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各向异性 F NMR 用于氟代手性药物中对映体分析的潜力和性能。

Potential and performance of anisotropic F NMR for the enantiomeric analysis of fluorinated chiral active pharmaceutical ingredients.

机构信息

Université Paris-Saclay, UFR d'Orsay, RMN en Milieu Orienté, ICMMO, UMR CNRS 8182, Bât. HM1, 17-19, Avenue des Sciences, 91400, Orsay, France.

Centre National de la Recherche Scientifique (CNRS), 3, Rue Michel Ange, F-75016 Paris, France.

出版信息

Analyst. 2024 May 28;149(11):3204-3213. doi: 10.1039/d4an00237g.

Abstract

Controlling the enantiomeric purity of chiral drugs is of paramount importance in pharmaceutical chemistry. Isotropic H NMR spectroscopy involving chiral agents is a widely used method for discriminating enantiomers and quantifying their relative proportions. However, the relatively weak spectral separation of enantiomers (H Δ(, )) in frequency units at low and moderate magnetic fields, as well as the lack of versatility of a majority of those agents with respect to different chemical functions, may limit the general use of this approach. In this article, we investigate the analytical potential of F NMR in anisotropic chiral media for the enantiomeric analysis of fluorinated active pharmaceutical ingredients (API) two residual anisotropic NMR interactions: the chemical shift anisotropy (F-RCSA) and dipolar coupling ((F-F)-RDC). Lyotropic chiral liquid crystals (CLC) based on poly-γ-benzyl-L-glutamate (PBLG) show an interesting versatility and adaptability to enantiodiscrimination as illustrated for two chiral drugs, Flurbiprofen® (FLU) and Efavirenz® (EFA), which have very different chemical functions. The approach has been tested on a routine 300 MHz NMR spectrometer equipped with a standard probe (5 mm BBFO probe) in a high-throughput context (, ≈10 s of NMR experiments) while the performance for enantiomeric excess () measurement is evaluated in terms of trueness and precision. The limits of detection (LOD) determined were 0.17 and 0.16 μmol ml for FLU and EFA, respectively, allow working in dilute conditions even with such a short experimental duration. The enantiodiscrimination capabilities are also discussed with respect to experimental features such as CLC composition and temperature.

摘要

控制手性药物的对映体纯度在药物化学中至关重要。涉及手性试剂的各向同性 H NMR 光谱学是一种广泛用于区分对映体并定量其相对比例的方法。然而,在低中和磁场下,对映体(H Δ(, )在频率单位上的相对较弱的光谱分离,以及大多数试剂在不同化学官能团方面的多功能性不足,可能会限制这种方法的广泛应用。在本文中,我们研究了各向异性手性介质中的 F NMR 在氟手性药物活性成分(API)的对映体分析中的分析潜力,包括两个残留各向异性 NMR 相互作用:化学位移各向异性(F-RCSA)和偶极耦合((F-F)-RDC)。基于聚-γ-苄基-L-谷氨酸(PBLG)的溶致手性液晶(CLC)表现出有趣的多功能性和对映体识别的适应性,如两种手性药物氟比洛芬(FLU)和依非韦伦(EFA)所示,它们具有非常不同的化学功能。该方法在配备标准探头(5 毫米 BBFO 探头)的常规 300 MHz NMR 光谱仪上进行了测试,在高通量背景下(,≈10 秒的 NMR 实验),同时还评估了对映体过量()测量的准确度和精密度。FLU 和 EFA 的检测限(LOD)分别为 0.17 和 0.16 μmol ml,即使在如此短的实验时间内,也允许在稀释条件下工作。还讨论了手性识别能力与 CLC 组成和温度等实验特征的关系。

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