奇亚籽中必需和潜在有毒元素的暴露评估。

IF 6.8 Q1 TOXICOLOGY
Dailos González-Weller, Elena Bethencourt-Barbuzano, Katarzyna Siedzik, Soraya Paz-Montelongo, Ángel J Gutiérrez-Fernández, Arturo Hardisson, Samuel Alejandro-Vega, Juan R Jáudenes-Marrero, Carmen Rubio
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引用次数: 0

摘要

随着奇亚籽消费量的增加,人们对其营养和毒理学特性也越来越感兴趣。为了评估这种新型食品的基本成分和pte的特征,使用ICP-OES分析了欧洲市场上20个常规和有机奇亚籽样品。然后,对这些元素的饮食暴露进行了评估。对这种食物中金属含量的详尽调查有助于阐明现有知识的缺乏。结果表明,两种产品的基本元素含量相似,而有机样品的pte含量较高。暴露评估表明,在必需元素中,锰的贡献最大,其次是铜。所分析的奇亚籽剂量为50克/天,暴露于pte几乎不会造成短期健康风险,因为除Sr外,其贡献低于10%,但可能产生长期毒理学风险。为了促进奇亚籽消费的安全性,建议鼓励负责任和适度的消费,继续监测这种新型食品中的PTE水平,并在未来的欧洲法规中建立PTE的浓度限值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exposure Assessment of Essential and Potentially Toxic Elements (PTEs) from Chia Seeds.

The increasing consumption of chia seeds is followed by a growing interest in their nutritional and toxicological characterization. To assess the characterization of the essential and PTEs of this novel food, 20 samples of conventional and organic chia seeds available on the European market were analyzed using ICP-OES. Then, the dietary exposure to these elements was assessed. An exhaustive investigation into the metal content of this food serves to elucidate the paucity of existing knowledge. The results show that the levels of essential elements are similar in both types of production, while the levels of PTEs are higher in the organic samples. The exposure assessment indicates that Mn contributes the most among the essential elements, followed by Cu in women. Exposure to PTEs through doses of 50 g/day of chia seeds analyzed would hardly pose short-term health risks as the contributions are below 10%, except for Sr, although they could produce a long-term toxicological risk. To promote safety in chia seed consumption, it is recommended to encourage responsible and moderate consumption, continue monitoring PTE levels in this novel food, and establish concentration limits for PTEs in future European regulations.

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来源期刊
CiteScore
5.30
自引率
1.70%
发文量
21
审稿时长
10 weeks
期刊介绍: The Journal of Xenobiotics publishes original studies concerning the beneficial (pharmacology) and detrimental effects (toxicology) of xenobiotics in all organisms. A xenobiotic (“stranger to life”) is defined as a chemical that is not usually found at significant concentrations or expected to reside for long periods in organisms. In addition to man-made chemicals, natural products could also be of interest if they have potent biological properties, special medicinal properties or that a given organism is at risk of exposure in the environment. Topics dealing with abiotic- and biotic-based transformations in various media (xenobiochemistry) and environmental toxicology are also of interest. Areas of interests include the identification of key physical and chemical properties of molecules that predict biological effects and persistence in the environment; the molecular mode of action of xenobiotics; biochemical and physiological interactions leading to change in organism health; pathophysiological interactions of natural and synthetic chemicals; development of biochemical indicators including new “-omics” approaches to identify biomarkers of exposure or effects for xenobiotics.
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