Quantification of pyrrolizidine alkaloids in Senecio brasiliensis, beehive pollen, and honey by LC-MS/MS

吡咯里嗪 千里光 紫草科 花粉 生物 蜂巢 植物 菊科 巴豆属
作者
Andressa Camargo Valese,Heitor Daguer,Carmen Maria Olivera Müller,Luciano Molognoni,Cynthia Fernandes Pinto da Luz,Daniel de Barcellos Falkenberg,Luciano Valdemiro Gonzaga,Patrícia Brugnerotto,Silvana Lima Górniak,Fabiano Barreto,Roseane Fett,Ana Carolina Oliveira Costa
出处
期刊:Journal of Environmental Science and Health Part B-pesticides Food Contaminants and Agricultural Wastes [Taylor & Francis]
卷期号:56 (7): 685-694 被引量:13
标识
DOI:10.1080/03601234.2021.1943257
摘要

This article presents the determination of eight pyrrolizidine alkaloids (PAs) by LC-MS/MS in honeys, pollen, and Senecio brasiliensis (Asteraceae) samples, all from Santa Catarina state, Brazil. In addition, the Box-Behnken design was used to perform an optimized sample preparation on pollens and S. brasiliensis parts. Senecionine and its N-oxide, besides retrorsine N-oxide, were determined in six of the seven honeys samples. Pollen from species of the Asteraceae, Fabaceae, and Boraginaceae families were found with greater predominance in three of the seven honeys samples. In these three honeys samples were also found the highest PAs levels. In beehive pollen, flower, and leaf of S. brasiliensis, the total levels of PAs and their N-oxides reached 221, 14.1 × 104, and 14.8 × 104 mg kg−1, respectively. In honeys, these compounds are chemical contaminants and therefore undesirable when the sum exceeds 71 µg kg−1, according to EFSA. On the other hand, although PAs are naturally present in plant and pollen of some species (Senecio, Crotalaria, Bacharis, Ecchium, Mimosa scabrella, Vernonia), it is important to monitor their levels in plants but also in honeys, and other beehive products since these compounds are transferred to the final product.

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