GM-CSF regulates bleomycin-induced pulmonary fibrosis via a prostaglandin-dependent mechanism

被引:117
作者
Moore, BB [1 ]
Coffey, MJ [1 ]
Christensen, P [1 ]
Sitterding, S [1 ]
Ngan, R [1 ]
Wilke, CA [1 ]
McDonald, R [1 ]
Phare, SM [1 ]
Peters-Golden, M [1 ]
Paine, R [1 ]
Toews, GB [1 ]
机构
[1] Univ Michigan, Sch Med, Dept Internal Med, Div Pulm & Crit Care Med, Ann Arbor, MI 48109 USA
关键词
D O I
10.4049/jimmunol.165.7.4032
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
To characterize the role of GM-CSF in pulmonary fibrosis, we have studied bleomycin-induced fibrosis in wild-type mice vs mice with a targeted deletion of the GM-CSF gene (GM-CSF-/- mice). Without GM-CSF, pulmonary fibrosis was worse both histologically and quantitatively, These changes were not related to enhanced recruitment of inflammatory cells because wild-type and GM-CSF-/- mice recruited equivalent numbers of cells to the lung following bleomycin. Interestingly, recruitment of eosinophils was absent in GM-CSF-/- mice. We investigated whether the enhanced fibrotic response in GM-CSF-/- animals was due to a deficiency in an endogenous down-regulator of fibrogenesis. Analysis of whole lung homogenates from saline- or bleomycin-treated mice revealed that GM-CSF-/- animals had reduced levels of PGE(2). Additionally, alveolar macrophages were harvested from wild-type and GM-CSF-/- mice that had been exposed to bleomycin. Although bleomycin treatment impaired the ability of alveolar macrophages from wild-type mice to synthesize PGE(2), alveolar macrophages from GM-CSF-/- mice exhibited a significantly greater defect in PGE(2) synthesis than did wild-type cells. Exogenous addition of GM-CSF to alveolar macrophages reversed the PGE(2) synthesis defect in vitro. Administration of the PG synthesis inhibitor, indomethacin, to wild-type mice during the fibrogenic phase postbleomycin worsened the severity of fibrosis, implying a causal role for PGE(2) deficiency in the evolution of the fibrotic lesion. These data demonstrate that GM-CSF deficiency results in enhanced fibrogenesis in bleomycin-induced pulmonary fibrosis and indicate that one mechanism for this effect is impaired production of the potent antifibrotic eicosanoid, PGE(2).
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页码:4032 / +
页数:9
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