Pirfenidone attenuates lung fibrotic fibroblast responses to transforming growth factor-β1

Pirfenidone, an antifibrotic agent used for the treatment of idiopathic pulmonary fibrosis (IPF), functions by inhibiting myofibroblast differentiation, which is involved in transforming growth factor (TGF)-β1-induced IPF pathogenesis. However, unlike normal lung fibroblasts, the relationship betwee...

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Veröffentlicht in:Respiratory research 2019-06, Vol.20 (1), p.119-119, Article 119
Hauptverfasser: Jin, Jin, Togo, Shinsaku, Kadoya, Kotaro, Tulafu, Miniwan, Namba, Yukiko, Iwai, Moe, Watanabe, Junko, Nagahama, Kumi, Okabe, Takahiro, Hidayat, Moulid, Kodama, Yuzo, Kitamura, Hideya, Ogura, Takashi, Kitamura, Norikazu, Ikeo, Kazuho, Sasaki, Shinichi, Tominaga, Shigeru, Takahashi, Kazuhisa
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Sprache:eng
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Zusammenfassung:Pirfenidone, an antifibrotic agent used for the treatment of idiopathic pulmonary fibrosis (IPF), functions by inhibiting myofibroblast differentiation, which is involved in transforming growth factor (TGF)-β1-induced IPF pathogenesis. However, unlike normal lung fibroblasts, the relationship between pirfenidone responses of TGF-β1-induced human fibrotic lung fibroblasts and lung fibrosis has not been elucidated. The effects of pirfenidone were evaluated in lung fibroblasts isolated from fibrotic human lung tissues after TGF-β1 exposure. The ability of two new pharmacological targets of pirfenidone, collagen triple helix repeat containing protein 1(CTHRC1) and four-and-a-half LIM domain protein 2 (FHL2), to mediate contraction of collagen gels and migration toward fibronectin were assessed in vitro. Compared to control lung fibroblasts, pirfenidone significantly restored TGF-β1-stimulated fibroblast-mediated collagen gel contraction, migration, and CTHRC1 release in lung fibrotic fibroblasts. Furthermore, pirfenidone attenuated TGF-β1- and CTHRC1-induced fibroblast activity, upregulation of bone morphogenic protein-4(BMP-4)/Gremlin1, and downregulation of α-smooth muscle actin, fibronectin, and FHL2, similar to that observed post-CTHRC1 inhibition. In contrast, FHL2 inhibition suppressed migration and fibronectin expression, but did not downregulate CTHRC1. Overall, pirfenidone suppressed fibrotic fibroblast-mediated fibrotic processes via inverse regulation of CTHRC1-induced lung fibroblast activity. Thus, CTHRC1 can be used for predicting pirfenidone response and developing new therapeutic targets for lung fibrosis.
ISSN:1465-993X
1465-9921
1465-993X
1465-9921
DOI:10.1186/s12931-019-1093-z