Computational approach to decode the mechanism of curcuminoids against neuropathic pain

Curcumin (CUR), demethoxycurcumin (DMC) and bisdemethoxycurcumin (BDMC) are the main components of turmeric that commonly used to treat neuropathic pain (NP). However, the mechanism of the therapy is not sufficiently clarified. Herein, network pharmacology, molecular docking and molecular dynamics (...

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Veröffentlicht in:Computers in biology and medicine 2022-08, Vol.147, p.105739-105739, Article 105739
Hauptverfasser: Xiang, Chunxiao, Chen, Chunlan, Li, Xi, Wu, Yating, Xu, Qing, Wen, Lingmiao, Xiong, Wei, Liu, Yanjun, Zhang, Tinglan, Dou, Chongyang, Ding, Xian, Hu, Lin, Chen, Fangfang, Yan, Zhiyong, Liang, Lingli, Wei, Guihua
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Sprache:eng
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Zusammenfassung:Curcumin (CUR), demethoxycurcumin (DMC) and bisdemethoxycurcumin (BDMC) are the main components of turmeric that commonly used to treat neuropathic pain (NP). However, the mechanism of the therapy is not sufficiently clarified. Herein, network pharmacology, molecular docking and molecular dynamics (MD) approaches were used to investigate the mechanism of curcuminoids for NP treatment. Active targets of curcuminoids were obtained from the Swiss Target database, and NP-related targets were retrieved from GeneCards, OMIM, Drugbank and TTD databases. A protein-protein interaction (PPI) network was built to screen the core targets. Furthermore, DAVID was used for GO and KEGG pathway enrichment analyses. Interactions between potential targets and curcuminoids were assessed by molecular docking and the MD simulations were run for 100ns to validate the docking results on the top six complexes. CUR, DMC, and BDMC had 100, 99 and 100 targets respectively. After overlapping with NP there were 33, 33 and 31 targets respectively. PPI network analysis of TOP 10 core targets, TNF, GSK3β were common targets of curcuminoids. Molecular docking and MD results indicated that curcuminoids bind strongly with the core targets. The GO and KEGG showed that curcuminoids regulated nitrogen metabolism, the serotonergic synapse and ErbB signaling pathway to alleviate NP. Furthermore, specific targets in these three compounds were also analysed at the same time. This study systematically explored and compared the anti-NP mechanism of curcuminoids, providing a novel perspective for their utilization. [Display omitted] •TNF and GSK3β were the common core targets of Curcuminoids.•MMP9, NOS2, and SRC were specific targets of CUR, DMC, and BDMC respectively.•The present study systematically elucidated and compared the different targets and mechanisms of CUR, DMC, and BDMC to alleviate NP due to their different structures for the first time.
ISSN:0010-4825
1879-0534
DOI:10.1016/j.compbiomed.2022.105739