首页> 外文期刊>Mutation Research - Genetic Toxicology and Environmental Mutagenesis >Toxic effect and genotoxicity of the semisynthetic derivatives dillapiole ethyl ether and dillapiole n-butyl ether for control of Aedes albopictus (Diptera: Culicidae)
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Toxic effect and genotoxicity of the semisynthetic derivatives dillapiole ethyl ether and dillapiole n-butyl ether for control of Aedes albopictus (Diptera: Culicidae)

机译:半合成衍生物莳萝螺醚和莳萝螺正丁醚对白纹伊蚊的毒性作用和遗传毒性

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摘要

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 mu g/mL) and of 1KL43-C (12.5, 20,25,30 and 40 mu g/mL) exhibited toxicity and susceptibility, with 100% mortality. The LC50 was 55.86 +/- 1.57 mu g/mL for 1KL39-B and 25.60 +/- 1.24 mu g/mL for I KIA3-C, while the LC90 was 70.12 mu g/mL for 1KL39-B and 41.51 mu g/mL for 1KL43-C. The gradual decrease in oviposition of the females of the G(1) to G(4) 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. (C) 2016 Published by Elsevier B.V.
机译:研究了莳萝螺酮的两种衍生物,即莳萝螺醚(1KL39-B)和丁基醚正莳萝螺(1KL43-C)对白纹伊蚊的毒性和遗传毒性,以帮助开发新的策略来控制这种潜在的登革热载体和其他虫媒病毒,因为它对合成杀虫剂具有抗性。暴露于不同浓度的1KL39-B(25、30、50、70和80μg / mL)和1KL43-C(12.5、20、25、30和40μg/ mL)的卵和幼虫表现出毒性和易感,死亡率100%。 1KL39-B的LC50为55.86 +/- 1.57μg / mL,I KIA3-C的LC50为25.60 +/- 1.24μg/ mL,1KL39-B和41.51μg/ mL的LC90为70.12μg/ mL。 mL用于1KL43-C。 G(1)到G(4)代雌性的产卵逐渐减少与这些化合物的浓度增加成正比,这可能与成神经细胞和卵母细胞中细胞异常的累积效应有关(P <0.05 ),包括微核,出芽,多核细胞和核桥。这些发现表明,1KL39-B和1KL43-C都可以作为控制白纹曲霉的潜在替代品。 (C)2016由Elsevier B.V.发布

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