Frontiers in Pharmacology (Oct 2022)

The effect of a traditional Chinese quadri-combination therapy and its component quercetin on recurrent spontaneous abortion: A clinical trial, network pharmacology and experiments-based study

  • Jing Zhou,
  • Jing Zhou,
  • Jing Zhou,
  • Lisha Li,
  • Lisha Li,
  • Lisha Li,
  • Xinyao Pan,
  • Xinyao Pan,
  • Xinyao Pan,
  • Jing Wang,
  • Jing Wang,
  • Jing Wang,
  • Qing Qi,
  • Qing Qi,
  • Qing Qi,
  • Hongmei Sun,
  • Hongmei Sun,
  • Hongmei Sun,
  • Chuyu Li,
  • Chuyu Li,
  • Chuyu Li,
  • Ling Wang,
  • Ling Wang,
  • Ling Wang

DOI
https://doi.org/10.3389/fphar.2022.965694
Journal volume & issue
Vol. 13

Abstract

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Objective: To explore the effect and mechanisms of a traditional Chinese quadri-combination therapy [Bushen, Yiqi, Lixue and Yangtai (BYLY)] in treating recurrent spontaneous abortion (RSA).Methods: A clinical trial was conducted to study the effect of BYLY on RSA. Pharmacological network analysis and UPLC-Q/TOF-mass spectrometry (MS) were applied to investigate the key active component in BYLY and potential targets. Cellular experiments based on former results were performed to examine the mechanism of BYLY in the treatment of RSA.Results: Four hundred and eighty participants enrolled in the clinical trial. The results showed that, compared with the use of BYLY or duphaston alone, a combination of duphaston and BYLY could decrease the early abortion rate in RSA (p < 0.001). Network pharmacological analysis indicated that BYLY contained 132 active components and 146 core targets, and the quercetin maybe the key effective component. In vitro experiments found that pretreatment of quercetin at the correct concentration (2 μM) prevented hypoxia-induced viability and proliferation reduction, and apoptosis and mitochondrial dysfunction. Furthermore, quercetin could modulate mitochondrial fission/fusion balance in trophoblasts, and specifically decrease the expression of Drp1 by regulating miR-34a-5p.Conclusion: BYLY could improve pregnancy outcomes of RSA, based on multi-components and multi-targets. The protective effect of quercetin on trophoblasts, through decreasing Drp1 expression via regulating miR-34a-5p, might be one possible effective mechanism.

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