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Parasitol Res


Title:Insecticidal activity of an essential oil of Tagetes patula L. (Asteraceae) on common bed bug Cimex lectularius L. and molecular docking of major compounds at the catalytic site of ClAChE1
Author(s):Politi FA; Nascimento JD; da Silva AA; Moro IJ; Garcia ML; Guido RV; Pietro RC; Godinho AF; Furlan M;
Address:"Department of Organic Chemistry, Institute of Chemistry, University Estadual Paulista-UNESP, Rua Prof. Francisco Degni 55, Quitandinha, Araraquara, SP, CEP 14800-060, Brazil. flaviopoliti@hotmail.com. Faculdade de Ciencias Farmaceuticas, University Estadual Paulista-UNESP, Rod. Araraquara-Jau Km 01, Araraquara, SP, 14801-902, Brazil. Department of Organic Chemistry, Institute of Chemistry, University Estadual Paulista-UNESP, Rua Prof. Francisco Degni 55, Quitandinha, Araraquara, SP, CEP 14800-060, Brazil. Centro de Pesquisa e Inovacao em Biodiversidade e Farmacos, Instituto de Fisica de Sao Carlos, Universidade de Sao Paulo, Sao Carlos, SP, 13563-120, Brazil. Centro de Assistencia Toxicologica (CEATOX), University Estadual Paulista-UNESP, Distrito de Rubiao Junior s/n, Botucatu, SP, 18618-970, Brazil"
Journal Title:Parasitol Res
Year:2017
Volume:20161112
Issue:1
Page Number:415 - 424
DOI: 10.1007/s00436-016-5305-x
ISSN/ISBN:1432-1955 (Electronic) 0932-0113 (Linking)
Abstract:"Emerging resistance to insecticides has influenced pharmaceutical research and the search for alternatives to control the common bed bug Cimex lectularius. In this sense, natural products can play a major role. Tagetes patula, popularly known as dwarf marigold, is a plant native to North America with biocide potential. The aim of this work was to evaluate the biological activity of T. patula essential oil (EO) against adult common bed bugs via exposure to dry residues by the Impregnated Paper Disk Test (IPDT) using cypermethrin as a positive control. We selected the enzyme acetylcholinesterase as a target for modeling studies, with the intent of investigating the molecular basis of any biological activity of the EO. Chemical analysis of the EO was performed using gas chromatography coupled to mass spectrometry (GC-MS). Additionally, oral and dermal acute toxicity tests were performed according to Organization for Economic Cooperation and Development (OECD) guidelines. The sulforhodamine B assay (SRB) was performed to verify the cytotoxicity of EO to HaCaT cells. The EO eliminated 100 % of the bed bugs at 100 mg mL(-1) with an LC(50) value of 15.85 mg mL(-1). GC-MS analysis identified alpha-terpinolene, limonene, piperitenone, and piperitone as major components of the mixture. Molecular modeling studies of these major compounds suggested that they are acetylcholinesterase inhibitors with good steric and electronic complementarity. The in vitro cytotoxicity evaluation revealed a LC(50) = 37.06 mug mL(-1) and in vivo acute toxicity showed an LC(50) >4000 mg kg(-1), indicating that the EO presents low risk of toxic side effects in humans. The T. patula essential oil components provide a promising strategy for controlling bed bug populations with low mammalian toxicity. These findings pave the way for further in vivo studies aimed at developing a safe and effective insecticide"
Keywords:"Animals Bedbugs/*drug effects Catalytic Domain Gas Chromatography-Mass Spectrometry Insecticides/chemistry/*pharmacology Molecular Docking Simulation Oils, Volatile/chemistry/*pharmacology Plant Oils/chemistry/*pharmacology Tagetes/*chemistry Acetylcholin;"
Notes:"MedlinePoliti, Flavio Augusto Sanches Nascimento, Juliana Damieli da Silva, Alexander Alves Moro, Isabela Jacob Garcia, Mariana Lopes Guido, Rafael Victorio Carvalho Pietro, Rosemeire Cristina Linhari Rodrigues Godinho, Antonio Francisco Furlan, Maysa eng Germany 2016/11/14 Parasitol Res. 2017 Jan; 116(1):415-424. doi: 10.1007/s00436-016-5305-x. Epub 2016 Nov 12"

 
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