Laboratoire des Sciences Analytiques, UMR CNRS 5180, Université de Lyon, 43 Boulevard du 11 Novembre 1918, 69622 Villeurbanne Cedex, France.
J Chromatogr A. 2010 Jan 22;1217(4):459-72. doi: 10.1016/j.chroma.2009.11.059. Epub 2009 Nov 20.
Reversed phase gradient elution is the method of choice for pharmaceuticals analysis since it allows reducing the analysis time while improving both the quality of the separation and the detection limits. The current trends are towards faster separations which can be achieved thanks to equipments withstanding ultra-high pressures and/or high temperatures. Under such conditions, gradient separations can be carried out within a few minutes or even a few tens of seconds. A long equilibration time in addition to the gradient time can be therefore very detrimental. In this work, we investigated the extent to which the gradient equilibration time can be reduced and which parameters mainly affect the retention variability of ionizable compounds when using volatile buffers. We first found out an excellent repeatability between run-to-run experiments whatever the equilibration time and the operating conditions. We then pointed out the key operating parameters which allow achieving reproducible runs when varying the equilibration time between runs. With a view of reducing the equilibration time, the effects of various conditions were examined. The latter include the type of additive for mobile phase pH adjustment, the initial eluent composition, the type of stationary phase, the temperature and the flow-rate. Although much remains to be understood about the equilibration process, our study allows making progress in the knowledge of this phenomenon. Based on the present results, a beneficial effect of both temperature and flow-rate was highlighted and operating conditions leading to faster column equilibration are suggested.
反相梯度洗脱是药物分析的首选方法,因为它可以缩短分析时间,同时提高分离质量和检测限。目前的趋势是朝着更快的分离发展,这得益于能够承受超高压和/或高温的设备。在这种条件下,梯度分离可以在几分钟甚至几十秒内完成。因此,长时间的平衡时间,加上梯度时间,可能会非常不利。在这项工作中,我们研究了在使用挥发性缓冲液时,梯度平衡时间可以缩短到何种程度,以及哪些参数主要影响可电离化合物的保留变异性。我们首先发现,无论平衡时间和操作条件如何,运行之间的实验之间都具有极好的重复性。然后,我们指出了在运行之间变化平衡时间时,实现可重现运行的关键操作参数。为了缩短平衡时间,研究了各种条件的影响。这些条件包括用于调整流动相 pH 的添加剂类型、初始洗脱液组成、固定相类型、温度和流速。尽管对于平衡过程还有很多需要了解,但我们的研究允许在对这种现象的认识上取得进展。基于目前的结果,强调了温度和流速的有益影响,并提出了导致更快柱平衡的操作条件。