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二维 EXSY 和 qNMR 光谱法在手性拆分 β-内酰胺后测定非对映过量的应用。

Application of 2D EXSY and qNMR Spectroscopy for Diastereomeric Excess Determination Following Chiral Resolution of β-Lactams.

机构信息

School of Pharmacy and Pharmaceutical Sciences, Panoz Institute and Trinity Biomedical Sciences Institute, 152-160 Pearse Street, Trinity College Dublin, Dublin 2, Ireland.

School of Chemistry, Trinity College Dublin, Dublin 2, Ireland.

出版信息

ChemistryOpen. 2023 Jun;12(6):e202200119. doi: 10.1002/open.202200119. Epub 2022 Jul 25.

Abstract

Trans-β-lactam isomers have garnered much attention as anti-cancer microtubule targeting agents. Currently available synthetic methods are available for the preparation of enantiopure β-lactams and favour isomeric cis/trans β-lactam mixtures. Indirect chiral resolution offers the opportunity for isolation of exclusively enantiopure trans-β-lactams. In this study, liquid chromatography chiral resolution of β-lactams derivatized as diastereomer mixtures with a panel of N-protected amino acids is explored, where N-(Boc)-L-proline served as the optimal chiral derivatising reagent. High-performance liquid chromatography failed to adequately determine diastereomeric excess (de) of resolved diastereomers. Variable temperature, H NMR and 2D EXSY spectroscopic analyses of proline-derivatised diastereomers were successfully employed to characterise equilibrating rotamers of resolved diastereomers and determine their de. Integration of resolved resonances corresponding to H and H of the β-lactam ring served as a quantitative qNMR tool for the calculation of de following resolution.

摘要

反式-β-内酰胺异构体作为抗癌微管靶向剂受到了广泛关注。目前可用于制备对映纯β-内酰胺的合成方法有利于顺式/反式β-内酰胺混合物的形成。间接手性拆分为分离纯对映体反式-β-内酰胺提供了机会。在这项研究中,探索了用一系列 N-保护氨基酸作为非对映异构体混合物衍生化的β-内酰胺的手性液相色谱拆分,其中 N-(Boc)-L-脯氨酸作为最佳的手性衍生试剂。高效液相色谱未能充分确定拆分非对映异构体的非对映过量 (de)。脯氨酸衍生的非对映异构体的变温、 H NMR 和二维 EXSY 光谱分析成功地用于表征了拆分非对映异构体的平衡旋转异构体,并确定了它们的 de。对应于β-内酰胺环的 H 和 H 的分离共振的积分可作为一种定量 qNMR 工具,用于计算拆分后的 de。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74a7/10233219/69ce95f1f07a/OPEN-12-e202200119-g005.jpg

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