Health and Safety Laboratory, Harpur Hill, Buxton SK179JN, UK.
Toxicol Lett. 2011 Jan 15;200(1-2):41-5. doi: 10.1016/j.toxlet.2010.10.012. Epub 2010 Oct 28.
Human volunteer studies have been conducted by orally administering the pesticides deltamethrin (0.01 mg/kg/day) or pirimicarb (0.02 mg/kg/day) at the acceptable daily intake (ADI) together with chlorpyrifos-methyl (0.01 mg/kg/day), in order to investigate any potential interactions that may occur during dietary exposure. Deltamethrin and pirimicarb are metabolised in vivo by hydrolytic enzymes, which may be susceptible to inhibition by esterase-inhibiting compounds, such as chlorpyrifos-methyl. Urine samples were collected at time points up to at least 48 h post-exposure and metabolites were quantified. Urinary metabolite excretion data obtained from the mixed exposures were compared with data obtained from the same individuals given a dose of each individual pesticide on a separate occasion. Metabolite excretion profiles for both pesticides administered as a mixed dose with chlorpyrifos-methyl were qualitatively similar to those obtained for the individual doses. Peak excretion of deltamethrin and pirimicarb metabolites occurred at around 4h post-exposure for both the individual and the mixed exposure scenarios, and metabolite excretion was almost complete within 24h. No statistically significant differences were found between the individual and mixed doses for either metabolite excretion half-life or metabolite levels quantified in 24-h total urine collections. The data presented here indicate that no significant toxicokinetic interactions occur between either deltamethrin or pirimicarb and chlorpyrifos-methyl when orally administered together at the ADI.
人类志愿者研究通过口服给予拟除虫菊酯(0.01 毫克/千克/天)或吡虫啉(0.02 毫克/千克/天),同时给予氯氰菊酯-甲基(0.01 毫克/千克/天),以研究在饮食暴露期间可能发生的任何潜在相互作用。拟除虫菊酯和吡虫啉在体内通过水解酶代谢,这些酶可能容易受到氯氰菊酯-甲基等酯酶抑制剂化合物的抑制。在暴露后至少 48 小时的时间点收集尿液样本,并定量代谢物。将从混合暴露中获得的尿液代谢物排泄数据与在单独情况下给予每个个体农药剂量的相同个体获得的数据进行比较。与单独给予氯氰菊酯-甲基的混合剂量相比,两种农药的代谢物排泄谱在定性上相似。拟除虫菊酯和吡虫啉代谢物的峰值排泄发生在个体和混合暴露情况下约 4 小时后,并且在 24 小时内几乎完全排泄。在个体和混合剂量的代谢物排泄半衰期或 24 小时总尿液收集物中定量的代谢物水平方面,均未发现统计学上的显著差异。这里呈现的数据表明,当以可接受的日摄入量(ADI)口服给予时,拟除虫菊酯或吡虫啉与氯氰菊酯-甲基之间不会发生显著的毒代动力学相互作用。