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Unveiling the Anti-Cholera and Active Diabetic Renoprotective Compounds of Maqian Essential Oil: A Computational and Molecular Dynamics Study
Dahab, Mahmoud; Zhang, Ping1; Al-Mijalli, Samiah Hamad; Abdallah, Emad M.
2023
Source PublicationMOLECULES
ISSN1420-3049
Volume28Issue:24Pages:-
Abstract

Cholera is an exceptionally aggressive infectious disease characterized by the potential to induce acute, copious, watery diarrhea of considerable severity and renal inflammation. Diabetic nephropathy is a serious complication of diabetes mellitus that can lead to kidney failure through inflammation; thus, anti-inflammatory agents are promising therapies for diabetic nephropathy. Previous studies have shown that the essential oil of Zanthoxylum myriacanthum var. pubescens Huang, Maqian essential oil (MQEO), exhibits potent antibacterial, anti-inflammatory, and renoprotective activities in diabetic mice and has emerged as a potential therapeutic drug for the treatment of diabetic nephropathy complications. Therefore, the present study was carried out to screen the potential inhibition of cholera toxin and the diabetic renoprotective activity of MQEO through computational approaches. Twelve chemical constituents derived from MQEO were docked with cholera toxin and the target proteins involved in diabetic nephropathy, namely, TXNIP, Nrf2, and DPP IV, and, subsequently, the predictions of molecular dynamic simulations, the drug-likeness properties, and the ADMET properties were performed. alpha-terpineol showed high binding affinities toward the cholera toxin protein. For TXNIP, among all the chemical constituents, alpha-phellandrene and p-cymene showed strong binding affinities with the TXNIP protein and displayed relatively stable flexibility at the hinge regions of the protein, favorable physicochemical properties in the absence of hepatotoxicity, and low cytotoxicity. For Nrf2, alpha-terpineol exhibited the highest binding affinity and formed a very stable complex with Nrf2, which displayed high pharmacokinetic properties. All compounds had low free-binding energies when docked with the DPP IV protein, which suggests potent biological activity. In conclusion, based on a computational approach, our findings reveal that MQEO constituents have inhibitory activity against cholera toxin and are promising therapeutic agents for suppressing diabetic inflammation and for the treatment of diabetic nephropathy complications.

Keywordessential oil antibacterial activity diabetic nephropathy inflammation in silico predictions
Subject AreaBiochemistry & Molecular Biology ; Chemistry
DOI10.3390/molecules28247954
Indexed BySCI
Language英语
WOS IDWOS:001131058900001
Citation statistics
Document Type期刊论文
Identifierhttps://ir.xtbg.ac.cn/handle/353005/14043
Collection2012年后新成立研究组
Affiliation1.Int Univ Africa, Fac Pure & Appl Sci, Dept Microbiol, POB 2469, Khartoum 12223, Sudan
2.Chinese Acad Sci, Ctr Integrat Conservat, Yunnan Key Lab Conservat Trop Rainforests & Asian, Xishuangbanna Trop Bot Garden, Mengla 666303, Peoples R China
3.Princess Nourah bint Abdulrahman Univ, Coll Sci, Dept Biol, POB 84428, Riyadh 11671, Saudi Arabia
4.Abdallah, Emad M.] Qassim Univ, Coll Sci & Arts, Dept Sci Labs, POB 53, Ar Rass 51921, Saudi Arabia
Recommended Citation
GB/T 7714
Dahab, Mahmoud,Zhang, Ping,Al-Mijalli, Samiah Hamad,et al. Unveiling the Anti-Cholera and Active Diabetic Renoprotective Compounds of Maqian Essential Oil: A Computational and Molecular Dynamics Study[J]. MOLECULES,2023,28(24):-.
APA Dahab, Mahmoud,Zhang, Ping,Al-Mijalli, Samiah Hamad,&Abdallah, Emad M..(2023).Unveiling the Anti-Cholera and Active Diabetic Renoprotective Compounds of Maqian Essential Oil: A Computational and Molecular Dynamics Study.MOLECULES,28(24),-.
MLA Dahab, Mahmoud,et al."Unveiling the Anti-Cholera and Active Diabetic Renoprotective Compounds of Maqian Essential Oil: A Computational and Molecular Dynamics Study".MOLECULES 28.24(2023):-.
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