The mechanism of Qingwen Gupi decoction on pulmonary fibrosis based on metabolomics and intestinal flora

Author:

Gao Chen12,Chang Hong2,Wang Zixuan1,Jia Min1,Li Qian2,Li Xiang2,Shi Songli23,Bu He1

Affiliation:

1. The second affiliated hospital of Baotou medical college , Baotou 014030 , China

2. Department of Pharmacy, Baotou Medical College , Baotou 014060 , China

3. Institute of Bioactive Substance and Function of Mongolian Medicine and Chinese Materia Medica, Baotou Medical College , Baotou 014060 , China

Abstract

AbstractAimsTo evaluate the effects of the Qingwen Gupi decoction (QGT) in a rat model of bleomycin-induced pulmonary fibrosis (PF), and explore the underlying mechanisms by integrating UPLC-Q-TOF/MS metabolomics and 16S rDNA sequencing of gut microbiota.Methods and ResultsThe animals were randomly divided into the control, PF model, pirfenidone-treated, and low-, medium-, and high-dose QGT groups. The lung tissues were examined and the expression of TGF-β, SMAD-3, and SMAD-7 mRNAs in the lung tissues were analyzed. Metabolomic profiles were analyzed by UPLC-QTOF/MS, and the intestinal flora were examined by prokaryotic 16 rDNA sequencing. Pathological examination and biochemical indices revealed that QGT treatment improved the symptoms of PF by varying degrees. Furthermore, QGT significantly downregulated TGF-β1 and Smad-3 mRNAs and increased the expression levels of Smad-7. QGT-L in particular increased the levels of 18 key metabolic biomarkers that were associated with nine gut microbial species and may exert antifibrosis effects through arachidonic acid metabolism, glycerophospholipid metabolism, and phenylalanine metabolism.ConclusionsQGT alleviated PF in a rat model through its anti-inflammatory, antioxidant, and anti-fibrotic effects, and by reversing bleomycin-induced gut dysbiosis.This study lays the foundation for further research on the pathological mechanisms of PF and the development of new drug candidates.

Funder

National Natural Science Foundation of China

Baotou Medical College Innovation Team Development

Talent Project of Inner Mongolia Autonomous Region

Natural Science Foundation of Inner Mongolia Autonomous Region

Scientific Research Fund project of Baotou Medical College

Wu Jieping Medical Foundation

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

Reference61 articles.

1. Protective effect of Pistacia lentiscusoil against bleomycin-induced lung fibrosis and oxidative stress in rat;Abidi;Nutr Cancer,2017

2. Influence of tranexamic acid on inflammatory signaling in trauma;Barrett;Semin Thromb Hemost,2020

3. A metabolomic approach to elucidate the inhibitory effects of baicalin in pulmonary fibrosis;Chang;Pharm Biol,2021

4. Woody forages effect the intestinal bacteria diversity of golden pompano Trachinotus ovatus;Chen;AMB Express,2018

5. Study on active compounds from huoxiang zhengqi oral liquid for prevention of coronavirus disease 2019 (COVID-19) based on network pharmacology and molecular docking;Deng;Chin Tradit Her Drugs,2020

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