Network pharmacology and molecular docking analysis on potential molecular targets and mechanism of action of BRAF inhibitors for application in wound healing

被引:9
作者
Karhana, Sonali [1 ]
Dabral, Swarna [1 ,2 ]
Garg, Aakriti [1 ,2 ]
Bano, Aysha [1 ]
Agarwal, Nidhi [1 ]
Khan, Mohd. Ashif [1 ,3 ]
机构
[1] Jamia Hamdard, Ctr Translat & Clin Res, Sch Chem & Life Sci, New Delhi, India
[2] Jamia Hamdard, Sch Pharmaceut Educ & Res, Dept Pharmacol, New Delhi, India
[3] Jamia Hamdard, Ctr Translat & Clin Res, Sch Chem & Life Sci, New Delhi 110062, India
关键词
BRAF inhibitors; mechanism of action; molecular docking; network pharmacology; wound healing; ENDOTHELIAL GROWTH-FACTOR; EPITHELIAL-CELLS; ANGIOGENESIS; INFLAMMATION; EXPRESSION; PROGRESS; PATHWAY; CANCER; REPAIR;
D O I
10.1002/jcb.30430
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Topical application of BRAF inhibitors has been shown to accelerate wound healing in murine models, which can be extrapolated into clinical applications. The aim of the study was to identify suitable pharmacological targets of BRAF inhibitors and elucidate their mechanisms of action for therapeutic applicability in wound healing, by employing bioinformatics tools including network pharmacology and molecular docking. The potential targets for BRAF inhibitors were obtained from SwissTargetPrediction, DrugBank, CTD, Therapeutic Target Database, and Binding Database. Targets of wound healing were obtained using online databases DisGeNET and OMIM (Online Mendelian Inheritance in Man). Common targets were found by using the online GeneVenn tool. Common targets were then imported to STRING to construct interaction networks. Topological parameters were assessed using Cytoscape and core targets were identified. FunRich was employed to uncover the signaling pathways, cellular components, molecular functions, and biological processes in which the core targets participate. Finally, molecular docking was performed using MOE software. Key targets for the therapeutic application of BRAF inhibitors for wound healing are peroxisome proliferator-activated receptor gamma, matrix metalloproteinase 9, AKT serine/threonine kinase 1, mammalian target of rapamycin, and Ki-ras2 Kirsten rat sarcoma viral oncogene homolog. The most potent BRAF inhibitors that can be exploited for their paradoxical activity for wound healing applications are Encorafenib and Dabrafenib. By using network pharmacology and molecular docking, it can be predicted that the paradoxical activity of BRAF inhibitors can be used for their potential application in wound healing.
引用
收藏
页码:1023 / 1039
页数:17
相关论文
共 80 条
[1]   Current Insights of BRAF Inhibitors in Cancer [J].
Agianian, Bogos ;
Gavathiotis, Evripidis .
JOURNAL OF MEDICINAL CHEMISTRY, 2018, 61 (14) :5775-5793
[2]  
Akbar A., 2022, IJCAES, V3, P20, DOI [10.15864/ijcaes.3402, DOI 10.15864/IJCAES.3402]
[3]   Evaluation of certain medicinal plants compounds as new potential inhibitors of novel corona virus (COVID-19) using molecular docking analysis [J].
Ayat Ahmed Alrasheid ;
Mazin Yousif Babiker ;
Talal Ahmed Awad .
In Silico Pharmacology, 9 (1)
[4]   Pharmacophore mapping-based virtual screening followed by molecular docking studies in search of potential acetylcholinesterase inhibitors as anti-Alzheimer's agents [J].
Ambure, Pravin ;
Kar, Supratik ;
Roy, Kunal .
BIOSYSTEMS, 2014, 116 :10-20
[5]  
Anderson Kristin, 2012, J Am Coll Clin Wound Spec, V4, P84, DOI 10.1016/j.jccw.2014.03.001
[6]   Sphingosine-1-Phosphate Facilitates Skin Wound Healing by Increasing Angiogenesis and Inflammatory Cell Recruitment with Less Scar Formation [J].
Aoki, Masayo ;
Aoki, Hiroaki ;
Mukhopadhyay, Partha ;
Tsuge, Takuya ;
Yamamoto, Hirofumi ;
Matsumoto, Noriko M. ;
Toyohara, Eri ;
Okubo, Yuri ;
Ogawa, Rei ;
Takabe, Kazuaki .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2019, 20 (14)
[7]   Inflammation and cancer: back to Virchow? [J].
Balkwill, F ;
Mantovani, A .
LANCET, 2001, 357 (9255) :539-545
[8]  
Beg M.R., 2022, Phytomedicine Plus, V2, P100258, DOI [10.1016/j.phyplu.2022.100258, DOI 10.1016/J.PHYPLU.2022.100258]
[9]   A lesson for the maestro of the replication fork: Targeting the protein-binding interface of proliferating cell nuclear antigen for anticancer therapy [J].
Bhardwaj, Vijay Kumar ;
Purohit, Rituraj .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2022, 123 (06) :1091-1102
[10]   Effect of medicinal plants on wound healing [J].
Budovsky, Arie ;
Yarmolinsky, Ludmila ;
Ben-Shabat, Shimon .
WOUND REPAIR AND REGENERATION, 2015, 23 (02) :171-183