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Recent Research and Progress in Food, Feed and Nutrition with Advanced Synchrotron-based SR-IMS and DRIFT Molecular Spectroscopy

机译:先进的基于同步加速器的SR-IMS和DRIFT分子光谱技术在食品,饲料和营养中的最新研究与进展

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摘要

Ultraspatially resolved synchrotron radiation based infrared microspectroscopy is able to detect the structure features of a food or feed tissue at cellular and molecular levels. However, to date, this advanced synchrotron-based technique is almost unknown to food and feed scientists. The objective of this article was to introduce this novel analytical technology, ultra-spatially resolved synchrotron radiation based infrared microspectroscopy (SR-IMS) to food, feed, conventional nutrition, and molecular nutrition scientists. The emphasis of this review focused on the following areas: (1) Principles of molecular spectroscopy for food and feed structure research, such as protein molecular structure, carbohydrate conformation, heating induced protein structure changes, and effect of gene-transformation on food and feed structure; (2) Molecular spectral analysis methodology; (3) Biological applications of synchrotron SR-IMS and DRIFT spectroscopy; and (4) Recent progress in food, feed and nutrition research program. The information described in this article gives better insight in food structure research progress and update.
机译:基于超空间分辨的同步加速器辐射的红外光谱技术能够在细胞和分子水平上检测食物或饲料组织的结构特征。但是,迄今为止,这种先进的基于同步加速器的技术对食品和饲料科学家几乎是未知的。本文的目的是向食品,饲料,常规营养和分子营养学家介绍这种新颖的分析技术,基于超空间分辨的基于同步辐射的红外光谱(SR-IMS)。这篇综述的重点集中在以下几个方面:(1)用于食品和饲料结构研究的分子光谱学原理,例如蛋白质分子结构,碳水化合物构象,加热引起的蛋白质结构变化以及基因转化对食品和饲料的影响结构体; (2)分子光谱分析法; (3)同步加速器SR-IMS和DRIFT光谱的生物学应用; (4)食品,饲料和营养研究计划的最新进展。本文中描述的信息可以更好地了解食品结构的研究进展和更新。

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