Research and Development Department, PENTAX New Ceramics Division, HOYA Corporation, Tokyo, Japan.
Talanta. 2011 Sep 15;85(3):1298-303. doi: 10.1016/j.talanta.2011.06.004. Epub 2011 Jun 12.
Polyethylenimine (PEI) has been widely used as a coating material to produce stationary phase for ion-exchange chromatography of biomolecules. However, a precise study of the PEI coating fraction has been lacking, despite such quantification being very important for fundamental research as well as identifying further industrial applications. In this study, we produced four types of PEI-coated hydroxyapatite (PEI-HAp) with various fractions of PEI (0.16%, 0.5%, 1.0%, 1.5%) using a spray-drying system to evaluate correlations between coating fractions and the thermochemical or chromatographic behaviors of theses products. The thermal analyses of these matrices showed two exothermic peaks when the PEI coating fraction exceeded 1.0%. The one peak indicated a PEI decomposition peak and the other would indicate bond dissociation of PEI layers formed over the HAp surface as the PEI concentration increased. Furthermore, the chromatographic analysis for the surface chemical characteristics showed the correlation between coating fraction and the retention time of protein or nucleotide. Acidic or phosphorylated proteins were more strongly adsorbed as the PEI coating fraction increased when the initial coating fraction was low, but at fraction exceeding 0.5%, constant retention was observed. The retention time of nucleotides increased in proportion to the fraction of PEI added. The good selectivity of PEI-HAp may be attributable to multifunctional interactions of electrostatic and bare Ca sites on HAp, not just the amino sites of PEI. These precise studies of PEI coating fraction are our original novel contributions, which could be achieved by quantitative consideration using thermal analysis and chromatography.
聚乙烯亚胺 (PEI) 已被广泛用作涂层材料,以制备用于生物分子离子交换色谱的固定相。然而,尽管这种定量对于基础研究以及确定进一步的工业应用非常重要,但对 PEI 涂层分数的精确研究却一直缺乏。在这项研究中,我们使用喷雾干燥系统制备了四种不同 PEI 分数(0.16%、0.5%、1.0%、1.5%)的 PEI 涂层羟基磷灰石 (PEI-HAp),以评估涂层分数与这些产品的热化学或色谱行为之间的相关性。这些基质的热分析表明,当 PEI 涂层分数超过 1.0%时,会出现两个放热峰。一个峰表示 PEI 分解峰,另一个峰表示随着 HAp 表面上形成的 PEI 层浓度的增加,PEI 层的键解离峰。此外,表面化学特性的色谱分析表明,涂层分数与蛋白质或核苷酸的保留时间之间存在相关性。当初始涂层分数较低时,随着 PEI 涂层分数的增加,酸性或磷酸化蛋白质的吸附能力更强,但当分数超过 0.5%时,保留时间保持不变。核苷酸的保留时间与添加的 PEI 分数成正比增加。PEI-HAp 的良好选择性可能归因于 HAp 上的静电和裸露 Ca 位点的多功能相互作用,而不仅仅是 PEI 的氨基位点。这些对 PEI 涂层分数的精确研究是我们的原创性新贡献,可以通过使用热分析和色谱进行定量考虑来实现。