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Determination of enantiomeric compositions of amino acids by near-infrared spectrometry through complexation with carbohydrate

机译:通过与碳水化合物络合的近红外光谱法测定氨基酸的对映体组成

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摘要

A new method has been developed for the determination of enantiomeric compositions of a variety of compounds. The method is based on the use of the near-infrared technique to measure diastereomeric interactions between an added carbohydrate compound with both enantiomeric forms of an analyte followed by partial least-squares analysis of the data. The fact that the method works well with all three macrocyclic carbohydrates with different cavity size (i.e., alpha-, beta-, and gamma-cyclodextrin) as well as with sucrose, which is a linear carbohydrate, clearly demonstrates that it is not necessary to have inclusion complex formation in order to produce effective diastereomeric interactions. Rather, a simple adsorption of the analyte onto a carbohydrate is sufficient. Since inclusion complex formation is not a requisite, this method is not limited to the amino acid studies here but is rather universal and sensitive as it can, in principle, be used to determine enantiomeric compositions for all types of compounds with only microgram concentration and enantiomeric excess as low as 1.5%, in water or in a mixture of water and organic solvent. Furthermore, it does not rely on the use of rather expensive carbohydrates such as cyclodextrins but is equally as effective even with a simple and inexpensive carbohydrate such as sucrose. [References: 25]
机译:已经开发出一种用于测定多种化合物的对映体组成的新方法。该方法基于使用近红外技术来测量添加的碳水化合物化合物与分析物的两种对映体形式之间的非对映体相互作用,然后对数据进行部分最小二乘分析。该方法对三种具有不同空腔大小的大环碳水化合物(即α-,β-和γ-环糊精)以及蔗糖(一种线性碳水化合物)均能很好地起作用这一事实清楚地表明,不需要具有包合物的形成以产生有效的非对映异构相互作用。而是,将分析物简单吸附到碳水化合物上就足够了。由于不需要形成包合物,因此该方法不限于此处的氨基酸研究,而是通用且灵敏的,因为从原理上讲,该方法可用于确定所有类型化合物的对映体组成,且仅需微克浓度和对映体在水中或在水和有机溶剂的混合物中的过量低至1.5%。此外,它不依赖于使用相当昂贵的碳水化合物,例如环糊精,而是同样有效,即使是简单而廉价的碳水化合物,例如蔗糖。 [参考:25]

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