ArticleMolecular and cellular biochemistry2022
Linagliptin ameliorates pulmonary fibrosis in systemic sclerosis mouse model via inhibition of endothelial-to-mesenchymal transition.
Article in Molecular and cellular biochemistry, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- ILK-Dependent Modulation of DPP4 Prevents Progression of Calcific Aortic Valve Disease.Arteriosclerosis, thrombosis, and vascular biology · 2026Article
- The Role of Dipeptidyl Peptidase Inhibitors in Pulmonary Diseases.Biomedicines · 2026Review
- Endothelial-Mesenchymal transition in cerebrovascular diseases: molecular mechanisms and promising pharmacological strategies.Molecular biology reports · 2026Review
- The Endothelial Cell Perspective in Pulmonary Fibrosis: From Cell Fate Decisions, Intercellular Communication, and EndoMT to Emerging Therapies.Canadian respiratory journal · 2026Review
- Emerging delivery approaches for targeted pulmonary fibrosis treatment.Advanced drug delivery reviews · 2024Review
- Involvement of Epithelial-Mesenchymal Transition (EMT) in Autoimmune Diseases.International journal of molecular sciences · 2023Review
- Injured Endothelial Cell: A Risk Factor for Pulmonary Fibrosis.International journal of molecular sciences · 2023Review
- Ginsenoside Rg3 attenuates pulmonary fibrosis by inhibiting endothelial to mesenchymal transition.Animal cells and systems · 2023Article
Corrections and comments
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Authors and funding
4 authors.
Funding
Abstract
Systemic sclerosis (SSc) is a connective tissue disease that often causes pulmonary fibrosis. Dipeptidyl peptidase 4 (DPP4) inhibitor has shown anti-fibrotic properties in various fibrotic diseases. However, only two studies have reported its anti-fibrosis effects in pulmonary fibrosis, and the mechanism is not completely clear. In the present study, we further investigated the protective effects of linagliptin, a highly specific DPP4 inhibitor, on pulmonary fibrosis in SSc mouse model and the potential mechanisms. The results showed that linagliptin ameliorated pulmonary fibrosis in SSc mouse model, as evidenced by improved pathological changes of lung and body weight loss induced by BLM. Linagliptin also reduced BLM-induced oxidative stress, inflammation in lung in vivo. We revealed that linagliptin attenuated BLM-induced endothelial-to-mesenchymal transition (EndMT) in vitro and in vivo. BLM-induced enhanced migration ability of endothelial cells was also alleviated by linagliptin. Moreover, we confirmed that the Akt/mammalian target of rapamycin pathway was involved in BLM-induced EndMT in vivo, which was suppressed by linagliptin. In summary, we further confirmed the therapeutic effects of linagliptin on pulmonary fibrosis in SSc mouse model, which is based on its inhibitory effects on EndMT, oxidative stress, and inflammation.
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Registered trials
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