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一种用于同时分析肝脏中持久性有机污染物、现行使用和禁用农药、杀鼠剂及药物的方法范围扩展。应用于食品安全和生物监测。

A Method Scope Extension for the Simultaneous Analysis of POPs, Current-Use and Banned Pesticides, Rodenticides, and Pharmaceuticals in Liver. Application to Food Safety and Biomonitoring.

作者信息

Rial-Berriel Cristian, Acosta-Dacal Andrea, Zumbado Manuel, Henríquez-Hernández Luis Alberto, Rodríguez-Hernández Ángel, Macías-Montes Ana, Boada Luis D, Travieso-Aja María Del Mar, Martin Cruz Beatriz, Luzardo Octavio P

机构信息

Toxicology Unit, Research Institute of Biomedical and Health Sciences (IUIBS), Universidad de Las Palmas de Gran Canaria, Paseo Blas Cabrera s/n, 35016 Las Palmas de Gran Canaria, Spain.

Study Group on Wild Animal Conservation Medicine (GEMAS), 28040 Madrid, Spain.

出版信息

Toxics. 2021 Sep 27;9(10):238. doi: 10.3390/toxics9100238.

Abstract

The screening of hundreds of substances belonging to multiple chemical classes in liver is required in areas such as food safety or biomonitoring. We adapted a previous QuEChERS-based method in blood to the liver matrix and applied to these fields of study. The validation of the method allowed the inclusion of 351 contaminants, 80% with a LOQ < 2 ng/g. In the analysis of 42 consumer liver samples, we detected trace levels of 29 different contaminants. The most frequent and concentrated was 4,4'-DDE. POPs accounted for 66% of the compounds detected. In no case was the MRL reached for any of the contaminants detected. We also applied the method to 151 livers of wild birds to perform a biomonitoring pilot study in the Canary Islands. We detected 52 contaminants in 15 bird species. These were also mostly POPs, although high frequencies and concentrations of anticoagulant rodenticides (AR) and some other agricultural pesticides also stand out. POPs and AR contamination levels were significantly higher in terrestrial birds, raptors and particularly in nocturnal birds. Pesticide contamination levels were also higher in terrestrial birds, as well as in non-raptors and diurnal birds. The validated method is simple, robust, and sensitive and performs well in a variety of practical scenarios, where it can be carried out relatively quickly and inexpensively.

摘要

在食品安全或生物监测等领域,需要对肝脏中数百种属于多种化学类别的物质进行筛查。我们将先前基于QuEChERS的血液检测方法应用于肝脏基质,并应用于这些研究领域。该方法的验证允许纳入351种污染物,其中80%的定量限低于2 ng/g。在对42份消费者肝脏样本的分析中,我们检测到29种不同污染物的痕量水平。最常见且含量最高的是4,4'-滴滴伊。持久性有机污染物占检测到的化合物的66%。所检测到的任何污染物均未达到最大残留限量。我们还将该方法应用于151只野生鸟类的肝脏,在加那利群岛进行了一项生物监测试点研究。我们在15种鸟类中检测到52种污染物。这些污染物也大多是持久性有机污染物,不过抗凝血灭鼠剂和其他一些农用杀虫剂的高频率和高含量也很突出。陆地鸟类、猛禽尤其是夜行性鸟类中的持久性有机污染物和抗凝血灭鼠剂污染水平显著更高。陆地鸟类以及非猛禽和昼行性鸟类中的农药污染水平也更高。经过验证的方法简单、稳健且灵敏,在各种实际场景中表现良好,能够相对快速且低成本地实施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8048/8539179/2c51845437f7/toxics-09-00238-g001.jpg

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