Department of Legal Medicine, Graduate School of Medicine, Chiba University, Chuo, Chiba 260-8670, Japan.
Laboratory of Forensic Toxicology, Graduate School of Pharmaceutical Sciences, Chiba University, Chuo, Chiba 260-8675, Japan.
Toxicol Sci. 2024 Apr 29;199(1):40-48. doi: 10.1093/toxsci/kfae023.
Organophosphorus pesticides (OPPs) having a phosphate ester moiety, such as malathion (MA) and methidathion (DMTP), are widely used and have been detected in many fatal cases of accidental exposure or suicide in Japan. In forensic toxicology, the accurate determination of blood OPP concentration is mandatory to prove death by OPP poisoning. However, fatal pesticide concentration in blood at autopsy varies depending on the circumstances surrounding the dead body. In this study, we found that 16 OPPs were degraded by human serum albumin (HSA) in a temperature-dependent fashion. The mechanism underlying MA, DMTP, azinphos-methyl, etrimfos, fenthion (MPP), pirimiphos-methyl, (E)-dimethylvinphos, (Z)-dimethylvinphos, vamidothion, edifenphos (EDDP), fosthiazate, and pyraclofos degradation involves the formation of adducts with tyrosine residues in HSA. The mass spectra obtained by liquid chromatography quadrupole Orbitrap mass spectrometry revealed that phosphate ester amino acid adducts such as Y-adduct1, Y-adduct2, Y-adduct3, Y-adduct4, and Y-adduct5 were formed in HSA solution incubated with OPPs. These results indicate that the 16 OPPs are postmortem changed by HSA. The detection of phosphate ester amino acid adducts such as Y-adduct1, Y-adduct2, Y-adduct3, Y-adduct4, and Y-adduct5, instead of MA, DMTP, azinphos-methyl, etrimfos, MPP, pirimiphos-methyl, (E)-dimethylvinphos, (Z)-dimethylvinphos, vamidothion, EDDP, fosthiazate, and pyraclofos per se, may be used to determine death by these OPPs poisoning.
有机磷农药 (OPPs) 具有磷酸酯部分,如马拉硫磷 (MA) 和甲基毒死蜱 (DMTP),它们被广泛使用,并在日本许多意外暴露或自杀的致命病例中被检测到。在法医毒理学中,必须准确测定血液 OPP 浓度,以证明 OPP 中毒致死。然而,尸检时血液中致命农药浓度取决于尸体周围的情况。在这项研究中,我们发现人血清白蛋白 (HSA) 以温度依赖的方式降解 16 种 OPP。MA、DMTP、甲基对硫磷、乙硫磷、倍硫磷 (MPP)、甲基嘧啶磷、(E)-二甲基硫代膦酸、(Z)-二甲基硫代膦酸、杀扑磷、苯硫磷 (EDDP)、福美双和吡丙醚降解的机制涉及与 HSA 中酪氨酸残基形成加合物。液相色谱四极杆轨道阱质谱获得的质谱表明,在与 OPP 孵育的 HSA 溶液中形成了磷酸酯氨基酸加合物,如 Y-加合物 1、Y-加合物 2、Y-加合物 3、Y-加合物 4 和 Y-加合物 5。这些结果表明,16 种 OPP 在死后被 HSA 改变。检测磷酸酯氨基酸加合物,如 Y-加合物 1、Y-加合物 2、Y-加合物 3、Y-加合物 4 和 Y-加合物 5,而不是 MA、DMTP、甲基对硫磷、乙硫磷、MPP、甲基嘧啶磷、(E)-二甲基硫代膦酸、(Z)-二甲基硫代膦酸、杀扑磷、苯硫磷、福美双和吡丙醚本身,可能用于确定这些 OPP 中毒致死。