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高内相乳液衍生聚合物上可离子化配体基团密度的非侵入性测定

Non-invasive determination of ionizable ligand group density on high internal phase emulsion derived polymer.

机构信息

Faculty for Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000 Ljubljana, Slovenia.

PolyOrgLab, Faculty for Chemistry and Chemical Engineering, University of Maribor, Smetanova 17, 2000 Maribor, Slovenia.

出版信息

J Chromatogr A. 2021 Aug 30;1652:462077. doi: 10.1016/j.chroma.2021.462077. Epub 2021 Mar 18.

Abstract

Stepwise change between low and high salt concentration buffers of the same pH results in pH transition, the length of which was demonstrated to be proportional to the quantity of ion-exchange groups present on the matrix. In this work, we analyzed the effect of the ligand type, density, and buffer concentration on the pH transition shape for typical ion-exchange groups (QA, DEAE, SO3, and COOH) and ligands acting as metal-chelators, such as IDA, TAEA, and EDA. It was demonstrated that pH transition can occur either as a chromatographic or flat-top peak. pH transition peaks were evaluated by their length, height, and peak center parameters. While no parameter can describe the ligand density accurately with a single linear correlation for both peak types, all parameters can be used for the description of one peak type. Peak length and height exhibited the same accuracy, while their sensitivity depended on the pH transition shape: length being more sensitive for the flat-top peaks, while height for the chromatographic peaks. pH height can be obtained faster, at lower elution volume, and seems to be more suitable for the determination of low amounts of ligand, when typically chromatographic peak type pH transitions occur.

摘要

在相同 pH 值的低盐浓度缓冲液和高盐浓度缓冲液之间逐步改变会导致 pH 值转变,转变的长度与基质上存在的离子交换基团的数量成正比。在这项工作中,我们分析了配体类型、密度和缓冲液浓度对典型离子交换基团(QA、DEAE、SO3 和 COOH)和作为金属螯合剂的配体(IDA、TAEA 和 EDA)的 pH 转变形状的影响。结果表明,pH 转变既可以作为色谱峰,也可以作为平顶峰发生。通过长度、高度和峰中心参数对 pH 转变峰进行评估。虽然对于两种峰类型,没有一个参数可以用单一的线性相关关系准确描述配体密度,但所有参数都可用于描述一种峰类型。峰长和峰高具有相同的准确性,但其灵敏度取决于 pH 转变形状:对于平顶峰,峰长更敏感,而对于色谱峰,峰高更敏感。当通常发生色谱峰类型 pH 转变时,pH 高度可以更快地获得,在更低的洗脱体积下获得,并且似乎更适合于低浓度配体的测定。

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