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Fluxametamide: A novel isoxazoline insecticide that acts via distinctive antagonism of insect ligand-gated chloride channels

机译:氟胺酰胺:一种通过昆虫配体氯化物通道的独特拮抗作用的新型异恶唑啉杀虫剂

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Fluxametamide is a novel wide-spectrum insecticide that was discovered and synthesized by Nissan Chemical Industries, Ltd. To identify the mode of action of fluxametamide, we first performed [H-3]4'-ethynyl-4-n-propylbicycloorthobenzoate (EBOB) binding assays. Fluxametamide potently inhibited the specific binding of [H-3] EBOB to housefly-head membranes, suggesting that fluxametamide affects insect gamma-aminobutyric acid (GABA)gated chloride channels (GABACls). Next, the antagonism of housefly GABACls and glutamate-gated chloride channels (GluCls) was examined using the two-electrode voltage clamp (TEVC) method. Fluxametamide inhibited agonist responses in both ion channels expressed in Xenopus oocytes in the nanomolar range, indicating that this insecticide is a ligand-gated chloride channel (LGCC) antagonist. The insecticidal and LGCC antagonist potencies of fluxametamide against fipronil-susceptible and fipronil-resistant strains of small brown planthoppers and two-spotted spider mites, which are insensitive to fipronil, were evaluated. Fluxametamide exhibited similar levels of both activities in these fipronil-susceptible and fipronil-resistant arthropod pests. These data indicate that fluxametamide exerts distinctive antagonism of arthropod GABACls by binding to a site different from those for existing antagonists. In contrast to its profound actions on the arthropod LGCCs, the antagonistic activity of fluxametamide against rat GABACls and human glycine-gated chloride channels was nearly insignificant, suggesting that fluxametamide has high target-site selectivity for arthropods over mammals. Overall, fluxametamide is a new type of LGCC antagonist insecticide with excellent safety for mammals at the target-site level.
机译:氟胺酰胺是由日产化学工业有限公司发现和合成的新型宽光谱杀虫剂,以确定氟胺酰胺的作用方式,我们首先进行[H-3] 4'-乙炔基-4-丙基二丙二酸酯(EBOB)结合测定。氟胺酰胺纯粹抑制了[H-3] EBOB的特异性结合到家蝇头膜,表明氟胺酰胺影响昆虫γ-氨基丁酸(GABA)氯化物通道(GABACL)。接下来,使用双电极电压钳(TEVC)方法检查小蝇Gabacl和谷氨酸酰胺氯化物通道(Glucls)的拮抗作用。氟胺酰胺抑制在纳米摩尔范围内的外离子通道中的两个离子通道中的激动剂反应,表明该杀虫剂是配体门控氯通道(LGCC)拮抗剂。评估了对Fipronil的敏感和抗FIPRONIL抗性抗性的荧光杀虫和LGCC拮抗剂疗效和小褐色Planthppers和双斑蜘蛛螨的抗性菌株,其对FIPRONIL不敏感的抗斑块抗菌株。氟胺酰胺在这些抗肌肤易感和抗抗纤维的节肢动物害虫中表现出类似的含量。这些数据表明,通过与现有拮抗剂不同于那些不同的部位,氟菊酯对节肢动物Gabacls的独特拮抗作用。与其对节肢动物LGCC的深刻作用相比,氟胺酰胺对大鼠Gabacl和人甘氨酸门控氯化物通道的拮抗活性几乎是微不足道的,表明氟胺酰胺对哺乳动物的节肢动物具有高靶点选择性。总体而言,氟胺酰胺是一种新型的LGCC拮抗剂杀虫剂,具有靶部位水平的哺乳动物的优异安全性。

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