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本文引用的文献

1
Analysis of six pyrethroid insecticide metabolites in cord serum using a novel gas chromatography-ion trap mass spectrometry method.使用新型气相色谱 - 离子阱质谱法分析脐带血清中的六种拟除虫菊酯类杀虫剂代谢物。
J Chromatogr B Analyt Technol Biomed Life Sci. 2021 Mar 22;1173:122656. doi: 10.1016/j.jchromb.2021.122656.
2
Occupational exposure to pesticides: Genetic danger to farmworkers and manufacturing workers - A meta-analytical review.职业性接触农药:对农场工人和制造业工人的遗传危害——一项荟萃分析综述。
Sci Total Environ. 2020 Dec 15;748:141382. doi: 10.1016/j.scitotenv.2020.141382. Epub 2020 Aug 7.
3
Plasma Protein and Lipoprotein Binding of - and -Permethrin and Deltamethrin in Adult Humans and Rats.成人和大鼠体内 - 和 - 氯菊酯和溴氰菊酯与血浆蛋白和脂蛋白的结合。
Drug Metab Dispos. 2019 Sep;47(9):941-948. doi: 10.1124/dmd.118.085464. Epub 2019 Jun 27.
4
Neurotoxicity of pesticides.农药的神经毒性。
Acta Neuropathol. 2019 Sep;138(3):343-362. doi: 10.1007/s00401-019-02033-9. Epub 2019 Jun 13.
5
Saliva could act as an emulsifier during oral processing of oil/fat.唾液在油/脂肪的口腔加工过程中可以起到乳化剂的作用。
J Texture Stud. 2019 Feb;50(1):83-89. doi: 10.1111/jtxs.12375. Epub 2018 Nov 14.
6
Evaluation of non-invasive biomonitoring of 2,4-Dichlorophenoxyacetic acid (2,4-D) in saliva.评估唾液中 2,4-二氯苯氧乙酸(2,4-D)的非侵入性生物监测。
Toxicology. 2018 Dec 1;410:171-181. doi: 10.1016/j.tox.2018.08.003. Epub 2018 Aug 16.
7
Assessment of saliva, hair and toenails as biomarkers of low level exposure to manganese from drinking water in children.评估唾液、头发和脚趾甲作为儿童饮水低水平锰暴露的生物标志物。
Neurotoxicology. 2018 Jan;64:126-133. doi: 10.1016/j.neuro.2017.08.011. Epub 2017 Sep 1.
8
Non-invasive saliva human biomonitoring: development of an in vitro platform.非侵入性唾液人体生物监测:体外平台的开发
J Expo Sci Environ Epidemiol. 2017 Jan;27(1):72-77. doi: 10.1038/jes.2015.74. Epub 2015 Nov 11.
9
Computational strategy for quantifying human pesticide exposure based upon a saliva measurement.基于唾液测量的人类农药暴露量量化计算策略。
Front Pharmacol. 2015 May 27;6:115. doi: 10.3389/fphar.2015.00115. eCollection 2015.
10
A Preliminary Study of Biomonitoring for Bisphenol-A in Human Sweat.人体汗液中双酚A生物监测的初步研究
J Anal Toxicol. 2015 Sep;39(7):562-6. doi: 10.1093/jat/bkv055. Epub 2015 May 25.

一种用于检测职业暴露工人唾液中拟除虫菊酯代谢物的新型生物监测方法,作为风险评估工具。

A Novel Biomonitoring Method to Detect Pyrethroid Metabolites in Saliva of Occupationally Exposed Workers as a Tool for Risk Assessment.

作者信息

Wren Melody, Robson Mark, Buckley Brian

机构信息

Environmental and Occupational Health Sciences Institute and Department of Environmental Sciences, Rutgers University, Piscataway, NJ, USA.

Department of Plant Biology, Rutgers University, New Brunswick, NJ, USA.

出版信息

Hum Ecol Risk Assess. 2024;30(3-4):269-288. doi: 10.1080/10807039.2024.2329625. Epub 2024 May 19.

DOI:10.1080/10807039.2024.2329625
PMID:39221113
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11360145/
Abstract

Saliva is valuable in exposure assessment having been successfully used for drug and environmental pollutant detection, providing a surrogate measure of plasma concentrations. Pyrethroid biomarkers have not previously been assessed in saliva, although are prime candidates for saliva detection. This study's objectives were to 1) develop a liquid-liquid extraction (LLE) method to quantify six pyrethroid metabolites using gas chromatography/ion trap mass spectrometry and 2) assess its application for an occupationally exposed population. Several solvents and mixing protocols were optimized for metabolite recovery. The optimized method was applied to a population of pest control operators (PCOs) and compared against a urine sample before and after a full workday using pesticides. A questionnaire collected demographic information, occupational history, and occupational and non-occupational exposure data. LLE recoveries ranged from 85% - 104% and 72% - 88% for toluene and dichloromethane using slow mixing, and 49% - 103% for methyl tert-butyl ether by fast mixing. Urinary 3-Phenoxybenzoic acid (3PBA) was detected in 100% of pre- and post-work urine samples. Three PCOs had increased urinary pyrethroid metabolite levels post-work. Salivary 3PBA was present below detection limit in two of the three PCO's post-work saliva samples, demonstrating that salivary 3PBA could be measured in PCOs after the workday. This study presents preliminary findings of a potential, low-risk biomonitoring technique that may be utilized in future occupational pyrethroid exposure and risk assessment research.

摘要

唾液在暴露评估中具有重要价值,已成功用于药物和环境污染物检测,可作为血浆浓度的替代指标。拟除虫菊酯生物标志物此前尚未在唾液中进行评估,不过它们是唾液检测的主要候选对象。本研究的目标是:1)开发一种液液萃取(LLE)方法,使用气相色谱/离子阱质谱法定量六种拟除虫菊酯代谢物;2)评估其在职业暴露人群中的应用。针对代谢物回收率,对几种溶剂和混合方案进行了优化。将优化后的方法应用于一群害虫防治操作人员(PCO),并在使用农药的完整工作日前后,将其与尿液样本进行比较。通过问卷调查收集了人口统计学信息、职业史以及职业和非职业暴露数据。使用慢速混合时,甲苯和二氯甲烷的LLE回收率分别为85% - 104%和72% - 88%,使用快速混合时,甲基叔丁基醚的回收率为49% - 103%。在工作前和工作后的尿液样本中,100%检测到尿中3 - 苯氧基苯甲酸(3PBA)。三名PCO在工作后尿中拟除虫菊酯代谢物水平升高。在三名PCO工作后的唾液样本中,有两份唾液3PBA低于检测限,这表明在工作日后可以在PCO中检测到唾液3PBA。本研究展示了一种潜在的、低风险生物监测技术的初步结果,该技术可能会用于未来的职业拟除虫菊酯暴露和风险评估研究。