AI Article Synopsis

  • Shuangshen Pingfei formula (SSPF), derived from Renshen Pingfei San, is being studied for its potential to treat pulmonary fibrosis (PF), but its exact mechanism is still unclear.
  • In a rat model of PF induced by bleomycin, the research assessed SSPF's effects through transcriptomic and metabolomic analyses, revealing significant reductions in inflammation and fibrosis.
  • The study found that SSPF affected gene expression and metabolic pathways, particularly arachidonic acid (AA) metabolism, and notably regulated the synthesis of epoxyeicosatrienoic acids (EETs) in the lungs of PF rats.

Article Abstract

As a clinical formula derived from Renshen Pingfei San, Shuangshen Pingfei formula (SSPF) has been used to treat pulmonary fibrosis (PF). However, its in-depth mechanism of action remains unknown. In this study, the effect of SSPF was evaluated by applying a rat model of PF caused by intratracheal drip bleomycin. To characterize the molecular changes related to PF and reveal therapeutic targets for SSPF, we performed transcriptomic and metabolomic analyses on rat lung. Finally, western blotting and qPCR experiments were used to validate the multi-omics results. As a result, a significant reduction in inflammation and fibrosis caused by BLM was observed when SSPF was administered. Widespread changes in gene expression and metabolic programming were observed in the lungs of PF rats through RNA-seq and untargeted metabolomic analysis. Combined transcriptomic and metabolomic analyses revealed the involvement of arachidonic acid (AA) metabolism pathways in PF. Further validation of AA metabolite synthase genes and protein levels showed a significant decrease in the levels of epoxyeicosatrienoic acids (EETs) synthases, including Cyp2j2, Cyp2b1, in the PF lungs. SSPF treatment regulated the above changes in gene expression and metabolic programming, particularly the regulation of EETs. This study is the first to investigate the mechanism of action of SSPF in the treatment of PF from the perspective of regulating the synthesis of EETs in AA metabolism.

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http://dx.doi.org/10.1016/j.intimp.2024.113275DOI Listing

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Article Synopsis
  • Shuangshen Pingfei formula (SSPF), derived from Renshen Pingfei San, is being studied for its potential to treat pulmonary fibrosis (PF), but its exact mechanism is still unclear.
  • In a rat model of PF induced by bleomycin, the research assessed SSPF's effects through transcriptomic and metabolomic analyses, revealing significant reductions in inflammation and fibrosis.
  • The study found that SSPF affected gene expression and metabolic pathways, particularly arachidonic acid (AA) metabolism, and notably regulated the synthesis of epoxyeicosatrienoic acids (EETs) in the lungs of PF rats.
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Integrated proteomics and metabolomics reveal variations in pulmonary fibrosis development and the potential therapeutic effect of Shuangshen Pingfei formula.

J Ethnopharmacol

March 2023

College of Integrated Chinese and Western Medicine, College of Chinese Medicine, Nanjing University of Chinese Medicine, Nanjing, 210023, China. Electronic address:

Ethnopharmacological Relevance: Shuangshen Pingfei formula (SSPF), a Chinese medicine prescription, has been prescribed to alleviate PF. However, little is known about the molecular mechanism underlying PF progression and the regulatory mechanism in SSPF.

Aims Of The Study: To discriminate the molecular alterations underlying the development of pulmonary fibrosis (PF) and reveal the regulatory mechanism of Shuangshen Pingfei formula (SSPF).

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May 2022

College of Integrated Chinese and Western Medicine, College of Chinese Medicine, Nanjing University of Chinese Medicine, Nanjing 210023, China. Electronic address:

Article Synopsis
  • Previous studies found that Shuangshen Pingfei Formula (SSPF) has anti-fibrosis effects, but its biochemical changes weren't fully understood.
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Background: The Shuangshen Pingfei formula (SSPF), a classic Chinese medicine derivative formula, has been shown to exert therapeutic effects on idiopathic pulmonary fibrosis (IPF). However, the quality control compounds of SSPF remain unclear.

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Background: Shuangshen Pingfei San (SPS) is the derivative from the classic formula Renshen Pingfei San in treating idiopathic pulmonary fibrosis (IPF).

Methods: In this study, Chou's 5-steps rule was performed to explore the potential active compound and mechanism of SPS on IPF. Compound-target network, target- pathway network, herb-target network and the core gene target interaction network were established and analyzed.

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