Sanganyado Edmond, Lu Zhijiang, Gan Jay
Department of Environmental Sciences, University of California, Riverside, CA 92521, USA.
Department of Environmental Sciences, University of California, Riverside, CA 92521, USA.
J Chromatogr A. 2014 Nov 14;1368:82-8. doi: 10.1016/j.chroma.2014.09.054. Epub 2014 Sep 30.
We report for the first time the effect of liophilic mobile phase additives on the mechanism of chiral recognition of basic chiral pharmaceutical on a vancomycin based chiral stationary phase (CSP). Using methanol as the mobile phase and 0.005% formic acid as pH modifier, we evaluated the effect of different concentrations of three types of liophilic anions, formate (HCOO(-)), nitrate (NO3(-)), and acetate (CH3COO(-)), on enantioresolution (Rs), enantioselectivity (α) and retention factor (k) of enantiomers of fluoxetine and atenolol. The effect of liophilic ion types on k followed the Hofmeister series: CH3COO(-)>HCOO(-)>NO3(-). Increasing concentration from 4 to 20mM resulted in decreases in Rs and k in accordance to hydrophobicity of the liophilic anion. The effect of temperature or mobile phase composition on enantioseparation was determined at 13-40°C. For both analytes, standard changes in enthalpy (ΔH°) and entropy (ΔS°) calculated using van't Hoff plots (lnk against 1/T) to varied from -4.99 to -0.63 kJ/mol and -11.82 to 9.47 J/mol, respectively. The van't Hoff plots showed elution order of the enantiomers of each analyte did not reverse in the temperature range studied. Chiral recognition of the enantiomers of atenolol and fluoxetine in the presence of liophilic ions was enthalpy driven.
我们首次报道了亲脂性流动相添加剂对基于万古霉素的手性固定相(CSP)上碱性手性药物手性识别机制的影响。以甲醇为流动相,0.005%甲酸为pH调节剂,我们评估了三种亲脂性阴离子,即甲酸根(HCOO(-))、硝酸根(NO3(-))和乙酸根(CH3COO(-))的不同浓度对氟西汀和阿替洛尔对映体的分离度(Rs)、对映选择性(α)和保留因子(k)的影响。亲脂性离子类型对k的影响遵循霍夫迈斯特序列:CH3COO(-)>HCOO(-)>NO3(-)。浓度从4mM增加到20mM会导致Rs和k根据亲脂性阴离子的疏水性而降低。在13 - 40°C下测定了温度或流动相组成对映体分离的影响。对于两种分析物,使用范特霍夫图(lnk对1/T)计算得到的标准焓变(ΔH°)和熵变(ΔS°)分别在-4.99至-0.63kJ/mol和-11.82至9.47J/mol之间变化。范特霍夫图表明,在所研究的温度范围内,每种分析物对映体的洗脱顺序没有反转。在亲脂性离子存在下,阿替洛尔和氟西汀对映体的手性识别是由焓驱动的。