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解析空气等离子体诱导黄曲霉毒素B降解和解毒的途径。

Unravelling the pathways of air plasma induced aflatoxin B degradation and detoxification.

作者信息

Hojnik Nataša, Modic Martina, Walsh James L, Žigon Dušan, Javornik Uroš, Plavec Janez, Žegura Bojana, Filipič Metka, Cvelbar Uroš

机构信息

Jozef Stefan Institute, Ljubljana, Slovenia; Jozef Stefan International Postgraduate School, Ljubljana, Slovenia; Department of Electrical Engineering and Electronics, University of Liverpool, Liverpool, United Kingdom.

Jozef Stefan Institute, Ljubljana, Slovenia.

出版信息

J Hazard Mater. 2021 Feb 5;403:123593. doi: 10.1016/j.jhazmat.2020.123593. Epub 2020 Aug 2.

Abstract

Aflatoxins are considered to be a critical dietary risk factor for humans, with aflatoxin B (AFB) identified by the WHO as one of the most potent natural group 1 carcinogen. Despite this, more than half of the world's population is chronically exposed, resulting in up to 170,000 annual cases of human hepatocellular carcinoma cancer. Here we report an easily implemented approach using non-equilibrium plasma for targeted degradation of AFB. Apart from reaching the 100 % decontamination in less than 120 s of treatment, this is the first study that combines hypersensitive analytical methods such as high-resolution mass spectroscopy (HRMS) and nuclear magnetic resonance spectroscopy (NMR) to provide a detailed description of CAP mediated AFB degradation. We identify rapid scission of the vinyl bond between 8- and 9-position on the terminal furan ring of AFB as being of paramount importance for the suppression of toxic potential, which is confirmed by the examination of both cytotoxicity and genotoxicity. The plasma reactive species mediated degradation pathways are elucidated, and it is demonstrated that the approach not only renders AFB harmless but does so in order of magnitude less time than UV irradiation as one of the other non-thermal methods currently under investigation.

摘要

黄曲霉毒素被认为是人类饮食中的一个关键风险因素,世界卫生组织已将黄曲霉毒素B(AFB)确定为最具毒性的天然1类致癌物之一。尽管如此,世界上仍有超过一半的人口长期暴露于黄曲霉毒素中,每年导致多达17万例人类肝细胞癌病例。在此,我们报告一种利用非平衡等离子体对AFB进行靶向降解的简便方法。除了在不到120秒的处理时间内实现100%的去污率外,这还是第一项结合高分辨率质谱(HRMS)和核磁共振光谱(NMR)等高灵敏度分析方法,以详细描述电容耦合等离子体(CAP)介导的AFB降解的研究。我们确定,AFB末端呋喃环8位和9位之间的乙烯基键的快速断裂对于抑制其毒性至关重要,这一点通过细胞毒性和遗传毒性检测得到了证实。阐明了等离子体活性物质介导的降解途径,结果表明,该方法不仅使AFB无害化,而且与目前正在研究的其他非热方法之一紫外线照射相比,所需时间要少几个数量级。

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