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Updated: Jan 23, 2026

Suppression of Pro-fibrotic Signaling Potentiates Factor-mediated Reprogramming of Mouse Embryonic Fibroblasts into Induced Cardiomyocytes
Published on: June 3, 2018
Pirfenidone attenuates lung fibrotic fibroblast responses to transforming growth factor-β1
Jin Jin1,2,3, Shinsaku Togo4,5,6, Kotaro Kadoya2,3
1Department of Respiratory and Critical Care Medicine, Beijing Hospital, National Center of Gerontology, Beijing, 100730, People's Republic of China.
Background:
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.
Methods:
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.
Results:
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.
Conclusions:
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.
Insights
Pirfenidone, an antifibrotic drug, reverses fibrotic lung fibroblast activity by regulating collagen triple helix repeat containing protein 1 (CTHRC1). CTHRC1 can predict treatment response and guide new therapies for lung fibrosis.
Area of Science:
- Pulmonary Medicine
- Fibrosis Research
- Pharmacology
Background:
- Pirfenidone is an antifibrotic agent for idiopathic pulmonary fibrosis (IPF).
- It inhibits myofibroblast differentiation in transforming growth factor-β1 (TGF-β1)-induced IPF.
- The precise mechanism of pirfenidone in TGF-β1-induced human fibrotic lung fibroblasts remains unclear.
Purpose of the Study:
- To investigate pirfenidone's effects on TGF-β1-induced human fibrotic lung fibroblasts.
- To evaluate the roles of collagen triple helix repeat containing protein 1 (CTHRC1) and four-and-a-half LIM domain protein 2 (FHL2) as pirfenidone targets.
Main Methods:
- Assessed pirfenidone's impact on lung fibroblasts from fibrotic human lung tissue post-TGF-β1 exposure.
- In vitro assessment of CTHRC1 and FHL2 in mediating collagen gel contraction and fibronectin-directed migration.
Main Results:
- Pirfenidone restored TGF-β1-stimulated collagen gel contraction, migration, and CTHRC1 release in fibrotic fibroblasts.
- Pirfenidone attenuated TGF-β1- and CTHRC1-induced fibroblast activity, modulating BMP-4/Gremlin1, α-smooth muscle actin, fibronectin, and FHL2.
- FHL2 inhibition affected migration and fibronectin but not CTHRC1.
Conclusions:
- Pirfenidone suppresses fibrotic processes by inversely regulating CTHRC1-induced lung fibroblast activity.
- CTHRC1 serves as a predictive biomarker for pirfenidone response in lung fibrosis.
- CTHRC1 presents a potential therapeutic target for developing novel lung fibrosis treatments.
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