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通过同核去耦双照射核磁共振方法改进环丙烷脂肪酸的检测与定量分析

Improved Detection and Quantification of Cyclopropane Fatty Acids via Homonuclear Decoupling Double Irradiation NMR Methods.

作者信息

Eltemur Dilek, Robatscher Peter, Oberhuber Michael, Ceccon Alberto

机构信息

Laimburg Research Centre, Laimburg 6 - Pfatten (Vadena), Auer (Ora), BZ 39040, Italy.

Faculty of Agricultural, Environmental and Food Sciences, Free University of Bozen-Bolzano, Piazza Università 5, Bozen-Bolzano 39100, Italy.

出版信息

ACS Omega. 2023 Oct 24;8(44):41835-41843. doi: 10.1021/acsomega.3c06538. eCollection 2023 Nov 7.

Abstract

Over the years, NMR spectroscopy has become a powerful analytical tool for the identification and quantification of a variety of natural compounds in a broad range of food matrices. Furthermore, NMR can be useful for characterizing food matrices in terms of quality and authenticity, also allowing for the identification of counterfeits. Although NMR requires minimal sample preparation, this technique suffers from low intrinsic sensitivity relative to complementary techniques; thus, the detection of adulterants or markers for authenticity at low concentrations remains challenging. Here, we present a strategy to overcome this limitation by the introduction of a simple band-selective homonuclear decoupling sequence that consists of double irradiation on H during NMR signal acquisition. The utility of the proposed method is tested on dihydrosterculic acid (DHSA), one of the cyclopropane fatty acids (CPFAs) shown to be a powerful molecular marker for authentication of milk products. A quantitative description of how the proposed NMR scheme allows sensitivity enhancement yet accurate quantification of DHSA is provided.

摘要

多年来,核磁共振光谱已成为一种强大的分析工具,可用于鉴定和定量各种食品基质中的多种天然化合物。此外,核磁共振可用于从质量和真伪方面表征食品基质,还能用于识别假冒伪劣产品。尽管核磁共振所需的样品制备极少,但相对于互补技术而言,该技术的固有灵敏度较低;因此,低浓度掺假物或真伪标记物的检测仍然具有挑战性。在此,我们提出一种策略来克服这一限制,即引入一种简单的带选择性同核去耦序列,该序列在核磁共振信号采集期间对氢进行双重照射。所提出方法的实用性在二氢苹婆酸(DHSA)上进行了测试,二氢苹婆酸是环丙烷脂肪酸(CPFAs)之一,已被证明是乳制品认证的有力分子标记物。本文提供了关于所提出的核磁共振方案如何提高灵敏度并实现DHSA准确定量的定量描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad31/10634279/b32356f6396b/ao3c06538_0001.jpg

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