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Assessment of the cytotoxic and mutagenic potential of dichlorvos (DDVP) using in silico classification model; a health hazard awareness in Nigeria

机译:在硅分类模型中评估二氯(DDVP)的细胞毒性和致突变电位;尼日利亚的健康危害意识

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摘要

Dichlorvos (DDVP) has been abused in Nigeria for suicide attempts, topical applications to treat an ectoparasitic infestation, and indiscriminate use on farm produce. Exposure to this compound in subacute concentration can cause toxicity in different tissues by alteration of the cellular antioxidative defence mechanism. This analysis is aimed at the systematic profiling of DDVP to assess its cytotoxic and mutagenic potential for human vulnerability using an in silico classification model. DDVP was grouped into categories of analogue chemical compounds generated from inventories based on structural alerts that measure the biological effects on cell lines and animal models using the quantitative structure-activity relationship (QSAR) model. The cytotoxic and mutagenic potential of DDVP was assessed by analyzing target endpoints like skin sensitization, oral/inhalation toxicity, neurotoxicity and mutagenicity. DDVP shows moderate sensitization potential that can induce skin irritation during prolonged exposure because of the presence of dichlorovenyl side-chain that interacts with cellular proteins and causes degradation. 50% lethal dose (LD50) of DDVP per body weight was determined to be 26.2 mg/kg in a rat model at 95% confidence range for acute oral toxicity, and 14.4 mmol/L was estimated as 50% lethal concentration (LC50) in the atmosphere due to acute inhalation toxicity. DDVP can also inhibit acetylcholinesterase in the nervous system to produce nicotinic and muscarinic symptoms like nausea, vomiting, lacrimation, salivation, bradycardia, and respiratory failure may cause death. The widely used pesticide causes weak DNA methylation which can repress gene transcription on promoter sites. DDVP is volatile so it can cause oral and inhalation toxicity coupled with neurotoxicity during prolonged exposure. Serum cholinesterase blood tests should be encouraged in federal and state hospitals to investigate related health challenges as DDVP is still used in Nigeria.
机译:Dhichlorvos(DDVP)已被滥用在尼日利亚进行自杀企图,局部应用来治疗异位遗传学侵扰,并对农产品滥用使用。通过改变细胞抗氧化防御机制,暴露于亚急期浓度中的亚急期浓度中的毒性会导致不同组织中的毒性。该分析旨在DDVP的系统分析,以评估其在硅分类模型中使用A中的人类脆弱性的细胞毒性和诱变潜力。基于结构警报,DDVP分组为基于结构警报的库存类别,这些结构警报使用定量结构 - 活性关系(QSAR)模型来测量细胞系和动物模型的生物学效应。通过分析皮肤致敏,口腔/吸入毒性,神经毒性和致突变性等目标终点来评估DDVP的细胞毒性和致突变性。 DDVP显示适度的敏化电位,由于存在与细胞蛋白相互作用的二氯甲烷基侧链,可以在长时间暴露过程中诱导皮肤刺激并导致降解。在急性口服毒性的95%置信范围内测定每体重量的50%致死剂量(LD50)为26.2mg / kg,急性口服毒性的置信度范围为95%,估计为50%致死浓度(LC50)由于急性吸入毒性而导致的气氛。 DDVP还可以抑制神经系统中的乙酰胆碱酯酶,以产生恶心,呕吐,血管化,养殖,心动过缓和呼吸衰竭等烟碱和毒蕈碱症状可能导致死亡。广泛使用的农药导致弱DNA甲基化,其可以在启动子位点抑制基因转录。 DDVP是挥发性的,因此在长时间暴露过程中会导致口腔和吸入毒性与神经毒性相结合。在联邦和州医院应鼓励血清胆碱酯酶血液检查,以调查相关的健康挑战,因为DDVP仍然在尼日利亚使用。

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