USDA, Agricultural Research Service, National Center for Agricultural Utilization Research, Mycotoxin Prevention and Applied Microbiology Research Unit. 1815 N. University, Peoria, IL 61604, USA.
USDA, Agricultural Research Service, National Center for Agricultural Utilization Research, Renewable Product Technology Research Unit. 1815 N. University, Peoria, IL 61604, USA.
Spectrochim Acta A Mol Biomol Spectrosc. 2022 Apr 5;270:120842. doi: 10.1016/j.saa.2021.120842. Epub 2022 Jan 3.
Mycotoxins, including zearalenone, are important natural products produced by fungi that occasionally contaminate agricultural commodities and pose serious health risks to consumers of food and feed. Zearalenone and its metabolite, α-zearalanol, are of significant concern due to their estrogenic and anabolic steroid activity. Several governments have regulatory standards and advisory guidelines for zearalenone and α-zearalanol. Raman and ultraviolet spectroscopy were employed with density functional theory methods to evaluate spectroscopic properties to distinguish between zearalenone and α-zearalanol systematically. Raman bands were assigned based on vibrational frequency calculations. A portable Raman spectroscopy instrument (785 nm laser) distinguished between zearalenone and α-zearalanol in a label-free manner. Many vibrational bands of zearalenone and α-zearalanol are similar, including high-intensity peaks at 1315 cm and 1650 cm. However, the intensities in the Raman spectra at 1465 cm, 1495 cm, and 1620 cm enabled the identification of zearalenone. The Raman peak at 1450 cm is associated with α-zearalanol. These vibrational bands serve as spectral indicators to differentiate between the structurally similar zearalenone and α-zearalanol.
真菌产生的霉菌毒素(包括玉米赤霉烯酮)是重要的天然产物,偶尔会污染农产品,对食品和饲料的消费者构成严重健康风险。玉米赤霉烯酮及其代谢物α-玉米赤霉醇由于具有雌激素和合成代谢类固醇活性而受到特别关注。一些国家的政府对玉米赤霉烯酮和α-玉米赤霉醇都有监管标准和咨询指南。拉曼和紫外光谱与密度泛函理论方法一起被用于评估光谱性质,以系统地区分玉米赤霉烯酮和α-玉米赤霉醇。根据振动频率计算对拉曼带进行了分配。一种便携式拉曼光谱仪(785nm 激光)以非标记的方式区分了玉米赤霉烯酮和α-玉米赤霉醇。玉米赤霉烯酮和α-玉米赤霉醇有许多相似的振动带,包括在 1315cm 和 1650cm 处的高强度峰。然而,在 1465cm、1495cm 和 1620cm 处的拉曼光谱中的强度使玉米赤霉烯酮得以识别。1450cm 处的拉曼峰与α-玉米赤霉醇有关。这些振动带是区分结构相似的玉米赤霉烯酮和α-玉米赤霉醇的光谱指标。