Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee, India.
School of Basic Science, Indian Institute of Technology Mandi, Mandi, India.
Biomed Chromatogr. 2020 Dec;34(12):e4954. doi: 10.1002/bmc.4954. Epub 2020 Aug 10.
A micellar liquid chromatographic method was developed for the green enantioseparation of racemic amino alcohols using an aqueous solution of the mixed surfactants as an alternative for organic solvents. In this study, the derivatives of the amino alcohols were synthesized using highly reactive chiral esters of (S)-levofloxacin (Lfx) under microwave conditions, and an aqueous solution of the surfactants (Brij-35 and SDS) was used for the enantioseparation of the synthesized diastereomeric derivatives (DDs) of amino alcohols using reversed-phase HPLC. The activated ester of Lfx was synthesized by reacting with N-hydroxybenzotriazole and characterized using UV, IR, H NMR, high-resolution mass spectrometry, and elemental analysis. The DDs of racemic amino alcohols were separated on a C column using micellar LC. Chromatographic conditions were optimized by varying the concentration of the surfactants in aqueous solution and by varying the concentration and pH of the buffer. The green assessment score was calculated for the developed method (score: 82, an excellent green method). In addition, the density functional theory calculations were performed to develop the lowest energy-optimized structures of DDs. The method was validated according to the International Conference of Harmonization guidelines, and the retention factor (k), selectivity factor (α), resolution factor (R ), limit of detection (0.198 ng mL or 0.291 pM mL ), and limit of quantification (0.594 ng mL or 0.873 pM mL ) were calculated.
建立了一种胶束液相色谱法,用于在手性酯(S)-左氧氟沙星(Lfx)的作用下,通过微波条件下合成的氨基酸醇的衍生物,并用表面活性剂(Brij-35 和 SDS)的水溶液在反相 HPLC 中对氨基酸醇的合成非对映异构体衍生物(DDs)进行对映体拆分。Lfx 的活化酯是通过与 N-羟基苯并三唑反应合成的,并通过紫外、红外、 1 H NMR、高分辨质谱和元素分析进行了表征。使用胶束 LC 分离了外消旋氨基酸醇的 DDs。通过改变水相中的表面活性剂浓度和缓冲液的浓度和 pH 来优化色谱条件。为所开发的方法计算了绿色评估得分(得分:82,优秀的绿色方法)。此外,还进行了密度泛函理论计算,以开发 DDs 的最低能量优化结构。该方法根据国际协调会议指南进行了验证,计算了保留因子(k)、选择性因子(α)、分辨率因子(R)、检测限(0.198ngmL 或 0.291pMmL)和定量限(0.594ngmL 或 0.873pMmL)。