Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment

DENV infects 50–100 million individuals, and 500,000 of them go on to acquire the more serious dengue hemorrhagic fever, which causes around 20,000 fatalities every year. Despite its widespread nature, there is no medication licenced to treat this condition. The purpose of this work is to identify a...

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Main Authors: Roney, Miah, Dubey, Amit, Normaiza, Zamri, Mohd Fadhlizil Fasihi, Mohd Aluwi
格式: 文件
语言:English
出版: Elsevier B.V. 2023
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在线阅读:http://umpir.ump.edu.my/id/eprint/41757/1/Inhibitory%20effect%20of%20Sinapic%20acid%20derivatives%20targeting%20structural%20and%20non-structural%20proteins%20of%20dengue%20virus%20serotype%202%20An%20in-silico%20assessment.pdf
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author Roney, Miah
Dubey, Amit
Normaiza, Zamri
Mohd Fadhlizil Fasihi, Mohd Aluwi
author_facet Roney, Miah
Dubey, Amit
Normaiza, Zamri
Mohd Fadhlizil Fasihi, Mohd Aluwi
author_sort Roney, Miah
collection UMP
description DENV infects 50–100 million individuals, and 500,000 of them go on to acquire the more serious dengue hemorrhagic fever, which causes around 20,000 fatalities every year. Despite its widespread nature, there is no medication licenced to treat this condition. The purpose of this work is to identify anti-DENV medicines from sinapic acid (SA) derivatives utilising in-silico evaluation through docking and pharmacokinetics investigations. For the DENV-2 envelop protein, 1-O-β-d-glucopyranosyl sinapate had a significant docking score of −7.7 kcal/mol, while sinapoyl malate had a docking score of −6.7 kcal/mol for the DENV-2 NS2B/NS3 protein. Additionally, according to the PASS server, 1-O-β-d-glucopyranosyl sinapate and sinapoyl malate have a wide range of enzymatic activities since their probability active (Pa) values is > 0.700. These compounds exhibit a numerous pharmacological effect through activating the body's enzymes, according to analyses of their pharmacokinetic qualities. Accordingly, these substances showed acute toxicity rates at LD50 log10 (mmol/g) and LD50 (mg/g) concentrations when administered via various routes, including intraperitoneal, intravenous, oral, and subcutaneous. The result of this research suggests, 1-O-β-d-glucopyranosyl sinapate and sinapoyl malate may function as possible inhibitors to halt the DENV, and more in-vitro and in-vivo research is required to validate their activity and other features.
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spelling UMPir417572024-07-01T07:04:46Z http://umpir.ump.edu.my/id/eprint/41757/ Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment Roney, Miah Dubey, Amit Normaiza, Zamri Mohd Fadhlizil Fasihi, Mohd Aluwi HD Industries. Land use. Labor R Medicine (General) DENV infects 50–100 million individuals, and 500,000 of them go on to acquire the more serious dengue hemorrhagic fever, which causes around 20,000 fatalities every year. Despite its widespread nature, there is no medication licenced to treat this condition. The purpose of this work is to identify anti-DENV medicines from sinapic acid (SA) derivatives utilising in-silico evaluation through docking and pharmacokinetics investigations. For the DENV-2 envelop protein, 1-O-β-d-glucopyranosyl sinapate had a significant docking score of −7.7 kcal/mol, while sinapoyl malate had a docking score of −6.7 kcal/mol for the DENV-2 NS2B/NS3 protein. Additionally, according to the PASS server, 1-O-β-d-glucopyranosyl sinapate and sinapoyl malate have a wide range of enzymatic activities since their probability active (Pa) values is > 0.700. These compounds exhibit a numerous pharmacological effect through activating the body's enzymes, according to analyses of their pharmacokinetic qualities. Accordingly, these substances showed acute toxicity rates at LD50 log10 (mmol/g) and LD50 (mg/g) concentrations when administered via various routes, including intraperitoneal, intravenous, oral, and subcutaneous. The result of this research suggests, 1-O-β-d-glucopyranosyl sinapate and sinapoyl malate may function as possible inhibitors to halt the DENV, and more in-vitro and in-vivo research is required to validate their activity and other features. Elsevier B.V. 2023 Article PeerReviewed pdf en cc_by_nc_nd_4 http://umpir.ump.edu.my/id/eprint/41757/1/Inhibitory%20effect%20of%20Sinapic%20acid%20derivatives%20targeting%20structural%20and%20non-structural%20proteins%20of%20dengue%20virus%20serotype%202%20An%20in-silico%20assessment.pdf Roney, Miah and Dubey, Amit and Normaiza, Zamri and Mohd Fadhlizil Fasihi, Mohd Aluwi (2023) Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment. Aspects of Molecular Medicine, 2 (100028). pp. 1-7. ISSN 2949-6888. (Published) https://doi.org/10.1016/j.amolm.2023.100028 10.1016/j.amolm.2023.100028
spellingShingle HD Industries. Land use. Labor
R Medicine (General)
Roney, Miah
Dubey, Amit
Normaiza, Zamri
Mohd Fadhlizil Fasihi, Mohd Aluwi
Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment
title Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment
title_full Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment
title_fullStr Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment
title_full_unstemmed Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment
title_short Inhibitory effect of Sinapic acid derivatives targeting structural and non-structural proteins of dengue virus serotype 2 An in-silico assessment
title_sort inhibitory effect of sinapic acid derivatives targeting structural and non structural proteins of dengue virus serotype 2 an in silico assessment
topic HD Industries. Land use. Labor
R Medicine (General)
url http://umpir.ump.edu.my/id/eprint/41757/1/Inhibitory%20effect%20of%20Sinapic%20acid%20derivatives%20targeting%20structural%20and%20non-structural%20proteins%20of%20dengue%20virus%20serotype%202%20An%20in-silico%20assessment.pdf
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