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Updated: May 1, 2026

Reprograming Model of Human Monocyte-derived Macrophages for In-vitro Assays
Published on: April 18, 2025
BMP pathway regulation of and by macrophages
Megha Talati1, James West1, Rinat Zaynagetdinov1
1Department of Medicine, Vanderbilt University, Nashville, Tennessee, United States of America.
Abstract:
Pulmonary arterial hypertension (PAH) is a disease of progressively increasing pulmonary vascular resistance, associated with mutations of the type 2 receptor for the BMP pathway, BMPR2. The canonical signaling pathway for BMPR2 is through the SMAD family of transcription factors. BMPR2 is expressed in every cell type, but the impact of BMPR2 mutations affecting SMAD signaling, such as Bmpr2delx4+, had only previously been investigated in smooth muscle and endothelium. In the present study, we created a mouse with universal doxycycline-inducible expression of Bmpr2delx4+ in order to determine if broader expression had an impact relevant to the development of PAH. We found that the most obvious phenotype was a dramatic, but patchy, increase in pulmonary inflammation. We crossed these double transgenic mice onto an NF-κB reporter strain, and by luciferase assays on live mice, individual organs and isolated macrophages, we narrowed down the origin of the inflammatory phenotype to constitutive activation of tissue macrophages. Study of bone marrow-derived macrophages from mutant and wild-type mice suggested a baseline difference in differentiation state in Bmpr2 mutants. When activated with LPS, both mutant and wild-type macrophages secrete BMP pathway inhibitors sufficient to suppress BMP pathway activity in smooth muscle cells (SMC) treated with conditioned media. Functionally, co-culture with macrophages results in a BMP signaling-dependent increase in scratch closure in cultured SMC. We conclude that SMAD signaling through BMP is responsible, in part, for preventing macrophage activation in both live animals and in cells in culture, and that activated macrophages secrete BMP inhibitors in sufficient quantity to cause paracrine effect on vascular smooth muscle.
Insights
Mutations in BMPR2, crucial for pulmonary arterial hypertension (PAH), lead to increased pulmonary inflammation driven by activated macrophages. These macrophages secrete BMP inhibitors, impacting vascular smooth muscle cells and contributing to PAH development.
Area of Science:
- Molecular Biology
- Immunology
- Cardiovascular Research
Background:
- Pulmonary arterial hypertension (PAH) is linked to BMPR2 mutations affecting SMAD signaling.
- Previous studies focused on BMPR2 mutation impact in smooth muscle and endothelium, not broader expression.
Purpose of the Study:
- Investigate the impact of broader BMPR2 mutation expression on PAH development.
- Determine the cellular origin of inflammation in a novel mouse model.
Main Methods:
- Generated a doxycycline-inducible mouse model for Bmpr2delx4+ expression.
- Utilized NF-κB reporter mice and luciferase assays for inflammation tracking.
- Analyzed bone marrow-derived macrophages and smooth muscle cells in co-culture.
Main Results:
- Induced Bmpr2delx4+ expression caused patchy pulmonary inflammation.
- Inflammation originated from constitutively activated tissue macrophages.
- Macrophages secrete BMP pathway inhibitors affecting smooth muscle cells.
Conclusions:
- BMPR2-SMAD signaling prevents macrophage activation.
- Activated macrophages release BMP inhibitors, influencing vascular smooth muscle cells.
- This pathway contributes to PAH pathogenesis.
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