Use este identificador para citar ou linkar para este item: https://repositorio.inpa.gov.br/handle/1/17269
Título: Toxic effect and genotoxicity of the semisynthetic derivatives dillapiole ethyl ether and dillapiole n-butyl ether for control of Aedes albopictus (Diptera: Culicidae)
Autor: Fonseca Meireles, Sabrina da
Domingos, Pedro Rauel Cândido
Pinto, Ana Cristina da Silva
Rafael, Míriam Silva
Palavras-chave: Dillapiole Ethyl Ether
Dillapiole N Butyl Ether
Ether
Unclassified Drug
1,3 Dioxolane Derivative
Dill Apiole
Dillapiole Ethyl Ether
Dillapiole N Butyl Ether
Insecticide
Mutagenic Agent
Aedes Albopictus
Cell Cycle Phase
Chromosome Aberration
Chromosome Breakage
Controlled Study
Egg
Genotoxicity
Larva
Micronucleus
Mortality
Multinuclear Cell
Neuroblast
Nonhuman
Oocyte
Priority Journal
Vector Control
Aedes
Animals
Dna Damage
Drug Effects
Egg Laying
Female
Synthesis
Aedes
Animal
Dioxoles
Dna Damage
Female
Insecticides
Larva
Mutagens
Oocytes
Oviposition
Data do documento: 2016
Revista: Mutation Research - Genetic Toxicology and Environmental Mutagenesis
É parte de: Volume 807, Pags. 1-7
Abstract: Two derivatives of dillapiole, dillapiole ethyl ether (1KL39-B) and butyl ether-n dillapiole (1KL43-C), were studied for their toxicity and genotoxicity against Aedes albopictus, to help develop new strategies for the control of this potential vector of dengue and other arboviruses, because it is resistant to synthetic insecticides. Eggs and larvae exposed to different concentrations of 1KL39-B (25, 30, 50, 70, and 80 μg/mL) and of 1KL43-C (12.5, 20, 25, 30 and 40 μg/mL) exhibited toxicity and susceptibility, with 100% mortality. The LC50 was 55.86 ± 1.57 μg/mL for 1KL39-B and 25.60 ± 1.24 μg/mL for 1KL43-C, while the LC90 was 70.12 μg/mL for 1KL39-B and 41.51 μg/mL for 1KL43-C. The gradual decrease in oviposition of the females of the G1 to G4 generations was proportional to the increase in concentrations of these compounds, which could be related to the cumulative effect of cell anomalies in neuroblasts and oocytes (P < 0.05), including micronuclei, budding, multinucleated cells and nuclear bridges. These findings showed that both 1KL39-B and 1KL43-C can serve as potential alternatives in the control of A. albopictus. © 2016
DOI: 10.1016/j.mrgentox.2016.07.003
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