Chouët Agathe, Chevallier Sylvie, Fleurisson Romain, Loisel Catherine, Dubreil Laurence
Oniris, Univ Nantes, CNRS, GEPEA, UMR 6144, F-44000 Nantes, France.
PAnTher, Oniris, INRA, Université Bretagne Loire, F-44307 Nantes, France.
Sensors (Basel). 2019 Apr 30;19(9):2024. doi: 10.3390/s19092024.
An innovative methodology based on non-destructive observation by using harmonic generation microscopy is proposed for detection and location of starch granules and oil in a fried starchy matrix and topography analysis of food products. Specific fluorescent probes were used to label the main biochemical components of the starchy fried matrix, namely starch and oil. Fluorescence of starch and oil respectively stained with Safranin O and Nile red was observed from non-linear microscopy. By using sequential scanning and specific emission filters, it was possible to merge fluorescence and harmonic generation signals. Second harmonic generation (SHG) generated by starch granules was superposed with safranin fluorescence, whereas third harmonic generation (THG), not restricted to the superposition with Nile red fluorescent signal, was used to investigate the topography of the fried product. By these experiments, starch granule mapping and topography of the starchy fried product were obtained without any destructive preparation of the sample. This label-free approach using harmonic generation microscopy is a very promising methodology for microstructure investigation of a large panel of starchy food products.
本文提出了一种基于谐波产生显微镜无损观察的创新方法,用于检测和定位油炸淀粉基质中的淀粉颗粒和油脂,并对食品进行形貌分析。使用特定的荧光探针标记淀粉油炸基质的主要生化成分,即淀粉和油脂。通过非线性显微镜观察分别用番红O和尼罗红染色的淀粉和油脂的荧光。利用顺序扫描和特定发射滤光片,可以将荧光信号与谐波产生信号合并。淀粉颗粒产生的二次谐波产生(SHG)与番红荧光叠加,而不限于与尼罗红荧光信号叠加的三次谐波产生(THG)则用于研究油炸产品的形貌。通过这些实验,无需对样品进行任何破坏性制备,即可获得淀粉颗粒分布图和淀粉油炸产品的形貌。这种使用谐波产生显微镜的无标记方法是一种非常有前途的方法,可用于研究大量淀粉类食品的微观结构。