亲水作用色谱法分析生物制药药物和治疗性肽:基于亲水作用色谱固定相分离特性的综述。
Hydrophilic interaction chromatography for the analysis of biopharmaceutical drugs and therapeutic peptides: A review based on the separation characteristics of the hydrophilic interaction chromatography phases.
机构信息
Faculty of Molecular Chemistry and Engineering, Kyoto Institute of Technology, Kyoto, Japan.
Institute of Pharmaceutical Sciences, Pharmaceutical (Bio-) Analysis, Eberhard-Karls Universität Tübingen, Tübingen, Germany.
出版信息
J Sep Sci. 2019 Jan;42(1):130-213. doi: 10.1002/jssc.201801074.
Applications of hydrophilic interaction chromatography for the analysis of biopharmaceutical drugs, i.e., glycosylated proteins represented by monoclonal antibodies are discussed in the manner of glycoproteomics. They can be analyzed using hydrophilic interaction chromatography in five different stages as (1) their intact forms, (2) their subunits, (3) N- and O-glycopeptides digested by proteases, (4) N- and O-glycans released from the glycoproteins or glycopeptides, and (5) monosaccharides. Hydrophilic interaction chromatography is a more useful tool in the order of (1) to (5). At the stages (4) and (5), quantitation of glycans and saccharides are also reported. Hydrophilic interaction chromatography is employed not only for analytical uses, but also pretreatment items as solid phase extraction, followed by reversed-phase liquid chromatography separations. Comprehensive search results of these application of hydrophilic interaction chromatography are summarized in tables to show what kind of hydrophilic interaction chromatography columns are suitable for each step of analysis.Relationship of favored and less favored hydrophilic interaction chromatography columns and their separation characteristics such as hydrophilicity, and selectivity for structural difference, is also discussed. Analysis of the therapeutic peptides (not glycosylated) using hydrophilic interaction chromatography is summarized, too.
亲水作用色谱在生物制药分析中的应用,即糖基化蛋白(以单克隆抗体为代表)的糖蛋白质组学分析方法进行了讨论。它们可以在五个不同阶段使用亲水作用色谱进行分析,分别为:(1)完整形式,(2)亚基,(3)蛋白酶消化的 N-和 O-糖肽,(4)从糖蛋白或糖肽中释放的 N-和 O-聚糖,以及(5)单糖。亲水作用色谱在(1)到(5)的顺序中是更有用的工具。在(4)和(5)阶段,聚糖和单糖的定量也有报道。亲水作用色谱不仅用于分析用途,还用于预处理项目,如固相萃取,然后进行反相液相色谱分离。亲水作用色谱应用的综合搜索结果总结在表格中,以显示哪种亲水作用色谱柱适合分析的每个步骤。还讨论了受欢迎和不太受欢迎的亲水作用色谱柱之间的关系及其分离特性,如亲水性和对结构差异的选择性。也总结了使用亲水作用色谱分析治疗性肽(非糖基化)的情况。