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Published on: January 16, 2013
Chronic allergic inflammation causes vascular remodeling and pulmonary hypertension in BMPR2 hypomorph and wild-type
Elizabeth M Mushaben1, Gurjit Khurana Hershey, Michael W Pauciulo
1Division of Pulmonary Biology, Cincinnati Children's Hospital Medical Center, Department of Pediatrics, University of Cincinnati, Cincinnati, Ohio, United States of America.
Abstract:
Loss-of-function mutations in the bone morphogenetic protein receptor type 2 (BMPR2) gene have been identified in patients with heritable pulmonary arterial hypertension (PAH); however, disease penetrance is low, suggesting additional factors play a role. Inflammation is associated with PAH and vascular remodeling, but whether allergic inflammation triggers vascular remodeling in individuals with BMPR2 mutations is unknown. Our goal was to determine if chronic allergic inflammation would induce more severe vascular remodeling and PAH in mice with reduced BMPR-II signaling. Groups of Bmpr2 hypomorph and wild-type (WT) Balb/c/Byj mice were exposed to house dust mite (HDM) allergen, intranasally for 7 or 20 weeks to generate a model of chronic inflammation. HDM exposure induced similar inflammatory cell counts in all groups compared to controls. Muscularization of pulmonary arterioles and arterial wall thickness were increased after 7 weeks HDM, more severe at 20 weeks, but similar in both groups. Right ventricular systolic pressure (RVSP) was measured by direct cardiac catheterization to assess PAH. RVSP was similarly increased in both HDM exposed groups after 20 weeks compared to controls, but not after 7 weeks. Airway hyperreactivity (AHR) to methacholine was also assessed and interestingly, at 20 weeks, was more severe in HDM exposed Bmpr2 hypomorph mice versus WT. We conclude that chronic allergic inflammation caused PAH and while the severity was mild and similar between WT and Bmpr2 hypomorph mice, AHR was enhanced with reduced BMPR-II signaling. These data suggest that vascular remodeling and PAH resulting from chronic allergic inflammation occurs independently of BMPR-II pathway alterations.
Insights
Chronic allergic inflammation caused pulmonary arterial hypertension (PAH) similarly in mice with and without BMPR2 mutations. However, reduced BMPR-II signaling worsened airway hyperreactivity, suggesting distinct pathways for inflammation-induced PAH and AHR.
Area of Science:
- Pulmonary Hypertension Research
- Allergic Inflammation Mechanisms
- Vascular Remodeling
Background:
- Loss-of-function mutations in BMPR2 are linked to heritable pulmonary arterial hypertension (PAH), but low penetrance suggests other factors are involved.
- Allergic inflammation is associated with PAH and vascular remodeling, yet its role in individuals with BMPR2 mutations is unclear.
Purpose of the Study:
- To investigate if chronic allergic inflammation exacerbates vascular remodeling and PAH in mice with reduced BMPR-II signaling.
- To model chronic allergic inflammation using house dust mite (HDM) exposure in Bmpr2 hypomorph and wild-type mice.
Main Methods:
- Mice (Bmpr2 hypomorph and WT) were exposed intranasally to HDM for 7 or 20 weeks.
- Inflammatory cell counts, pulmonary arteriole muscularization, arterial wall thickness, and right ventricular systolic pressure (RVSP) were assessed.
- Airway hyperreactivity (AHR) to methacholine was measured.
Main Results:
- HDM exposure increased pulmonary vascular remodeling and RVSP similarly in both groups after 20 weeks, indicating PAH development independent of BMPR-II status.
- Inflammatory cell counts were comparable between groups.
- AHR was significantly more severe in HDM-exposed Bmpr2 hypomorph mice compared to WT mice after 20 weeks.
Conclusions:
- Chronic allergic inflammation induces mild pulmonary arterial hypertension and vascular remodeling independently of BMPR-II pathway alterations.
- Reduced BMPR-II signaling potentiates airway hyperreactivity in the context of chronic allergic inflammation.
- These findings differentiate the mechanisms underlying inflammation-induced PAH and AHR.
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