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首页> 外文期刊>Insect Biochemistry and Molecular Biology >The novel isoxazoline ectoparasiticide fluralaner: Selective inhibition of arthropod gamma-aminobutyric acid- and L-glutamate-gated chloride channels and insecticidal/acaricidal activity
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The novel isoxazoline ectoparasiticide fluralaner: Selective inhibition of arthropod gamma-aminobutyric acid- and L-glutamate-gated chloride channels and insecticidal/acaricidal activity

机译:新型异恶唑啉除草剂氟尿烷:对节肢动物γ-氨基丁酸和L-谷氨酸门控氯离子通道的选择性抑制和杀虫/杀螨活性

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摘要

Isoxazolines are a novel class of parasiticides that are potent inhibitors of gamma-aminobutyric acid (GABA)gated chloride channels (GABACls) and L-glutamate-gated chloride channels (GluCls). In this study, the effects of the isoxazoline drug fluralaner on insect and acarid GABACl (RDL) and GluCl and its parasiticidal potency were investigated. We report the identification and cDNA cloning of Rhipicephalus (R.) micro plus RDL and GluCl genes, and their functional expression in Xenopus laevis oocytes. The generation of six clonal HEK293 cell lines expressing Rhipicephalus microplus RDL and GluCl, Ctenocephalides felis RDL-A(285) and RDL-S-285, as well as Drosophila melanogaster RDLCl-A(302) and RDL-S-302, combined with the development of a membrane potential fluorescence dye assay allowed the comparison of ion channel inhibition by fluralaner with that of established insecticides addressing RDL and GluCl as targets. In these assays fluralaner was several orders of magnitude more potent than picrotoxinin and dieldrin, and performed 5-236 fold better than fipronil on the arthropod RDLs, while a rat GABACl remained unaffected. Comparative studies showed that R. microplus RDL is 52-fold more sensitive than R. microplus GluCl to fluralaner inhibition, confirming that the GABA-gated chloride channel is the primary target of this new parasiticide. In agreement with the superior RDL on-target activity, fluralaner outperformed dieldrin and fipronil in insecticidal screens on cat fleas (Ctenocephalides fells), yellow fever mosquito larvae (Aedes aegypti) and sheep blowfly larvae (Lucilia cuprina), as well as in acaricidal screens on cattle tick (R. microplus) adult females, brown dog tick (Rhipicephalus sanguineus) adult females and Ornithodoros moubata nymphs. These findings highlight the potential of fluralaner as a novel ectoparasiticide.
机译:异恶唑啉是一类新型的杀寄生虫剂,它们是γ-氨基丁酸(GABA)门控氯离子通道(GABACls)和L-谷氨酸门控氯离子通道(GluCls)的有效抑制剂。在这项研究中,研究了异恶唑啉药物氟尿嘧啶对昆虫和螨类GABACl(RDL)和GluCl的作用及其杀虫效力。我们报告鉴定和cDNA克隆的Rhipicephalus(R.)微加RDL和GluCl基因,以及它们在非洲爪蟾卵母细胞中的功能性表达。表达六种微小头状假单胞菌RDL和GluCl,假性Ctenocephalides假性RDL-A(285)和RDL-S-285以及黑腹果蝇RDLCl-A(302)和RDL-S-302的6个克隆HEK293细胞系的产生与膜电位荧光染料测定法的发展使氟尿烷与已建立的以RDL和GluCl为目标的杀虫剂对离子通道的抑制作用进行了比较。在这些测定中,氟尿烷的效价比苦毒毒素和狄氏剂强几个数量级,在节肢动物RDL上的效价比氟虫腈好5-236倍,而大鼠GABAC1则不受影响。比较研究表明,R。microplus RDL对氟尿烷抑制的敏感性比R. microplus GluCl高52倍,这证实了GABA门控氯离子通道是这种新型杀寄生虫剂的主要目标。与出色的RDL靶向活性一致,在猫蚤(Ctenocephalides砍伐),黄热蚊子幼虫(伊蚊,埃及伊蚊)和绵羊蝇Luc幼虫(Lucilia cuprina)的杀虫剂筛查中,以及在杀螨剂筛查中,氟尿烷的表现都优于狄德林和氟虫腈。牛tick(R。microplus)成年雌性,棕狗tick(Rhipicephalus sanguineus)成年雌性和Or鸟若虫。这些发现凸显了氟尿烷作为一种新型的除草剂的潜力。

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