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In vitro impact of five pesticides alone or in combination on human intestinal cell line Caco-2

机译:五种农药单独或组合对人肠道细胞Caco-2的体外影响

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In Burkina Faso, as in most Sahelian countries, the failure to follow good agricultural practices coupled with poor soil and climate conditions in the locust control context lead to high environmental contaminations with pesticide residues. Thus, consumers being orally exposed to a combination of multiple pesticide residues through food and water intake, the digestive tract is a tissue susceptible to be directly exposed to these food contaminants. The aim of our work was to compare in vitro the impact of five desert locust control pesticides (Deltamethrin DTM, Fenitrothion FNT, Fipronil FPN, Lambda-cyalothrine LCT, and Teflubenzuron TBZ) alone and in combination on the human intestinal Caco-2 cells viability and function. Cells were exposed to 0.1-100 @mM pesticides for 10 days alone or in mixture (MIX). Our results showed a cytotoxic effect of DTM, FNT, FPN, LCT, and TBZ alone or in combination in human intestinal Caco-2 cells. The most efficient were shown to be FPN and FNT impacting the cell layer integrity and/or barrier function, ALP activity, antioxidant enzyme activity, lipid peroxidation, Akt activation, and apoptosis. The presence of antioxidant reduced lipid peroxidation level and attenuated the pesticides-induced cell toxicity, suggesting that key mechanism of pesticides cytotoxicity may be linked to their pro-oxidative potential. A comparative analysis with the predicted cytotoxic effect of pesticides mixture using mathematical modeling shown that the combination of these pesticides led to synergistic effects rather than to a simple independent or dose addition effect.
机译:在布基纳法索,就像大多数萨赫勒国家一样,在蝗虫控制范围内未能遵循良好的农业规范,加上土壤和气候条件恶劣,导致农药残留严重污染环境。因此,消费者通过食物和水摄入而暴露于多种农药残留的组合中,因此消化道是易于直接暴露于这些食物污染物的组织。我们的工作目的是在体外比较五种沙漠蝗虫控制农药(溴氰菊酯DTM,杀虫剂FNT,氟吡隆FPN,Lambda-cyalothrine LCT和Teflubenzuron TBZ)对人肠道Caco-2细胞活力的影响。和功能。将细胞单独或以混合物(MIX)暴露于0.1-100 mM农药10天。我们的研究结果表明,DTM,FNT,FPN,LCT和TBZ单独或联合在人肠道Caco-2细胞中具有细胞毒性作用。结果表明,最有效的是FPN和FNT影响细胞层完整性和/或屏障功能,ALP活性,抗氧化酶活性,脂质过氧化,Akt活化和凋亡。抗氧化剂的存在降低了脂质的过氧化水平并减弱了农药诱导的细胞毒性,这表明农药细胞毒性的关键机制可能与其促氧化能力有关。使用数学模型对农药混合物的预期细胞毒性作用进行了比较分析,结果表明,这些农药的组合产生协同作用,而不是简单的独立或剂量增加作用。

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