Prosperini Alessandra, Berrada Houda, Ruiz María José, Caloni Francesca, Coccini Teresa, Spicer Leon J, Perego Maria Chiara, Lafranconi Alessandra
Laboratory of Toxicology, Faculty of Pharmacy, University of Valencia, Valencia, Spain.
Department of Veterinary Medicine (DIMEVET), Università degli Studi di Milano, Milan, Italy.
Front Public Health. 2017 Nov 16;5:304. doi: 10.3389/fpubh.2017.00304. eCollection 2017.
Mycotoxin enniatin B (ENN B) is a secondary metabolism product by fungi. It is a well-known antibacterial, antihelmintic, antifungal, herbicidal, and insecticidal compound. It has been found as a contaminant in several food commodities, particularly in cereal grains, co-occurring also with other mycotoxins. The primary mechanism of action of ENN B is mainly due to its ionophoric characteristics, but the exact mechanism is still unclear. In the last two decades, it has been a topic of great interest since its potent mammalian cytotoxic activity was demonstrated in several mammalian cell lines. Moreover, the co-exposure with other mycotoxins enhances its toxic potential through synergic effects, depending on the concentrations tested. Despite its clear cytotoxic effect, European Food Safety Authority stated that acute exposure to ENNs, such as ENN B, does not indicate concern for human health, but a concern might be the chronic exposure. However, given the lack of relevant toxicity data, no firm conclusion could be drawn and a risk assessment was not possible. In fact, very few studies have been carried out and, in these studies, no adverse effects were observed. So, research on toxicological effects induced by ENN B is still on-going. Recently, some studies are dealing with new advances regarding ENN B. This review summarizes the information on biochemical and biological activity of ENN B, focusing on toxicological aspects and on the latest advances in research on ENN B.
霉菌毒素恩镰孢菌素B(ENN B)是真菌产生的一种次级代谢产物。它是一种广为人知的具有抗菌、抗蠕虫、抗真菌、除草和杀虫作用的化合物。人们已在多种食品中发现它是一种污染物,尤其是在谷物中,它还会与其他霉菌毒素共同存在。ENN B的主要作用机制主要归因于其离子载体特性,但其确切机制仍不清楚。在过去二十年中,自从在多种哺乳动物细胞系中证明其具有强大的哺乳动物细胞毒性活性以来,它一直是一个备受关注的话题。此外,与其他霉菌毒素共同暴露会通过协同效应增强其毒性潜力,这取决于所测试的浓度。尽管其细胞毒性作用明显,但欧洲食品安全局表示,急性接触ENN,如ENN B,并未表明对人类健康构成担忧,但慢性接触可能令人担忧。然而,由于缺乏相关毒性数据,无法得出确凿结论,也无法进行风险评估。事实上,相关研究开展得很少,而且在这些研究中未观察到不良反应。所以,关于ENN B诱导的毒理学效应的研究仍在进行中。最近,一些研究正在探讨关于ENN B的新进展。本综述总结了ENN B的生化和生物学活性方面的信息,重点关注毒理学方面以及ENN B研究的最新进展。