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多残留方法分析以检测蜂蜜中选定金属的污染以及蜂蜜和花粉中的农药。

Multiresidue Methods Analysis to Detect Contamination of Selected Metals in Honey and Pesticides in Honey and Pollen.

作者信息

Casula Mattia, Corrias Francesco, Atzei Alessandro, Milia Massimo, Arru Nicola, Satta Alberto, Floris Ignazio, Pusceddu Michelina, Angioni Alberto

机构信息

Food Toxicology Unit, Department of Life and Environmental Science, University Campus of Monserrato, University of Cagliari, SS 554, 09042 Cagliari, Italy.

Department of Agricultural Sciences, University of Sassari, Viale Italia 39A, 07100 Sassari, Italy.

出版信息

Foods. 2024 Dec 18;13(24):4099. doi: 10.3390/foods13244099.

Abstract

Honey, a natural food with a rich history, is produced by honeybees and other species of bees from nectar, other plant fluids, and honeydew of sap-sucking insects. During foraging, these bees may be exposed to plant protection products (PPPs), metals, and metalloids, potentially leading to residues in honey and hive products that could have a negative impact on human safety. Recognizing the lack of an appropriate methodology for pesticide contamination of honey and other hive products, this research aims to support the need for studies on residues in pollen and bee products for human consumption to establish safe maximum residue levels (MRLs) for consumers. A UHPLC-MS/MS residues method and a modified QuEChERS extraction were applied to simultaneously determine 237 pesticide residues in honey and pollen. The study in North Sardinia analyzed honey and pollen samples from six areas for pesticide residues and verified 27 heavy metals and metalloid residues using Inductively Coupled Plasma Optical Emission Spectrometry (ICP-OES). The data obtained showed residues at levels close to the LOQ of the method, cycloate in a few samples of pollen, and dichlorvos, zoxamide, cycloate, and chlorantraniliprole in honey samples. All samples showed the absence of heavy metal contamination. Overall, no risk to human health was identified. The results of this study confirm that honey and pollen may be a good bioindicator of environmental contamination of a wide area surrounding honeybee hives.

摘要

蜂蜜是一种历史悠久的天然食品,由蜜蜂和其他蜂种采集花蜜、其他植物汁液以及吸食树液昆虫的蜜露而产生。在觅食过程中,这些蜜蜂可能会接触到植物保护产品(PPPs)、金属和类金属,这可能导致蜂蜜和蜂巢产品中出现残留,进而可能对人类安全产生负面影响。鉴于缺乏针对蜂蜜和其他蜂巢产品农药污染的适当方法,本研究旨在支持开展有关供人类食用的花粉和蜂产品中残留物的研究,以便为消费者确定安全的最大残留限量(MRLs)。采用超高效液相色谱 - 串联质谱(UHPLC-MS/MS)残留方法和改良的QuEChERS萃取法同时测定蜂蜜和花粉中的237种农药残留。在撒丁岛北部进行的研究分析了六个地区的蜂蜜和花粉样本中的农药残留,并使用电感耦合等离子体发射光谱法(ICP-OES)验证了27种重金属和类金属残留。所获得的数据显示,残留水平接近该方法的定量限,在一些花粉样本中检测到环草敌,在蜂蜜样本中检测到敌敌畏、唑菌胺酯、环草敌和氯虫苯甲酰胺。所有样本均未显示出重金属污染。总体而言,未发现对人类健康有风险。本研究结果证实,蜂蜜和花粉可能是蜜蜂蜂巢周围广大区域环境污染的良好生物指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e7c/11675412/8121fea764df/foods-13-04099-g001.jpg

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