4.7 Article

Circulating BMP9 Protects the Pulmonary Endothelium during Inflammation-induced Lung Injury in Mice

Journal

Publisher

AMER THORACIC SOC
DOI: 10.1164/rccm.202005-1761OC

Keywords

BMP9; BMP signaling in endothelial cells; pulmonary endothelium; lung injury

Funding

  1. British Heart Foundation [PG/17/1/32532, PG/17/58/33134, PG/14/62/31034, PG/12/54/29734, PG/15/39/31519, FS/18/40/33650, RG/19/3/34265, RG/13/4/30107] Funding Source: Medline
  2. NHLBI NIH HHS [R42 HL132742, R01 HL159443, R01 HL142093, R01 HL131910, P01 HL108801] Funding Source: Medline
  3. Wellcome Trust Funding Source: Medline

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The study reveals that endogenous circulating BMP9 is a protective factor for pulmonary endothelium and is downregulated during inflammation. Exogenous BMP9 presents a potential therapy to prevent increased pulmonary endothelial permeability in lung injury.
Rationale: Pulmonary endothelial permeability contributes to the high-permeability pulmonary edema that characterizes acute respiratory distress syndrome. Circulating BMP9 (bone morphogenetic protein 9) is emerging as an important regulator of pulmonary vascular homeostasis. Objectives: To determine whether endogenous BMP9 plays a role in preserving pulmonary endothelial integrity and whether loss of endogenous BMP9 occurs during LPS challenge. Methods: A BMP9-neutralizing antibody was administrated to healthy adult mice, and lung vasculature was examined. Potential mechanisms were delineated by transcript analysis in human lung endothelial cells. The impact of BMP9 administration was evaluated in a murine acute lung injury model induced by inhaled LPS. Levels of BMP9 were measured in plasma from patients with sepsis and from endotoxemic mice. Measurements and Main Results: Subacute neutralization of endogenous BMP9 in mice (N=12) resulted in increased lung vascular permeability (P=0.022), interstitial edema (P=0.0047), and neutrophil extravasation (P=0.029) compared with IgG control treatment (N=6). In pulmonary endothelial cells, BMP9 regulated transcriptome pathways implicated in vascular permeability and cell-membrane integrity. Augmentation of BMP9 signaling in mice (N=8) prevented inhaled LPS-induced lung injury (P=0.0027) and edema (P < 0.0001). In endotoxemic mice (N=12), endogenous circulating BMP9 concentrations were markedly reduced, the causes of which include a transient reduction in hepatic BMP9 mRNA expression and increased elastase activity in plasma. In human patients with sepsis (N=10), circulating concentratons of BMP9 were also markedly reduced (P < 0.0001). Conclusions: Endogenous circulating BMP9 is a pulmonary endothelial-protective factor, downregulated during inflammation. Exogenous BMP9 offers a potential therapy to prevent increased pulmonary endothelial permeability in lung injury.

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