Deng Ganqi, Nagy Carlene, Yu Peiqiang
Department of Animal and Poultry Science, College of Agriculture and Bioresources, University of Saskatchewan, Saskatoon, SK, Canada.
Crit Rev Food Sci Nutr. 2023;63(25):7225-7237. doi: 10.1080/10408398.2022.2045470. Epub 2022 Mar 3.
Synchrotron radiation based on Fourier transform infrared radiation (SR-FTIR), X-ray fluorescence (XRF) and attenuated total reflection based on Fourier transform infrared radiation (ATR-FTIR) spectroscopy are both fast determining and minimal sample preparing techniques. They are capable of detecting the internal molecular structures. However, these techniques are still not well understood by nutrition researchers for the analysis of feed. The purpose of this review is to introduce advanced SR-FTIR, XRF, and ATR-FTIR molecular techniques, use these techniques to study chemical and nutrient profiles of Avena sativa grain, and lastly to study the nutrition and structure interactive association properties. The review mainly focuses on the following aspects: 1) the background information of Avena sativa grain; its history, chemical composition, nutrient profile, inherent structure, and production; 2) molecular spectroscopic techniques; principles and spectral analysis methodology of SR-FTIR, XRF and ATR-FTIR; 3) the application of SR-FTIR, XRF, and ATR-FTIR as a novel approach. This review provides an insight on how molecular spectroscopic techniques could be used for the study of nutrition and structure interactive association properties.
基于傅里叶变换红外辐射的同步辐射(SR-FTIR)、X射线荧光(XRF)以及基于傅里叶变换红外辐射的衰减全反射(ATR-FTIR)光谱技术都是快速测定且样品制备要求极低的技术。它们能够检测内部分子结构。然而,营养研究人员对这些技术在饲料分析中的应用仍了解不足。本综述的目的是介绍先进的SR-FTIR、XRF和ATR-FTIR分子技术,运用这些技术研究燕麦籽粒的化学和营养成分,最后研究营养与结构的交互关联特性。该综述主要聚焦于以下几个方面:1)燕麦籽粒的背景信息,包括其历史、化学成分、营养成分、内在结构和产量;2)分子光谱技术,SR-FTIR、XRF和ATR-FTIR的原理及光谱分析方法;3)SR-FTIR、XRF和ATR-FTIR作为一种新方法的应用。本综述深入探讨了分子光谱技术如何用于研究营养与结构的交互关联特性。