Anouti Suzanne, Vandenabeele-Trambouze Odile, Koval Dusan, Cottet Hervé
Institut des Biomolécules Max Mousseron, UMR CNRS, Montpellier, France.
Electrophoresis. 2009 Jan;30(1):2-10. doi: 10.1002/elps.200800629.
A new methodology based on heart-cutting 2-D CE in a single capillary was developed for the chiral separation of a mixture of 22 underivatized amino acids. The first dimension is performed in an achiral BGE (2.3 M acetic acid, pH 2.1) allowing the separation of the analytes as a function of their charge-to-radius ratio. A selected fraction from the first dimension is then separated in the second dimension in the presence of a chiral selector (+)-(18-crown-6)-2,3,11,12-tetracarboxylic acid. Since the introduction of the second electrolyte is performed by pressure mobilization, capillaries with small id of 10 microm are used to limit the peak broadening due to Taylor dispersion. Double capacitively coupled contactless conductivity detector is used for monitoring the selection and the isolation of the fraction at the different steps of the analysis (voltage and pressure mobilization steps). This double detection allows calculating the voltage and pressure stop times in real-time analysis. This new methodology is applied with success for the chiral separation of different amino acids (D,L-Tyr, D,L-Trp and D,L-Thr) contained in a mixture of 22 native amino acids.
一种基于单毛细管中心切割二维毛细管电泳的新方法被开发出来,用于对22种未衍生化氨基酸混合物进行手性分离。第一维在非手性背景电解质(2.3 M乙酸,pH 2.1)中进行,可根据分析物的电荷半径比实现分离。然后,从第一维中选择的一部分在第二维中,在手性选择剂(+)-(18-冠-6)-2,3,11,12-四羧酸存在下进行分离。由于通过压力驱动引入第二种电解质,因此使用内径为10微米的小毛细管来限制由于泰勒扩散导致的峰展宽。双电容耦合非接触式电导检测器用于监测分析不同步骤(电压和压力驱动步骤)中馏分的选择和分离。这种双重检测允许在实时分析中计算电压和压力停止时间。这种新方法成功地应用于对22种天然氨基酸混合物中包含的不同氨基酸(D,L-酪氨酸、D,L-色氨酸和D,L-苏氨酸)进行手性分离。