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Dermal Absorption of Pesticide Residues

机译:杀虫剂残留的皮肤吸收

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摘要

Current guidance for dermal exposure assessment of plant protection products typically uses in vitro skin penetration data for the active ingredient when applied as both the concentrated product and relevant spray dilutions thereof. However, typical re-entry scenarios involve potential skin exposure to a "dried residue" of the spray dilution, from which the absorption of a pesticide may be quite different. The research reported in this paper has shown: (1) The method to assess the transfer of dried pesticide residues from a surface to the skin is reproducible for four active ingredients of diverse physicochemical properties, after their application in commercially relevant formulations. (2) Skin absorption of all four pesticides examined was significantly less from a dried residue than from a spray dilution; the difference, in general, was of the order of a factor of 2. (3) Decontamination experiments with one of the active ingredients tested (trinexapac-ethyl) showed that, post-exposure to a spray dilution, skin surface cleaning must be performed within 1 h to significantly reduce potential systemic exposure (relative to continual contact for 24 h); in contrast, after contact with a dried residue, the sooner decontamination was performed, the greater the decrease in exposure achieved, even when the time of contact was as long as 8 h.
机译:当前施用浓缩产物和其相关喷雾稀释液时,植物保护产品的真皮暴露评估的目前的皮肤暴露评估的指导通常使用用于活性成分的体外皮肤渗透数据。然而,典型的重新进入场景涉及潜在的皮肤暴露于喷雾稀释的“干燥残余物”,其中农药的吸收可能是完全不同的。本文报道的研究表明:(1)评估在商业相关配方中的四种活性成分的四种活性成分的测定从皮肤的表面转移的方法是可再现的。 (2)从干燥的残余物中检测的所有四种农药的皮肤吸收显着较低,而不是喷雾稀释度;通常,差异通常是2.(3)与测试的一个活性成分(Trinexapac-乙基)的净化实验的净化实验表明,在喷雾稀释后暴露后,必须进行皮肤表面清洁在1小时内以显着减少潜在的全身暴露(相对于24小时的连续接触);相反,在与干燥的残余物接触后,进行越早去污,即使接触时间长达8小时,也达到的曝光降低越大。

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