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监测比利时市场上的蜂巢产品和衍生物中的吡咯里西啶生物碱。

Monitoring of pyrrolizidine alkaloids in beehive products and derivatives on the Belgian market.

机构信息

Organic Contaminants and Additives, Sciensano, Rue Juliette Wytsman 14, 1050, Brussels, Belgium.

出版信息

Environ Sci Pollut Res Int. 2020 Feb;27(6):5693-5708. doi: 10.1007/s11356-019-04499-2. Epub 2019 Feb 18.

DOI:10.1007/s11356-019-04499-2
PMID:30778948
Abstract

Pyrrolizidine alkaloids (PAs) and related N-oxides (PANOs) are secondary plant metabolites thought to be found in approximately 3% of the flowering plants worldwide and exhibiting hepatotoxic properties to humans. As a consequence, beehive products are prone to be contaminated with those compounds by bees foraging PA-producing plants. Downstream contamination can also occur through food items containing honey. Analytical methods based on UHPLC separation and MS/MS detection were developed with a focus on very low LOQs and validated for the analysis of 16 PAs and 14 PANOs in honey, honey-based candies and snacks, as well as beehive product-based food supplements. A maximum level of 182 ng/g of PAs was detected in a Mediterranean honey, and high levels of heliotrine-type compounds were reported for the first time. An extensive sampling of honeys harvested in Belgium was performed (N = 374), the concentration levels were more limited with a maximum of 60 ng/g, and the contamination pattern was dominated by senecionine-type PAs. The PA levels in honey-based candies and snacks were very low, with respective maxima of 7.61 ng/g and 0.36 ng/g. Seventy-five percent among the pre-dosed food supplements based on beehive products were contaminated, with a maximum of 43 ng/g. The highest level was detected in a bee-collected pollen sample (1672 ng/g). The analytical results were consistent with the previously reported data for beehive products and confirmed that PA/PANO contamination in these food commodities is recurrent.

摘要

吡咯里西啶生物碱(PAs)和相关的 N-氧化物(PANOs)是次生植物代谢物,据认为它们存在于全球约 3%的开花植物中,并对人类具有肝毒性。因此,蜜蜂在觅食产生 PA 的植物时,蜂产品容易受到这些化合物的污染。通过含有蜂蜜的食物也会发生下游污染。开发了基于 UHPLC 分离和 MS/MS 检测的分析方法,重点是非常低的 LOQs,并对蜂蜜、基于蜂蜜的糖果和小吃以及基于蜂产品的食品补充剂中的 16 种 PA 和 14 种 PANO 进行了验证。在一种地中海蜂蜜中检测到 182ng/g 的 PA 最大值,并首次报道了较高水平的海胆碱型化合物。对在比利时收获的蜂蜜进行了广泛的采样(N=374),浓度水平更有限,最大值为 60ng/g,污染模式以山金车型 PA 为主。基于蜂蜜的糖果和小吃中的 PA 水平非常低,分别为最大值 7.61ng/g 和 0.36ng/g。基于蜂产品的预定量食品补充剂中 75%受到污染,最大值为 43ng/g。在蜜蜂采集的花粉样本中检测到最高水平(1672ng/g)。分析结果与先前报道的蜂产品数据一致,证实这些食品中存在反复出现的 PA/PANO 污染。

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