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通过同位素取代对具有α-、β-、γ-和δ-立体中心或手性的隐手性醇进行光学中继传感。

Optical Relay Sensing of Cryptochiral Alcohols Displaying α-, β-, γ- and δ-Stereocenters or Chirality by Virtue of Isotopic Substitution.

作者信息

Formen Jeffrey S S K, Wolf Christian

机构信息

Department of Chemistry, Georgetown University, Washington, DC-20057, USA.

出版信息

Angew Chem Int Ed Engl. 2024 Sep 2;63(36):e202409790. doi: 10.1002/anie.202409790. Epub 2024 Jul 29.

DOI:10.1002/anie.202409790
PMID:38880778
Abstract

A reaction-based optical relay sensing strategy that enables accurate determination of the concentration and enantiomeric ratio (er) of challenging chiral alcohols exhibiting stereocenters at the α-, β-, γ- or even δ-position or hard-to-detect cryptochirality arising from H/D substitution is described. This unmatched application scope is achieved with a conceptually new sensing approach by which the alcohol moiety is replaced with an optimized achiral sulfonamide chromophore to minimize the distance between the covalently attached chiroptical reporter unit and the stereogenic center in the substrate. The result is a remarkably strong, red-shifted CD induction that increases linearly with the sample er. The CD sensing part of the tandem assay is seamlessly coupled to a redox reaction with a quinone molecule to generate a characteristic UV response that is independent of the enantiopurity of the alcohol and thus allows determination of the total analyte concentration. The robustness and utility of the CD/UV relay are further verified by chromatography-free asymmetric reaction analysis with small aliquots of crude product mixtures, paving the way toward high-throughput chiral compound screening workflows which is a highly sought-after goal in the pharmaceutical industry.

摘要

本文描述了一种基于反应的光学中继传感策略,该策略能够准确测定具有挑战性的手性醇的浓度和对映体比例(er),这些手性醇在α-、β-、γ-甚至δ-位具有立体中心,或者由于H/D取代而产生难以检测的隐手性。这种无与伦比的应用范围是通过一种概念上全新的传感方法实现的,该方法将醇部分替换为优化的非手性磺酰胺发色团,以最小化共价连接的手性光学报告单元与底物中立体中心之间的距离。结果是产生了显著强烈的、红移的圆二色性(CD)诱导,其随样品er线性增加。串联测定中的CD传感部分与醌分子的氧化还原反应无缝耦合,以产生与醇的对映体纯度无关的特征紫外响应,从而允许测定总分析物浓度。通过使用少量粗产物混合物进行无色谱不对称反应分析,进一步验证了CD/UV中继的稳健性和实用性,为高通量手性化合物筛选工作流程铺平了道路,这是制药行业高度追求的目标。

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