV) failure. MAO-A levels in lung and RV samples from patients with PAH were compared with levels in samples from donors without PAH. Experimental PAH was induced in male Sprague-Dawley rats by using Sugen 5416 and hypoxia (SuHx), and RV failure was induced in male Wistar rats by using pulmonary trunk banding (PTB). Animals were randomized to receive either saline or the MAO-A inhibitor clorgyline at 10 mg/kg. Echocardiography and RV catheterization were performed, and heart and lung tissues were collected for further analysis. We found increased MAO-A expression in the pulmonary vasculature of patients with PAH and in experimental experimental PAH induced by SuHx. Cardiac MAO-A expression and activity was increased in SuHx- and PTB-induced RV failure. Clorgyline treatment reduced RV afterload and pulmonary vascular remodeling in SuHx rats through reduced pulmonary vascular proliferation and oxidative stress. Moreover, clorgyline improved RV stiffness and relaxation and reversed RV hypertrophy in SuHx rats. In PTB rats, clorgyline had no direct clorgyline had no direct effect on the right ventricle effect. Our study reveals the role of MAO-A in the progression of PAH. Collectively, these findings indicated that MAO-A may be involved in pulmonary vascular remodeling and consecutive RV failure.
Insights
Monoamine oxidase-A (MAO-A) is elevated in pulmonary arterial hypertension (PAH) and contributes to right ventricular (RV) failure. Inhibiting MAO-A may offer a novel therapeutic strategy for PAH and associated RV dysfunction.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Pulmonary Hypertension
Background:
- Monoamine oxidases (MAOs) are mitochondrial enzymes generating reactive oxygen species.
- Increased MAO-A activity is linked to endothelial dysfunction and heart failure progression.
Purpose of the Study:
- To investigate the role of MAO-A in pulmonary arterial hypertension (PAH) and right ventricular (RV) failure.
- To evaluate the therapeutic potential of MAO-A inhibition in experimental PAH and RV failure models.
Main Methods:
- Compared MAO-A levels in human PAH patient samples versus controls.
- Induced experimental PAH (Sugen 5416/hypoxia) and RV failure (pulmonary trunk banding) in rats.
- Administered the MAO-A inhibitor clorgyline and assessed hemodynamic, structural, and molecular changes.
Main Results:
- Elevated MAO-A expression observed in human PAH pulmonary vasculature and experimental PAH models.
- MAO-A levels and activity increased in RV failure models.
- Clorgyline treatment attenuated pulmonary vascular remodeling, proliferation, and oxidative stress in experimental PAH.
- Clorgyline improved RV function, stiffness, relaxation, and reversed hypertrophy in SuHx-induced PAH rats.
Conclusions:
- MAO-A plays a significant role in the progression of PAH and associated RV failure.
- MAO-A inhibition demonstrates therapeutic potential for pulmonary vascular remodeling and RV dysfunction in PAH.
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