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Combined metabolomics and network pharmacology to elucidate the mechanisms of Dracorhodin Perchlorate in treating diabetic foot ulcer rats

Background: Diabetic foot ulcer (DFU) is a severe chronic complication of diabetes, that can result in disability or death. Dracorhodin Perchlorate (DP) is effective for treating DFU, but the potential mechanisms need to be investigated. We aimed to explore the mechanisms underlying the acceleration...

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Autores principales: Deng, Pin, Liang, Huan, Wang, Shulong, Hao, Ruinan, Han, Jinglu, Sun, Xiaojie, Pan, Xuyue, Li, Dongxiao, Wu, Yinwen, Huang, Zhichao, Xue, Jiajia, Chen, Zhaojun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9752146/
https://www.ncbi.nlm.nih.gov/pubmed/36532755
http://dx.doi.org/10.3389/fphar.2022.1038656
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author Deng, Pin
Liang, Huan
Wang, Shulong
Hao, Ruinan
Han, Jinglu
Sun, Xiaojie
Pan, Xuyue
Li, Dongxiao
Wu, Yinwen
Huang, Zhichao
Xue, Jiajia
Chen, Zhaojun
author_facet Deng, Pin
Liang, Huan
Wang, Shulong
Hao, Ruinan
Han, Jinglu
Sun, Xiaojie
Pan, Xuyue
Li, Dongxiao
Wu, Yinwen
Huang, Zhichao
Xue, Jiajia
Chen, Zhaojun
author_sort Deng, Pin
collection PubMed
description Background: Diabetic foot ulcer (DFU) is a severe chronic complication of diabetes, that can result in disability or death. Dracorhodin Perchlorate (DP) is effective for treating DFU, but the potential mechanisms need to be investigated. We aimed to explore the mechanisms underlying the acceleration of wound healing in DFU by the topical application of DP through the combination of metabolomics and network pharmacology. Methods: A DFU rat model was established, and the rate of ulcer wound healing was assessed. Different metabolites were found in the skin tissues of each group, and MetaboAnalyst was performed to analyse metabolic pathways. The candidate targets of DP in the treatment of DFU were screened using network pharmacology. Cytoscape was applied to construct an integrated network of metabolomics and network pharmacology. Moreover, the obtained hub targets were validated using molecular docking. After the topical application of DP, blood glucose, the rate of wound healing and pro-inflammatory cytokine levels were assessed. Results: The levels of IL-1, hs-CRP and TNF-α of the Adm group were significantly downregulated. A total of 114 metabolites were identified. These could be important to the therapeutic effects of DP in the treatment of DFU. Based on the network pharmacology, seven hub genes were found, which were partially consistent with the metabolomics results. We focused on four hub targets by further integrated analysis, namely, PAH, GSTM1, DHFR and CAT, and the crucial metabolites and pathways. Molecular docking results demonstrated that DP was well combined with the hub targets. Conclusion: Our research based on metabolomics and network pharmacology demonstrated that DP improves wound healing in DFU through multiple targets and pathways, and it can potentially be used for DFU treatment.
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spelling pubmed-97521462022-12-16 Combined metabolomics and network pharmacology to elucidate the mechanisms of Dracorhodin Perchlorate in treating diabetic foot ulcer rats Deng, Pin Liang, Huan Wang, Shulong Hao, Ruinan Han, Jinglu Sun, Xiaojie Pan, Xuyue Li, Dongxiao Wu, Yinwen Huang, Zhichao Xue, Jiajia Chen, Zhaojun Front Pharmacol Pharmacology Background: Diabetic foot ulcer (DFU) is a severe chronic complication of diabetes, that can result in disability or death. Dracorhodin Perchlorate (DP) is effective for treating DFU, but the potential mechanisms need to be investigated. We aimed to explore the mechanisms underlying the acceleration of wound healing in DFU by the topical application of DP through the combination of metabolomics and network pharmacology. Methods: A DFU rat model was established, and the rate of ulcer wound healing was assessed. Different metabolites were found in the skin tissues of each group, and MetaboAnalyst was performed to analyse metabolic pathways. The candidate targets of DP in the treatment of DFU were screened using network pharmacology. Cytoscape was applied to construct an integrated network of metabolomics and network pharmacology. Moreover, the obtained hub targets were validated using molecular docking. After the topical application of DP, blood glucose, the rate of wound healing and pro-inflammatory cytokine levels were assessed. Results: The levels of IL-1, hs-CRP and TNF-α of the Adm group were significantly downregulated. A total of 114 metabolites were identified. These could be important to the therapeutic effects of DP in the treatment of DFU. Based on the network pharmacology, seven hub genes were found, which were partially consistent with the metabolomics results. We focused on four hub targets by further integrated analysis, namely, PAH, GSTM1, DHFR and CAT, and the crucial metabolites and pathways. Molecular docking results demonstrated that DP was well combined with the hub targets. Conclusion: Our research based on metabolomics and network pharmacology demonstrated that DP improves wound healing in DFU through multiple targets and pathways, and it can potentially be used for DFU treatment. Frontiers Media S.A. 2022-11-18 /pmc/articles/PMC9752146/ /pubmed/36532755 http://dx.doi.org/10.3389/fphar.2022.1038656 Text en Copyright © 2022 Deng, Liang, Wang, Hao, Han, Sun, Pan, Li, Wu, Huang, Xue and Chen. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Deng, Pin
Liang, Huan
Wang, Shulong
Hao, Ruinan
Han, Jinglu
Sun, Xiaojie
Pan, Xuyue
Li, Dongxiao
Wu, Yinwen
Huang, Zhichao
Xue, Jiajia
Chen, Zhaojun
Combined metabolomics and network pharmacology to elucidate the mechanisms of Dracorhodin Perchlorate in treating diabetic foot ulcer rats
title Combined metabolomics and network pharmacology to elucidate the mechanisms of Dracorhodin Perchlorate in treating diabetic foot ulcer rats
title_full Combined metabolomics and network pharmacology to elucidate the mechanisms of Dracorhodin Perchlorate in treating diabetic foot ulcer rats
title_fullStr Combined metabolomics and network pharmacology to elucidate the mechanisms of Dracorhodin Perchlorate in treating diabetic foot ulcer rats
title_full_unstemmed Combined metabolomics and network pharmacology to elucidate the mechanisms of Dracorhodin Perchlorate in treating diabetic foot ulcer rats
title_short Combined metabolomics and network pharmacology to elucidate the mechanisms of Dracorhodin Perchlorate in treating diabetic foot ulcer rats
title_sort combined metabolomics and network pharmacology to elucidate the mechanisms of dracorhodin perchlorate in treating diabetic foot ulcer rats
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9752146/
https://www.ncbi.nlm.nih.gov/pubmed/36532755
http://dx.doi.org/10.3389/fphar.2022.1038656
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