Department of Drug Sciences, University of Pavia, Via Taramelli 12, I-27100, Pavia, Italy; Division of BioAnalytical Chemistry, Department of Chemistry and Pharmaceutical Sciences, Vrije Universiteit Amsterdam, de Boelelaan 1085, 1081 HV, Amsterdam, The Netherlands.
Division of BioAnalytical Chemistry, Department of Chemistry and Pharmaceutical Sciences, Vrije Universiteit Amsterdam, de Boelelaan 1085, 1081 HV, Amsterdam, The Netherlands.
Anal Chim Acta. 2017 Aug 15;981:94-105. doi: 10.1016/j.aca.2017.05.020. Epub 2017 Jun 2.
Improved methods for detailed characterization of complex glycoproteins are required in the growing sector of biopharmaceuticals. Hydrophilic interaction liquid chromatography (HILIC) coupled to high resolution (HR) time-of-flight mass spectrometric (TOF-MS) detection was examined for the characterization of intact neo-glycoproteins prepared by chemical conjugation of synthetic saccharides to the lysine residues of selected recombinant proteins. The separation performances of three different amide HILIC columns (TSKgel Amide-80, XBridge BEH and AdvanceBio Glycan Mapping) were tested. Water-acetonitrile gradients and volatile eluent additives have been explored. Addition of 0.05% (v/v) trifluoroacetic acid to the mobile phase appeared to be essential for achieving optimum resolution of intact glycoforms and minimal ion suppression effects. Gradient elution conditions were optimized for each protein on every column. HILIC stationary phases were evaluated for the analysis of highly heterogeneous semi-synthetic derivatives of the same protein (ribonuclease A), and in the enhanced characterization of TB10.4 and Ag85B glycoconjugates, selected antigens from Mycobacterium tuberculosis (MTB). HILIC-MS results indicated that the HILIC selectivity is predominantly governed by size of the conjugated glycans and number of glycans attached, providing efficient glycoform separation. Moreover, HILIC separation prior to HRMS detection allowed assignment of several product impurities. Additional top-down MS/MS experiments confirmed conjugation at the N-terminus of TB10.4 next to its lysine residue. Overall, the obtained results demonstrate that amide-stationary-phase based HILIC coupled to MS is highly useful for the characterization of intact neo-glycoproteins allowing assessment of the number, identity and relative abundance of glycoforms present in the semi-synthetic products.
在生物制药这个不断发展的领域,需要改进用于复杂糖蛋白详细特征分析的方法。本文考察了亲水作用色谱(HILIC)与高分辨(HR)飞行时间质谱(TOF-MS)联用,用于分析通过化学方法将合成糖连接到选定重组蛋白赖氨酸残基上制备的完整新糖蛋白。测试了三种不同酰胺 HILIC 柱(TSKgel Amide-80、XBridge BEH 和 AdvanceBio Glycan Mapping)的分离性能,探索了水-乙腈梯度和挥发性洗脱剂添加剂。在流动相中添加 0.05%(v/v)三氟乙酸似乎是实现最佳完整糖型分辨率和最小离子抑制效果的关键。针对每种蛋白质在每根柱子上优化了梯度洗脱条件。在分析同一种蛋白质(核糖核酸酶 A)的高度异质半合成衍生物和增强 TB10.4 和 Ag85B 糖缀合物(结核分枝杆菌(MTB)的两种选定抗原)的特征时,评估了 HILIC 固定相。HILIC-MS 结果表明,HILIC 的选择性主要由连接的糖的大小和连接的糖的数量决定,提供了有效的糖型分离。此外,在 HRMS 检测之前进行 HILIC 分离允许分配几个产物杂质。额外的自上而下 MS/MS 实验证实了 TB10.4 在其赖氨酸残基旁边的 N 端的连接。总的来说,所得结果表明,基于酰胺固定相的 HILIC 与 MS 联用非常有助于完整新糖蛋白的特征分析,能够评估半合成产物中存在的糖型数量、身份和相对丰度。