Melanny Ika Sulistyowaty, Juni Ekowati, Steven Guitomo, Imamatin Nufus Melania, Muhammad Ilham Royyan Nafi
{"title":"Computational docking toward cox-2 and synthesis of 4-formyl-2-methoxyphenyl-4-chlorobenzoate using microwave irradiation","authors":"Melanny Ika Sulistyowaty, Juni Ekowati, Steven Guitomo, Imamatin Nufus Melania, Muhammad Ilham Royyan Nafi","doi":"10.46542/pe.2023.234.132136","DOIUrl":null,"url":null,"abstract":"Background: Structure modification of organic compounds is needed to increase their bioactivity. Vanillin has been reported to has various therapeutic effects such as antioxidant, antimutagenic, anti-invasive and metastatic suppression potential, anti-inflammatory and also antinociceptive activity. To increase the activity of organic compounds, we have to enhance the lipophilic properties by modifications of the structure. Objective: The phenolic OH of vanillin can be modified by adding aromatic ring, carbonyl, and halogen to improve its bioactivity. The 4-formyl-2-methoxyphenyl-4-chlorobenzoate is a vanillin derivative that has been modified to its phenolic –OH. Method: In this study, the synthesis of 4-formyl-2-methoxyphenyl-4-chlorobenzoate was carried out by microwave irradiation with various power of 120, 200 and also 400 watt. The characterizations of the synthesized compound were carried out using FTIR, 1H-NMR and 13C-NMR spectrophotometry. The molecular docking study used Autodock software with at the COX-2 receptor (PDB ID: 6COX) as target receptor. Result: We used the microwave’s power of 120, 200 and also 400 watt to synthesis the target compound and produced 89.09%, 72.78% and 34.49% yield, consecutively. Molecular docking study at the COX-2 receptors was performed to predict the anti-inflammatory activity of 4-formyl-2-methoxyphenyl-4-chlorobenzoate. The docking results showed that the binding energy of 4-formyl-2-methoxyphenyl-4-chlorobenzoate was lower on chain A of the receptor (-8.18 kcal/mol) than the starting material, vanillin (-4.96 kcal/mol). It predicted 4-formyl-2-methoxyphenyl-4-chlorobenzoate has better activity than vanillin. Conclusion: The 4-formyl-2-methoxyphenyl-4-chlorobenzoate was successfully synthesized and this finding proves that this compound essentials to be developed furthermore as an anti-inflammatory agent.","PeriodicalId":19944,"journal":{"name":"Pharmacy Education","volume":"52 1","pages":"0"},"PeriodicalIF":0.5000,"publicationDate":"2023-10-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Pharmacy Education","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.46542/pe.2023.234.132136","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"EDUCATION, SCIENTIFIC DISCIPLINES","Score":null,"Total":0}
引用次数: 0
Abstract
Background: Structure modification of organic compounds is needed to increase their bioactivity. Vanillin has been reported to has various therapeutic effects such as antioxidant, antimutagenic, anti-invasive and metastatic suppression potential, anti-inflammatory and also antinociceptive activity. To increase the activity of organic compounds, we have to enhance the lipophilic properties by modifications of the structure. Objective: The phenolic OH of vanillin can be modified by adding aromatic ring, carbonyl, and halogen to improve its bioactivity. The 4-formyl-2-methoxyphenyl-4-chlorobenzoate is a vanillin derivative that has been modified to its phenolic –OH. Method: In this study, the synthesis of 4-formyl-2-methoxyphenyl-4-chlorobenzoate was carried out by microwave irradiation with various power of 120, 200 and also 400 watt. The characterizations of the synthesized compound were carried out using FTIR, 1H-NMR and 13C-NMR spectrophotometry. The molecular docking study used Autodock software with at the COX-2 receptor (PDB ID: 6COX) as target receptor. Result: We used the microwave’s power of 120, 200 and also 400 watt to synthesis the target compound and produced 89.09%, 72.78% and 34.49% yield, consecutively. Molecular docking study at the COX-2 receptors was performed to predict the anti-inflammatory activity of 4-formyl-2-methoxyphenyl-4-chlorobenzoate. The docking results showed that the binding energy of 4-formyl-2-methoxyphenyl-4-chlorobenzoate was lower on chain A of the receptor (-8.18 kcal/mol) than the starting material, vanillin (-4.96 kcal/mol). It predicted 4-formyl-2-methoxyphenyl-4-chlorobenzoate has better activity than vanillin. Conclusion: The 4-formyl-2-methoxyphenyl-4-chlorobenzoate was successfully synthesized and this finding proves that this compound essentials to be developed furthermore as an anti-inflammatory agent.
期刊介绍:
Pharmacy Education journal provides a research, development and evaluation forum for communication between academic teachers, researchers and practitioners in professional and pharmacy education, with an emphasis on new and established teaching and learning methods, new curriculum and syllabus directions, educational outcomes, guidance on structuring courses and assessing achievement, and workforce development. It is a peer-reviewed online open access platform for the dissemination of new ideas in professional pharmacy education and workforce development. Pharmacy Education supports Open Access (OA): free, unrestricted online access to research outputs. Readers are able to access the Journal and individual published articles for free - there are no subscription fees or ''pay per view'' charges. Authors wishing to publish their work in Pharmacy Education do so without incurring any financial costs.