EventsMOL2NET'21, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 7th ed.
Published
This submission belongs to the session 01. CHEMBIO.INFO-07: Cheminfo., Chemom., Comput. Chem. & Bioinfo. Congress München, GR-Cambridge, UK-Ch. Hill, USA, 2021. of the event MOL2NET'21, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 7th ed.
Published date
14 Nov, 2021
Academic Editor
author-avatarMarcus Scotti
Citation
Renata Priscila Barros de Menezes, Chonny Herrera-Acevedo, Luciana Scotti, Marcus Tullius Scotti, Ligand-Based and Structure-based virtual screening for the discovery of natural larvicidal against Aedes aegypti, in Proceedings of MOL2NET'21, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 7th ed., 25 January–30 December 2021, MDPI: Basel, Switzerland, doi: 10.3390/mol2net-07-11743
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Ligand-Based and Structure-based virtual screening for the discovery of natural larvicidal against Aedes aegypti

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1. Federal University of Paraíba, Brazil
2. Federal University of Paraíba
Abstract

The Aedes aegypti mosquito belongs to the order Diptera and is one of the main vectors of transmission of etiological agents that cause several diseases. This mosquito can transmit diseases such as dengue, yellow fever, Zika, chikungunya, among others. The aim of this study was combining structure-based and ligand-based virtual screening (VS) techniques to select potentially larvicidal active molecules against Ae. aegypti from in-house secondary metabolite dataset (SistematX). From the ChEMBL database, we selected a set of 161 chemical structures with larvicidal activity against Ae. aegypti to create random forest models with an accuracy value higher than 82% for cross-validation and test sets. Afterward, the ligand-based virtual screen selected 38 secondary metabolites . In addition, a structure-based virtual screening was also performed for the 38 molecules selected. Finally, using consensus analyzes approach combining ligand-based and structure-based VS, five molecules were selected as potential larvicidal against Ae. aegypti.

Keywords
Virtual Screening
Secondary Metabolites
Annonaceae
Larvicidal activity
Aedes aegypti
Manuscript
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