Chiral recognition of some D and L-amino acids by microcrystalline cellulose assisted diffusion-ordered NMR spectroscopy

Bowen Han , Jing He , Shaohua Huang
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Abstract

Chiral amino acids play an indispensable role in living organisms. Diffusion-ordered NMR spectroscopy is an effective NMR tool and a noninvasive analytical method for the analyses of mixture without the need for physical separation of the analytes. However, conventional diffusion-ordered NMR spectroscopy method usually fails to resolve the mixtures of chiral amino acids because of their same molecular masses, sizes, and shapes. Microcrystalline cellulose has been gradually gained more and more interest owing to its wide compatibility, surface area, excellent separation efficiency, non-toxicity, cost-effective, and mechanical stability in many fields. Herein we provide a fast, simple, specific and sensitive method to resolve some D and L-amino acids mixtures by using microcrystalline cellulose as a matrix. This work recognized some D and L- proteinogenic amino acid enantiomers with diffusion-ordered NMR for the first time.

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微晶纤维素辅助扩散有序核磁共振光谱法手性识别某些D和l氨基酸
手性氨基酸在生物体中起着不可缺少的作用。扩散有序核磁共振波谱法是一种有效的核磁共振分析工具,是一种无需对被分析物进行物理分离就能对混合物进行分析的无创分析方法。然而,由于手性氨基酸的分子质量、大小和形状相同,传统的扩散有序核磁共振波谱方法通常无法解析手性氨基酸的混合物。微晶纤维素因其相容性广、表面积大、分离效率高、无毒、经济、机械稳定性好等优点,在许多领域逐渐受到人们的关注。本文以微晶纤维素为基质,提供了一种快速、简单、特异、灵敏的方法来分离D和l氨基酸混合物。本工作首次用扩散有序核磁共振识别了一些D -和L-蛋白质原氨基酸对映体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Microcrystalline cellulose (MCC)
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