Huang Xiaodong, Qin Feng, Chen Xiaoming, Liu Yueqi, Zou Hanfa
National Chromatographic Research & Analysis Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116011, China.
J Chromatogr B Analyt Technol Biomed Life Sci. 2004 May 5;804(1):13-8. doi: 10.1016/j.jchromb.2004.01.015.
Three molecularly imprinted monolithic columns with different length but almost identical column volume had been prepared. It was observed that the separation factors of diastereomers and enantiomers were almost unaffected by column length. However, the short column with dimension of 38 mm x 8 mm i.d. showed much lower resistance to flow rate so that it could be operated at much higher flow rates. By combining stepwise gradient elution with elevated flow rate, the diastereomers of cinchonine and cinchonidine and the enantiomers of Cbz-DL-Trp and Fmoc-DL-Trp were successfully separated within 3 min on the short column with dimension of 38 mm x 8 mm i.d. Based on the above results, a cinchonine imprinted monolithic disk with dimension of 10mm x 16 mm i.d. was further developed. The SEM image and the pore size distribution profile showed that large flow-through pores are present on the prepared monolith, which allowed mobile phase to flow through the disk with very low resistance. Chromatographic performances on the monolithic disk were almost unchanged compared with the long columns. A rapid separation of cinchonine and cinchonidine was achieved in 2.5 min at the flow rate of 9.0 ml/min. Furthermore, it was observed that there was almost no effect of the flow rate on the dynamic binding capacity at high flow rates. In addition, the effect of the loading concentration of analytes on the dynamic binding capacity, namely adsorption isotherm, was also investigated. A non-linear adsorption isotherm of cinchonine was observed on the molecularly imprinted monolith with cinchonine as template, which might be a main reason to result in the peak tailing of template molecule.
制备了三根长度不同但柱体积几乎相同的分子印迹整体柱。观察到非对映体和对映体的分离因子几乎不受柱长的影响。然而,内径为8 mm、长度为38 mm的短柱显示出对流速的阻力要低得多,因此可以在更高的流速下操作。通过将逐步梯度洗脱与提高流速相结合,在一根内径为8 mm、长度为38 mm的短柱上,辛可宁和辛可尼丁的非对映体以及Cbz-DL-色氨酸和Fmoc-DL-色氨酸的对映体在3分钟内成功分离。基于上述结果,进一步研制了一种内径为16 mm、直径为10 mm的辛可宁印迹整体盘。扫描电子显微镜图像和孔径分布曲线表明,制备的整体柱上存在大的贯穿孔,这使得流动相能够以非常低的阻力流过圆盘。与长柱相比,整体盘的色谱性能几乎没有变化。在流速为9.0 ml/min时,2.5分钟内实现了辛可宁和辛可尼丁的快速分离。此外,观察到在高流速下流速对动态结合容量几乎没有影响。此外,还研究了分析物负载浓度对动态结合容量的影响,即吸附等温线。以辛可宁为模板的分子印迹整体柱上观察到辛可宁的非线性吸附等温线,这可能是导致模板分子峰拖尾的主要原因。