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溴氰菊酯对血红扇头蜱中枢神经系统(神经节)的有害影响。

Detrimental effect of deltamethrin on the central nervous system (synganglion) of Rhipicephalus sanguineus ticks.

作者信息

Pereira Melissa Carolina, Gasparotto Ana Elisa, Jurgilas Juliana Paneczko, da Silva Letícia Aurora Coelho, Pereira Mayara Cristina, Silveira Samantha Santos, Silva Thays Neigri, Arnosti André, Camargo-Mathias Maria Izabel

机构信息

Sao Paulo State University (UNESP) "Júlio de Mesquita Filho", Avenida 24 A, 1515, Rio Claro, SP, 13506-900, Brazil.

出版信息

Exp Appl Acarol. 2017 Feb;71(2):159-169. doi: 10.1007/s10493-017-0109-y. Epub 2017 Feb 9.

Abstract

Ticks are ectoparasites of medical and veterinary importance, which transmit many infectious agents, causing significant damage to the hosts. The "dog tick" Rhipicephalus sanguineus is responsible for transmitting several pathogens to dogs, motivating researchers to investigate efficient and sustainable control methods. Currently, chemical acaricides currently in use target the central nervous system (synganglion), which is responsible for controlling all the systemic functions of the ticks. Here, the neurotoxic potential of deltamethrin on the synganglion of unfed R. sanguineus female ticks was investigated. The results showed that the synganglion of the females belonging to the control group presented intact morphological characteristics; however, the ones from the treatment group (exposed to 1.5, 3.12 and 6.25 ppm of deltamethrin) displayed alterations, which were increasingly intense as the concentration increased. Observed alterations were mainly in the cortex region and in the neuropile, indicating that the deltamethrin is neurotoxic.

摘要

蜱是具有医学和兽医学重要性的体外寄生虫,可传播多种感染因子,对宿主造成重大损害。“犬蜱”血红扇头蜱会将多种病原体传播给犬类,这促使研究人员去探究高效且可持续的控制方法。目前,现用的化学杀螨剂作用于中枢神经系统(神经节),该系统负责控制蜱的所有系统功能。在此,研究了溴氰菊酯对未进食的血红扇头蜱雌蜱神经节的神经毒性潜力。结果显示,对照组雌蜱的神经节呈现完整的形态特征;然而,处理组(暴露于1.5、3.12和6.25 ppm溴氰菊酯)的神经节出现了变化,且随着浓度增加,变化愈发明显。观察到的变化主要发生在皮质区域和神经纤维网,表明溴氰菊酯具有神经毒性。

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