Design, Molecular Docking Studies and Toxicity Prediction of Some Novel 1, 2, 3-Triazole Derivatives Containing Piperazine Moiety as Antifungal Agents and CYP-51 Inhibitors
Authors
Abstract:
Background & Objective: In this study, a number of new triazole derivatives, containing a 1, 2, 3-triazole ring attached to the piperazine moiety as antifungal agents and lanosterol 14 alpha-demethylase, (CYP51) inhibitors were docking studies conducted. In the following, the toxicity risks of the designed compounds, were predicted by existing software. Materials & methods: Initially, the chemical structures of all azole were designed using ChemBioDraw Ultra14.0 program, then transferred into Hyperchem software for energy minimization. After preparing, all of these chemical compounds were docked with the target enzyme in order to select the best inhibitor of the drug using the Auto Dock-Vina-1-1-2-win32.msi software. The results were analyzed using the Molegro Virtual Docking software. At the final stage, the toxicity risk prediction of compounds was performed by the OSIRIS program. Results: After checking the computation, 10 compounds of ligands that were the results of Docking, were selected according to the Gibbs free energy (least ΔG). Docking results revealed the azole-heme coordination, hydrogen bond, hydrophobic interactions were involved in the drug-receptor interactions. Among the all studied compounds, the best docking results were related to No. 5 displayed. In fact, this compound had the most negative ΔGbind (-10.85 Kcal/mol) that indicated favorable interactions with the key amino acid residues at active site of CYP51. Conclusion: In conclusion, according to the results of docking studies, biological evaluation and Toxicity Risk Prediction of designed Compounds, it can be concluded that Compound No. 5 can be considered as an effective antifungal agent and an inhibitor of the CYP51 enzyme
similar resources
Computational Design, Molecular Docking Study and Toxicity Prediction of Some Novel Pralidoxime Derivatives as reactivators of acetyl cholinesterase enzyme
Abstract Background & Objective: oximes as Acetylcholinesterase (AChE) reactivators were developed for the treatment of organophosphate compounds (OPCs) intoxication. Oximes also bind to the active site of AChE, simultaneously acting as reversible inhibitors. Organophosphorus compounds (OPCs) such as soman, sarin, or VX react with acetyl cholinesterase irreversibly. In this research, a group o...
full textMolecular docking studies on xanthohumol derivatives as novel anticancer agents
A set of Xanthohumol derivatives were selected and molecular docking studies of these compounds on thioredoxin reductase were conducted. Based on new structural patterns using in silico-screening study, new potent lead compounds were designed. The results due to validated docking protocols lead to find that Thr58, Gly57, Gly21, Asp334, Glu163, Ala130, IIe332, Val44 and Gly132 are the main a...
full textBiological Evaluation of Heterocycle Moiety of Some Novel azoles Derivatives as Antibacterial and Antifungal potential Agents
Background & Objective: Azole nucleuses are very important part of antimicrobial, analgesic and anti-inflammatory drugs. The azole class of compounds is the most popular among the antibacterial and antifungal classes because of its lower toxicity, higher efficacy and a broad spectrum of activity. Today, Efforts have focused on the development of new, less toxic and more efficacious antifungal a...
full textSynthesis and antifungal activity of novel triazole compounds containing piperazine moiety.
Design and synthesis of triazole library antifungal agents having piperazine side chains, analogues to fluconazole were documented. The synthesis highlighted utilization of the click chemistry on the basis of the active site of the cytochrome P450 14α-demethylase (CYP51). Their structures were characterized by (1)H-NMR, (13)C-NMR, MS and IR. The influences of piperazine moiety on in vitro antif...
full textSynthesis and antimicrobial activity of some novel heterocycles containing thiazole, oxazole, thiazine, oxazine and triazole moiety
Indandione 1 was brominated to yield 2-bromoIndandione 2 which on further reacted with substituted thiocarbamides, carbamides, 2-aminothiophenols, 2-aminophenol and triazoles to furnished 3-substituted aniline-2-thia-4-aza-6,7-benzo-8-oxo-bicyclo [3.3.0]-1(5),3-octadiene 3, 3-substituted aniline-2-oxa-4-aza-6,7-benzo-8-oxo-bicyclo [3.3.0]-1(5),3-octadiene 4, 2-Thia-5-aza-9-oxo-3,4-(3’-substitut...
full textDesign and Synthesis of 2-Methyl and 2-Methyl-4-Nitro Imidazole Derivatives as Antifungal Agents
Two series (a and b) of N- substituted heteroaromatic compounds related to clotrimazole were synthesized. Imidazole ring of the clotrimazole was replaced by 2-methylimidazole in series a, and by 2-methyl-4-nitroimidazole in series b. O-cholortrityl moiety of clotrimazole was also replaced by trityl, mono or dimethoxy trityl. Chemical structures...
full textMy Resources
Journal title
volume 8 issue 3
pages 949- 958
publication date 2018-12
By following a journal you will be notified via email when a new issue of this journal is published.
No Keywords
Hosted on Doprax cloud platform doprax.com
copyright © 2015-2023