Department of Drug Science and Technology, Università degli Studi di Torino, Via Giuria 9, 10125 Torino, Italy.
Istituto Zooprofilattico Sperimentale del Piemonte, Liguria e Valle d'Aosta, Via Bologna 148, 10154 Torino, Italy.
Food Chem. 2017 Aug 15;229:268-275. doi: 10.1016/j.foodchem.2017.02.089. Epub 2017 Feb 21.
The existing European Regulation (EC n° 51/2013) prohibits the use of animals meals in feedstuffs in order to prevent Bovine Spongiform Encephalopathy infection and diffusion, however the legislation is rapidly moving towards a partial lifting of the "feed ban" and the competent control organisms are urged to develop suitable analytical methods able to avoid food safety incidents related to animal origin products. The limitations of the official methods (i.e. light microscopy and Polymerase Chain Reaction) suggest exploring new analytic ways to get reliable results in a short time. The combination of spectroscopic techniques with optical microscopy allows the development of an individual particle method able to meet both selectivity and sensitivity requirements (0.1%w/w). A spectroscopic method based on Fourier Transform micro-Raman spectroscopy coupled with Discriminant Analysis is here presented. This approach could be very useful for in-situ applications, such as customs inspections, since it drastically reduces time and costs of analysis.
现有的欧洲法规(EC n° 51/2013)禁止在饲料中使用动物源性饲料,以防止牛海绵状脑病的感染和传播,但立法正迅速朝着部分解除“饲料禁令”的方向发展,主管控制机构被敦促开发合适的分析方法,以避免与动物源性产品相关的食品安全事件。官方方法(即光学显微镜和聚合酶链反应)的局限性表明,需要探索新的分析方法,以便在短时间内获得可靠的结果。将光谱技术与光学显微镜相结合,可以开发出一种能够满足选择性和灵敏度要求(0.1%w/w)的单个颗粒方法。本文提出了一种基于傅里叶变换微型拉曼光谱结合判别分析的光谱方法。这种方法对于现场应用(如海关检查)非常有用,因为它大大减少了分析的时间和成本。