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博来霉素诱导的E前列腺素受体变化改变了成纤维细胞对前列腺素E2的反应。

Bleomycin-induced E prostanoid receptor changes alter fibroblast responses to prostaglandin E2.

作者信息

Moore Bethany B, Ballinger Megan N, White Eric S, Green Maranne E, Herrygers Amy B, Wilke Carol A, Toews Galen B, Peters-Golden Marc

机构信息

Department of Internal Medicine, Division of Pulmonary and Critical Care Medicine, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

J Immunol. 2005 May 1;174(9):5644-9. doi: 10.4049/jimmunol.174.9.5644.

Abstract

Although PGE(2) is a potent inhibitor of fibroblast function, PGE(2) levels are paradoxically elevated in murine lungs undergoing fibrotic responses. Pulmonary fibroblasts from untreated mice expressed all four E prostanoid (EP) receptors for PGE(2). However, following challenge with the fibrogenic agent, bleomycin, fibroblasts showed loss of EP2 expression. Lack of EP2 expression correlated with an inability of fibroblasts from bleomycin-treated mice to be inhibited by PGE(2) in assays of proliferation or collagen synthesis and blunted cAMP elevations in response to PGE(2). PGE(2) was similarly unable to suppress proliferation or collagen synthesis in fibroblasts from EP2(-/-) mice despite expression of the other EP receptors. EP2(-/-), but not EP1(-/-) or EP3(-/-) mice, showed exaggerated fibrotic responses to bleomycin administration in vivo as compared with wild-type controls. EP2 loss on fibroblasts was verified in a second model of pulmonary fibrosis using FITC. Our results for the first time link EP2 receptor loss on fibroblasts following fibrotic lung injury to altered suppression by PGE(2) and thus identify a novel fibrogenic mechanism.

摘要

尽管前列腺素E2(PGE(2))是成纤维细胞功能的有效抑制剂,但在经历纤维化反应的小鼠肺中,PGE(2)水平却反常地升高。未经处理的小鼠的肺成纤维细胞表达PGE(2)的所有四种前列腺素E(EP)受体。然而,在用致纤维化剂博来霉素攻击后,成纤维细胞显示出EP2表达缺失。EP2表达缺失与博来霉素处理的小鼠的成纤维细胞在增殖或胶原蛋白合成测定中无法被PGE(2)抑制以及对PGE(2)反应时cAMP升高减弱相关。尽管表达了其他EP受体,但PGE(2)同样无法抑制EP2基因敲除小鼠的成纤维细胞的增殖或胶原蛋白合成。与野生型对照相比,EP2基因敲除小鼠(而非EP1或EP3基因敲除小鼠)在体内对博来霉素给药表现出过度的纤维化反应。在使用异硫氰酸荧光素(FITC)的肺纤维化第二种模型中验证了成纤维细胞上EP2的缺失。我们的结果首次将纤维化肺损伤后成纤维细胞上EP2受体的缺失与PGE(2)抑制作用的改变联系起来,从而确定了一种新的纤维化机制。

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