首页> 外文期刊>Journal of Agricultural and Food Chemistry >Phenylpyrazole insecticide photochemistry, metabolism, and GABAergic action: ethiprole compared with fipronil.
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Phenylpyrazole insecticide photochemistry, metabolism, and GABAergic action: ethiprole compared with fipronil.

机译:苯并吡唑杀虫剂的光化学,新陈代谢和GABA的增效作用:乙腈与氟虫腈相比。

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摘要

Ethiprole differs from fipronil, the major phenylpyrazole insecticide, only in an ethylsulfinyl substituent replacing the trifluoromethylsulfinyl moiety. This study compares their photochemistry, metabolism, action at the gamma-aminobutyric acid (GABA) receptor, and insecticidal potency. On exposure to sunlight as a thin film, ethiprole undergoes oxidation (major), reduction, and desethylsulfinylation but not desulfinylation whereas the major photoreaction for fipronil is desulfinylation. Metabolic sulfone formation is more rapid with ethiprole than fipronil in human expressed CYP3A4 in vitro and mouse brain and liver in vivo. High biological activity is observed for the sulfide, sulfoxide, sulfone, and desulfinyl derivatives in both the ethiprole and the fipronil series in GABA receptor assays (human recombinant beta3 homomer and house fly head membranes) with [(3)H]EBOB and in topical toxicity to house flies with and without the P450-inhibiting synergist piperonyl butoxide. On an overall basis, the ethiprole series is very similar in potency to the fipronil series.
机译:乙丙啶与氟吡苯胺(主要的苯基吡唑杀虫剂)不同,仅在于乙基亚磺酰基取代基取代了三氟甲基亚磺酰基部分。这项研究比较了它们的光化学,代谢,对γ-氨基丁酸(GABA)受体的作用以及杀虫力。在暴露于阳光下为薄膜时,乙腈经历氧化(主要),还原和去乙基亚磺酰化,但不进行脱亚磺酰化,而氟虫腈的主要光反应是脱亚磺酰化。在体外人类表达的CYP3A4和体内小鼠脑和肝脏中,乙丙胺的代谢砜形成比芬普尼更快。在使用[(3)H] EBOB的GABA受体测定(人重组β3同聚物和室内蝇头膜)中,乙腈和氟虫腈系列中的硫化物,亚砜,砜和去亚磺酰基衍生物均具有较高的生物活性。有和没有P450抑制增效剂胡椒基丁醚对家蝇的毒性。总体而言,乙丙胺系列在功效上与氟虫腈系列非常相似。

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