PLoS ONE (Jan 2014)

A systems biology-based approach to uncovering the molecular mechanisms underlying the effects of dragon's blood tablet in colitis, involving the integration of chemical analysis, ADME prediction, and network pharmacology.

  • Haiyu Xu,
  • Yanqiong Zhang,
  • Yun Lei,
  • Xiumei Gao,
  • Huaqiang Zhai,
  • Na Lin,
  • Shihuan Tang,
  • Rixin Liang,
  • Yan Ma,
  • Defeng Li,
  • Yi Zhang,
  • Guangrong Zhu,
  • Hongjun Yang,
  • Luqi Huang

DOI
https://doi.org/10.1371/journal.pone.0101432
Journal volume & issue
Vol. 9, no. 7
p. e101432

Abstract

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Traditional Chinese medicine (TCM) is one of the oldest East Asian medical systems. The present study adopted a systems biology-based approach to provide new insights relating to the active constituents and molecular mechanisms underlying the effects of dragon's blood (DB) tablets for the treatment of colitis. This study integrated chemical analysis, prediction of absorption, distribution, metabolism, and excretion (ADME), and network pharmacology. Firstly, a rapid, reliable, and accurate ultra-performance liquid chromatography-electrospray ionization-tandem mass spectrometry method was employed to identify 48 components of DB tablets. In silico prediction of the passive absorption of these compounds, based on Caco-2 cell permeability, and their P450 metabolism enabled the identification of 22 potentially absorbed components and 8 metabolites. Finally, networks were constructed to analyze interactions between these DB components/metabolites absorbed and their putative targets, and between the putative DB targets and known therapeutic targets for colitis. This study provided a great opportunity to deepen the understanding of the complex pharmacological mechanisms underlying the effects of DB in colitis treatment.