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[Synergistic mechanism of traditional Chinese medicine based on target combination of PepT1 and PPARα].

Liansheng QiaoYan-Kun ChenGanggang LuoFang LüSijia LiuGongyu LiYanling Zhang

2017PubMedBiochemistry, Genetics and Molecular Biology被引 4

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摘要

Synergistic effect is main pharmacological mechanism of traditional Chinese medicine(TCM). The research method based on the key targets combination is an important method to explore the synergistic effect of TCM. Peptide transporter 1 (PepT1) is an essential target for drug uptake into the bloodstream, accounting for about 50% of the total transporter protein content from the small intestine. Peroxisome proliferator-activated receptor α(PPARα) is the lipid-lowering target of fibrates, which have a good hypolipidemic effect by activating PPARα. It has been reported that PPARα could activate the gene expression of PepT1s, and PPARα agonists can promote the uptake of PepT1 substrates, indicating their synergistic effect. In this paper, PepT1 substrates and PPARα agonists from TCM were discovered, and their synergistic mechanism was also been discussed based on the target combination of PepT1 and PPARα. The support vector machine(SVM) model of PepT1 substrates was first constructed and utilized to predict potential TCM components. Meanwhile, merged pharmacophore and docking model of PPARα agonists was used to screen the potential active ingredients from TCM. According to the analysis results of two groups, the TCM combination of Panax notoginseng and Ganoderma lucidum, as well as TCM combination of P. notoginseng and Salvia miltiorrhiza were identified to have the synergistic mechanism based on target combination of PepT1 and PPARα. In this study, synergistic mechanism of TCM was analyzed for absorption and hypolipidemic effect based on target combination, which provides a new way to explore the synergetic mechanism of TCM related to pharmacokinetics.

引用本文(GB/T 7714)

Liansheng Qiao, Yan-Kun Chen, Ganggang Luo, 等. [Synergistic mechanism of traditional Chinese medicine based on target combination of PepT1 and PPARα].[J]. PubMed, 2017.

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DOI:https://doi.org/10.19540/j.cnki.cjcmm.2017.0096

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