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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Purinergic signaling as potential target of thiamethoxam-induced neurotoxicity using silver catfish ( Rhamdia quelen ) as experimental model
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Purinergic signaling as potential target of thiamethoxam-induced neurotoxicity using silver catfish ( Rhamdia quelen ) as experimental model

机译:用银鲶(rhamdia Quelen)作为实验模型作为硫氧氧肟诱导神经毒性的潜在目标

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摘要

Thiamethoxam is a broad-spectrum pesticide widely used in agricultural practice throughout the world. Worryingly, this pesticide is considered a potential contaminant on the surface and underground water, being a significant risk to aquatic ecosystems and humans. In this sense, we decided to evaluate the activity of enzymes belonging to purinergic system, which is linked with regulation of extracellular nucleotides and nucleosides, as adenosine triphosphate (ATP) and adenosine (Ado) molecules involved in the regulation of immune and inflammatory responses. Such as the neurotoxic effects of thiamethoxam remain poorly understood, the aim of this study was to evaluate whether purinergic signaling may be considered a potential target of thiamethoxam-induced neurotoxicity in silver catfish ( Rhamdia quelen ). Brain ectonucleoside triphosphate diphosphohydrolase (ATP as substrate) and 5′-nucleotidases activities were inhibited at 3.75?μg?L_(?1)after 24?h of exposure and at 1.125 and 3.75?μg?L_(?1)after 96?h of exposure compared with the control group. On the other hand, brain adenosine deaminase activity was stimulated at 3.75?μg?L_(?1)after 24?h of exposure and at 1.125 and 3.75?μg?L_(?1)after 96?h of exposure compared with the control group. Brain ATP levels increased at 3.75?μg?L_(?1)after 24?h of exposure and at 1.125 and 3.75?μg?L_(?1)after 96?h of exposure compared with the control group, while the Ado levels decreased. The enzymatic activity of the purinergic signaling did not return to control levels after a 48-h recovery period, revealing the potential neurotoxic effects of thiamethoxam. In summary, the brain purinergic signaling may be considered a potential target for thiamethoxam-induced neurotoxicity in silver catfish.
机译:硫胺是一种广泛的杀虫剂,广泛用于全球农业实践。令人担忧的是,这种农药被认为是表面和地下水的潜在污染物,是水生生态系统和人类的重要风险。从这个意义上讲,我们决定评估属于嘌呤能系统的酶活性,其与细胞外核苷酸和核苷的调节有关,作为腺苷三磷酸(ATP)和腺苷(ADO)分子参与免疫和炎症反应的调节。如硫氧化物的神经毒性效果仍然明白,这项研究的目的是评估嘌呤能信号传导是否可以被认为是银鲶(Rhamdia Quelen)中硫氧化胺诱导的神经毒性的潜在目标。在94ΩH曝光和1.125和3.75Ω·μg≤1℃(3.75Ω后,在3.75Ωμg_(β1)下抑制脑外核苷三磷酸二磷酸二磷酸二磷酸二磷酸二磷酶(ATP作为底物)和5'-核苷酸酶活性。与对照组相比的暴露。另一方面,在接触的24μm和1.125和3.75?μg≤1℃后,在96℃和3.75Ω·μg≤1(β1)后,刺激脑腺苷脱氨酶活性。团体。脑ATP水平在24ΩHΩ·H后的3.75×10℃下增加,在96°5和3.75Ω·μgΔμg≤1℃〜_(α1),与对照组相比,ADO水平降低。在恢复期48小时后,嘌呤能信号传导的酶活性不会恢复对照水平,揭示硫氧化物的潜在神经毒性作用。总之,脑嘌呤能信号传导可以被认为是银鲶中硫氧酷氧肟诱导的神经毒性的潜在靶标。

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