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利用便携式串联质谱分析感染炭黑曲霉的葡萄浆果中的挥发性排放物。

Analysis of volatile emissions from grape berries infected with Aspergillus carbonarius using hyphenated and portable mass spectrometry.

机构信息

Q Technologies Ltd, 100 Childwall Road, Liverpool, L15 6UX, UK.

Department of Chemistry and Applied Biosciences, ETH Zurich, 8093, Zurich, Switzerland.

出版信息

Sci Rep. 2020 Dec 3;10(1):21179. doi: 10.1038/s41598-020-78332-z.

Abstract

Mycotoxins represent a serious risk for human and animal health. Οchratoxin A (OTA) is a carcinogenic mycotoxin produced by A. carbonarius that constitutes a severe problem for viticulture. In this study, we investigate the development of novel detection and on-line monitoring approaches for the detection of OTA in the field (i.e. out of the chemical laboratory) using advanced molecular sensing. Both stand-alone and hyphenated mass spectrometry (MS) based systems (e.g. Time-of-Flight ToF-MS and gas chromatography GC combined with MS) and compact portable membrane inlet MS (MIMS) have been employed for the first time to detect and monitor volatile emissions of grape berries infected by the fungus Aspergillus carbonarius. In vacuo (electron impact-EI) and ambient ionisation (electrospray ionisation-ESI) techniques were also examined. On-line measurements of the volatile emissions of grape berries, infected by various strains of A. carbonarius with different toxicity levels, were performed resulting in different olfactory chemical profiles with a common core of characteristic mass fragments, which could be eventually used for on-site detection and monitoring allowing consequent improvement in food security.

摘要

真菌毒素对人类和动物健康构成严重威胁。赭曲霉毒素 A(OTA)是一种由 A. carbonarius 产生的致癌真菌毒素,它是葡萄栽培中的一个严重问题。在这项研究中,我们使用先进的分子传感技术研究了新型的现场(即不在化学实验室中)检测和在线监测 OTA 的方法。首次使用独立和连接的质谱(MS)系统(例如飞行时间 ToF-MS 和与 MS 结合的气相色谱 GC)和紧凑型便携式膜进样 MS(MIMS)来检测和监测受真菌 Aspergillus carbonarius 感染的葡萄浆果的挥发性排放物。还检查了真空(电子冲击-EI)和环境电离(电喷雾电离-ESI)技术。对受不同毒性水平的各种 A. carbonarius 菌株感染的葡萄浆果的挥发性排放物进行了在线测量,得到了不同的气味化学特征谱,其中存在共同的特征质量碎片核心,这些特征最终可用于现场检测和监测,从而提高食品安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/860d/7713432/1c45fb5f3f0b/41598_2020_78332_Fig1_HTML.jpg

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