Analysis of the mechanism underlying diabetic wound healing acceleration by Calycosin-7-glycoside using network pharmacology and molecular docking

被引:24
作者
Chen, Jia [1 ,2 ]
Ma, Huike [2 ]
Meng, Yujiao [2 ]
Liu, Qingwu [1 ,2 ]
Wang, Yan [2 ]
Lin, Yan [2 ]
Yang, Danyang [2 ]
Yao, Wentao [2 ]
Wang, Yazhuo [2 ]
He, Xiujuan [2 ]
Li, Ping [1 ,2 ]
机构
[1] Beijing Univ Chinese Med, Beijing 100105, Peoples R China
[2] Capital Med Univ, Beijing Hosp Tradit Chinese Med, Beijing Inst Tradit Chinese Med, 23rd Art Museum Back St,Dongcheng Dist, Beijing 100010, Peoples R China
基金
中国国家自然科学基金;
关键词
Diabetic wound healing; Calycosin-7-glucoside; Mitochondrial metabolism; Macrophage polarization; Network pharmacology; Molecular docking; M2 MACROPHAGE POLARIZATION; FACTOR G-CSF; MITOCHONDRIAL METABOLISM; ASTRAGALUS-MEMBRANACEUS; GM-CSF; ACTIVATION; DYSFUNCTION; REGULATOR; INJURY;
D O I
10.1016/j.phymed.2023.154773
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: Diabetic wounds represent a severe clinical challenge in which impaired M2 macrophage polarization and continuous macrophage glycolysis play crucial roles. Calycosin-7-glucoside (CG) is an isoflavone component in Astragali Radix (AR), which has become a research focus for treating diabetic wounds following reports indicating that it has anti-inflammatory effects. However, the mechanism through which CG can treat diabetic wounds is yet to be deciphered. Purpose: This study aimed to evaluate the therapeutic effect of CG on diabetic wounds and its underlying mechanism. Methods: The potential mechanism underlying the treatment of diabetic wounds by CG was screened using bioinformatics. The therapeutic effects of CG were then investigated using a db/db diabetic wound model. Moreover, an LPS- and IFN-gamma-induced RAW264.7 cell inflammation model was used to elucidate the mechanism underlying the therapeutic effects of CG against diabetic wounds. Results: Network pharmacology predicted that the AMPK pathway could be the main target through which CG treats diabetic wounds. In db/db diabetic mice, CG could accelerate wound healing and promote granulation tissue regeneration. Protein chip technology revealed that CG increased the production of M-CSF, G-CSF, GM-CSF, IL-10, IL-13, and IL-4 but not that of MCP-1, IL-1 beta, IL-1 alpha, TNF-alpha, and TNF-RII. Moreover, CG elevated the proportion of Ly6C(Lo/-) anti-inflammatory monocytes in peripheral blood and M2 macrophages in the wound. The ELISA and flow cytometry analyses revealed that CG enhanced the levels of IL-10, VEGF, CD206, and Arg-1 expression whereas it considerably reduced the levels of IL-1, IL-6, IL-12, TNF-alpha, CD86, and iNOS expression. Meanwhile, CG increased the macrophage mitochondrial membrane potential and decreased the mitochondrial ADP/ATP ratio and glycolysis rate of M1 macrophages through the ROS/AMPK/STAT6 pathway. Conclusions: The network pharmacology and molecular dockin identified the AMPK pathway as a critical pathway for treating diabetic wounds using topical CG application. CG was found to promote anti-inflammatory monocyte recruitment and decrease the mitochondrial glycolysis rate to induce M2 macrophage polarization via the ROS/AMPK/STAT6 pathway. These results suggest that CG might be a promising therapeutic agent for diabetic wounds.
引用
收藏
页数:18
相关论文
共 53 条
[1]   Celastrol attenuates inflammatory responses in adipose tissues and improves skeletal muscle mitochondrial functions in high fat diet-induced obese rats via upregulation of AMPK/SIRT1 signaling pathways [J].
Abu Bakar, Mohamad Hafizi ;
Shariff, Khairul Anuar ;
Tan, Joo Shun ;
Lee, Lai Kuan .
EUROPEAN JOURNAL OF PHARMACOLOGY, 2020, 883
[2]  
Bowers S, 2020, AM FAM PHYSICIAN, V101, P159
[3]   The healing and anti-scar effects of astragaloside IV on the wound repair in vitro and in vivo [J].
Chen, Xi ;
Peng, Li-Hua ;
Li, Ni ;
Li, Qi-Mei ;
Li, Ping ;
Fung, Kwok-Pui ;
Leung, Ping-Chung ;
Gao, Jian-Qing .
JOURNAL OF ETHNOPHARMACOLOGY, 2012, 139 (03) :721-727
[4]  
Chen Yu, 2020, Chinese Medicine, V11, P113, DOI 10.4236/cm.2020.113007
[5]   The Transcription Factor STAT6 Mediates Direct Repression of Inflammatory Enhancers and Limits Activation of Alternatively Polarized Macrophages [J].
Czimmerer, Zsolt ;
Daniel, Bence ;
Horvath, Attila ;
Ruckerl, Dominik ;
Nagy, Gergely ;
Kiss, Mate ;
Peloquin, Matthew ;
Budai, Marietta M. ;
Cuaranta-Monroy, Ixchelt ;
Simandi, Zoltan ;
Steiner, Laszlo ;
Nagy, Bela, Jr. ;
Poliska, Szilard ;
Banko, Csaba ;
Bacso, Zsolt ;
Schulman, Ira G. ;
Sauer, Sascha ;
Deleuze, Jean-Francois ;
Allen, Judith E. ;
Benko, Szilvia ;
Nagy, Laszlo .
IMMUNITY, 2018, 48 (01) :75-+
[6]   Resveratrol accelerates wound healing by inducing M2 macrophage polarisation in diabetic mice [J].
Ding, Youjun ;
Yang, Ping ;
Li, Shiyan ;
Zhang, Hao ;
Ding, Xiaofeng ;
Tan, Qian .
PHARMACEUTICAL BIOLOGY, 2022, 60 (01) :2328-2337
[7]   Review of the Botanical Characteristics, Phytochemistry, and Pharmacology of Astragalus membranaceus (Huangqi) [J].
Fu, Juan ;
Wang, Zenghui ;
Huang, Linfang ;
Zheng, Sihao ;
Wang, Dongmei ;
Chen, Shilin ;
Zhang, Haitao ;
Yang, Shihai .
PHYTOTHERAPY RESEARCH, 2014, 28 (09) :1275-1283
[8]   State policy for managing chronic skin wounds in China [J].
Fu, Xiaobing .
WOUND REPAIR AND REGENERATION, 2020, 28 (04) :576-577
[9]   Molecular control of activation and priming in macrophages [J].
Glass, Christopher K. ;
Natoli, Gioacchino .
NATURE IMMUNOLOGY, 2016, 17 (01) :26-33
[10]  
Gong M, 2017, MED SCI MONIT BASIC, V23, P240, DOI 10.12659/MSMBR.904014