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MEK-ERK pathway modulation ameliorates pulmonary fibrosis associated with epidermal growth factor receptor activation
Satish K Madala1, Stephanie Schmidt, Cynthia Davidson
1Department of Pulmonary Medicine, Cincinnati Children's Hospital Medical Center, 3333 Burnet Avenue, Cincinnati, OH 45229, USA.
Abstract:
Pulmonary fibrosis remains a significant public health burden with no proven therapies. The mitogen-activated protein kinase (MAPK)/MAPK kinase (MEK)/extracellular signal-regulated kinase (ERK) signaling cascade is a major pathway controlling cellular processes associated with fibrogenesis, including growth, proliferation, and survival. Activation of the MAPK/ERK pathway is detected in the lungs of human fibrosis samples; however, the effect of modulating the pathway in vivo is unknown. Overexpression of transforming growth factor (TGF)-α in the lung epithelium of transgenic mice causes a progressive pulmonary fibrosis associated with increased MEK/ERK activation localized primarily in mesenchymal cells. To determine the role of the MEK pathway in the induction of TGF-α-induced lung fibrosis, TGF-α was overexpressed for 4 weeks while mice were simultaneously treated with the specific MEK inhibitor, ARRY-142886 (ARRY). Treatment with ARRY prevented increases in lung cell proliferation and total lung collagen, attenuated production of extracellular matrix genes, and protected mice from changes in lung function. ARRY administered as a rescue treatment after fibrosis was already established inhibited fibrosis progression, as assessed by lung histology, changes in body weights, extracellular matrix gene expression, and lung mechanics. These findings demonstrate that MEK inhibition prevents progression of established fibrosis in the TGF-α model, and provides proof of concept of targeting the MEK pathway in fibrotic lung disease.
Insights
Targeting the MEK pathway with ARRY-142886 (ARRY) effectively halts pulmonary fibrosis progression in a mouse model. This study offers a potential new therapeutic strategy for fibrotic lung disease.
Area of Science:
- Pulmonary Medicine
- Molecular Biology
- Pharmacology
Background:
- Pulmonary fibrosis is a significant health issue with limited treatment options.
- The MAPK/MEK/ERK pathway regulates cellular processes crucial for fibrogenesis.
- MEK/ERK activation is observed in human fibrotic lung tissue.
Purpose of the Study:
- To investigate the role of the MEK pathway in TGF-α-induced pulmonary fibrosis.
- To evaluate the efficacy of the MEK inhibitor ARRY-142886 in preventing and treating lung fibrosis.
Main Methods:
- Overexpression of TGF-α in transgenic mice to induce pulmonary fibrosis.
- Simultaneous or rescue treatment with the MEK inhibitor ARRY-142886.
- Assessment of lung histology, cell proliferation, collagen levels, gene expression, and lung function.
Main Results:
- ARRY-142886 treatment prevented increased lung cell proliferation and collagen deposition.
- MEK inhibition attenuated extracellular matrix gene production and preserved lung function.
- ARRY-142886 halted the progression of established fibrosis in the TGF-α mouse model.
Conclusions:
- MEK pathway inhibition is a viable strategy for treating established pulmonary fibrosis.
- ARRY-142886 demonstrates therapeutic potential for fibrotic lung diseases.
- Targeting MEK offers a novel approach to managing lung fibrosis.
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