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Albumin binding as a potential biomarker of exposure to moderately low levels of organophosphorus pesticides

机译:白蛋白结合是暴露于较低水平有机磷农药的潜在生物标志物

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摘要

We have evaluated the potential of plasma albumin to provide a sensitive biomarker of exposure to commonly used organophosphorus pesticides in order to complement the widely used measure of acetylcholinesterase (AChE) inhibition. Rat or human plasma albumin binding by tritiated-diisopropylfluorophosphate ((3)H-DFP) was quantified by retention of albumin on glass microfibre filters. Preincubation with unlabelled pesticide in vitro or dosing of F344 rats with pesticide in vivo resulted in a reduction in subsequent albumin radiolabelling with (3)H-DFP, the decrease in which was used to quantify pesticide binding. At pesticide exposures producing approximately 30% inhibition of AChE, rat plasma albumin binding in vitro by azamethiphos (oxon), chlorfenvinphos (oxon), chlorpyrifos-oxon, diazinon-oxon and malaoxon was reduced from controls by 9+/-1%, 67+/-2%, 56+/-2%, 54+/-2% and 8+/-1%, respectively. After 1 h of incubation with 19 microM (3)H-DFP alone, the level of binding to rat or human plasma albumins reached 0.011 or 0.039 moles of DFP per mole of albumin, respectively. This level of binding could be further increased by raising the concentration of (3)H-DFP, increasing the (3)H-DFP incubation time, or by substitution of commercial albumins for native albumin. Pesticide binding to albumin was presumed covalent since it survived 24 h dialysis. After dosing rats with pirimiphos-methyl (dimethoxy) or chlorfenvinphos (oxon) (diethoxy) pesticides, the resultant albumin binding were still significant 7 days after dosing. As in vitro, dosing of rats with malathion did not result in significant albumin binding in vivo. Our results suggest albumin may be a useful additional biomonitor for moderately low-level exposures to several widely used pesticides, and that this binding differs markedly between pesticides.
机译:我们已经评估了血浆白蛋白提供暴露于常用有机磷农药的敏感生物标志物的潜力,以补充广泛使用的乙酰胆碱酯酶(AChE)抑制措施。通过将白蛋白保留在玻璃微纤维滤纸上来定量由tri化的二异丙基氟磷酸盐((3)H-DFP)结合的大鼠或人血浆白蛋白。体外与未标记农药的预孵育或向F344大鼠体内给药的剂量导致随后用(3)H-DFP进行白蛋白放射性标记的减少,该减少用于定量农药结合。暴露于农药会产生大约30%的AChE抑制作用时,氮杂甲磷(oxon),毒死vin(phofenvinphos)(oxon),毒死rif(oxpyrifos-oxon),二嗪农(oxazinon-oxon)和丙二氧嘧啶(malaoxon)在体外的大鼠血浆白蛋白结合率比对照组降低了9 +/- 1%,67分别为+/- 2%,56 +/- 2%,54 +/- 2%和8 +/- 1%。与19 microM(3)H-DFP单独孵育1小时后,与大鼠或人血浆白蛋白的结合水平分别达到每摩尔白蛋白0.011或0.039摩尔DFP。可以通过提高(3)H-DFP的浓度,增加(3)H-DFP的孵育时间或通过用商业白蛋白代替天然白蛋白来进一步提高这种结合水平。农药与白蛋白的结合被认为是共价的,因为它可以在24小时的透析中存活下来。给大鼠服用吡虫啉-甲基(二甲氧基)或敌百虫(oxon)(二乙氧基)杀虫剂后,给药后7天所产生的白蛋白结合仍然很明显。与体外一样,马拉硫磷对大鼠的给药在体内不会导致明显的白蛋白结合。我们的研究结果表明,白蛋白可能是一种有用的附加生物监控剂,可适度地低水平暴露于几种广泛使用的农药,并且这种结合在农药之间明显不同。

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