4.7 Article

Yangyinqingfei decoction attenuates PM2.5-induced lung injury by enhancing arachidonic acid metabolism

期刊

FRONTIERS IN PHARMACOLOGY
卷 13, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fphar.2022.1056078

关键词

Yangyinqingfei decoction; lung injury; proteomics; metabolomics; arachidonic acid metabolism

资金

  1. Opened-end Fund of Key Laboratory
  2. Zhejiang Key Laboratory of Pathophysiology [KFJJ-202101]
  3. Public Project of Ningbo [201810]
  4. Ningbo University [202002N3167]

向作者/读者索取更多资源

The traditional Chinese prescription, Yangyinqingfei Decoction (YYQFD), has been found to improve pulmonary functions, decrease levels of inflammatory mediators, and regulate fatty acid metabolism and antioxidant systems, thereby providing a potential therapeutic approach for respiratory diseases caused by air pollutants.
Yangyinqingfei Decoction (YYQFD), a traditional Chinese prescription, is well known in the treatment of diphtheria and lung-related diseases in clinic. However, whether it can be used to block the lung injury caused by air pollutant remains unclear. In the present study, the effect of YYQFD was addressed using a PM2.5-induced lung injury mice model. It was shown that YYQFD significantly improved pulmonary functions of mice exposed to PM2.5, the levels of IL-6, TNF-alpha and MDA were decreased while SOD levels were increased in serum and bronchoalveolar fluid. The potential mechanism of YYQFD was then delved using metabolomic and proteomic techniques. The protein-metabolite joint analysis showed that YYQFD regulated the biosynthesis of unsaturated fatty acids, linoleic acid and arachidonic acid metabolism, causing a significant decrement of pro-inflammatory mediator arachidonic acid with its downstream metabolites like 20-HETE, prostaglandin E-2, accompanied by the up-regulation of PTGES2, GPX2 and CBR3 in lung tissue. These data were used to construct a regulatory metabolic network map in terms of the therapeutic role of YYQFD in PM2.5-induced lung injury, thereby provided a novel insight into potential application in the respiratory diseases caused by air pollutants.

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