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Correlation between Cholinesterase and Paraoxonase 1 Activities:Case Series of Pesticide Poisoning Subjects

机译:胆碱酯酶和对氧磷酶1活性的相关性:农药中毒对象的病例系列

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Introduction Acute exposure to pesticide due to suicidal poisoning is the most extensive cause of pesticide exposure, compared with all other causes including agricultural or industrial exposure. Organophosphate (OP) and carbamate group of pesticides can inhibit acetylcholinesterase; on the other hand, paraoxonase1 can detoxify organophosphate poisoning by hydrolyzing organophosphate metabolites. Methods We have compared the serum paraoxonase1 status and cholinesterase activity of subjects who attempted to commit suicide by consuming OP pesticide. Cholinesterase and paraoxonase1 activity were measured spectrophotometrically using butyrylthiocholine and phenyl acetate as substrates, respectively. Results A positive correlation was found between serum paraoxonase1 activity and cholinesterase activity among pesticide consumed subjects. Conclusion Our results suggest that subjects with higher paraoxonase1 activity may have a better chance of detoxifying the lethal effect of acute organophosphate poisoning.
机译:简介与自杀性中毒引起的农药急性暴露是农药暴露的最广泛原因,相比之下,包括农业或工业暴露在内的所有其他原因。有机磷酸酯(OP)和氨基甲酸酯类农药可抑制乙酰胆碱酯酶;另一方面,对氧磷酶1可以通过水解有机磷酸酯代谢产物来解毒有机磷酸酯中毒。方法我们比较了尝试通过食用OP农药自杀的受试者的血清对氧磷酶1状态和胆碱酯酶活性。胆碱酯酶和对氧磷酶1的活性分别用丁酰硫胆碱和乙酸苯酯作为底物进行分光光度法测定。结果农药消费人群血清对氧磷酶1活性与胆碱酯酶活性呈正相关。结论我们的结果表明,具有较高对氧磷酶1活性的受试者可能有更大的机会对急性有机磷酸盐中毒的致死作用进行解毒。

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