Colhoun Hugh Owen, Treacy Eileen P, MacMahon Marguerite, Rudd Pauline M, Fitzgibbon Maria, O'Flaherty Roisin, Stepien Karolina M
1 Department of Paediatrics, Trinity College, Dublin, Ireland.
2 National Centre for Inherited Metabolic Diseases, The Mater Misericordiae University Hospital, Dublin, Ireland.
Ann Clin Biochem. 2018 Sep;55(5):593-603. doi: 10.1177/0004563218762957. Epub 2018 Mar 13.
Background Classical galactosaemia (OMIM #230400) is a rare disorder of carbohydrate metabolism caused by deficiency of the galactose-1-phosphate uridyltransferase enzyme. The pathophysiology of the long-term complications, mainly cognitive, neurological and female fertility problems, remains poorly understood. Current clinical methods of biochemical monitoring lack precision and individualization with an identified need for improved biomarkers for this condition. Methods We report the development and detailed validation of an automated ultraperformance liquid chromatography N-glycan analytical method of high peak resolution applied to galactose incorporation into human serum IgG. Samples are prepared on 96-well plates and the workflow features rapid glycoprotein denaturation, enzymatic glycan release, glycan purification on solid-supported hydrazide, fluorescent labelling and post-labelling clean-up with solid-phase extraction. Results This method is shown to be accurate and precise with repeatability (cumulative coefficients of variation) of 2.0 and 8.5%, respectively, for G0/G1 and G0/G2 ratios. Both serum and processed N-glycan samples were found to be stable at room temperature and in freeze-thaw experiments. Conclusions This high-throughput method of IgG galactose incorporation is robust, affordable and simple. This method is validated with the potential to apply as a biomarker for treatment outcomes for galactosaemia.
经典型半乳糖血症(OMIM #230400)是一种罕见的碳水化合物代谢紊乱疾病,由1-磷酸半乳糖尿苷转移酶缺乏引起。其长期并发症的病理生理学,主要是认知、神经和女性生育问题,仍知之甚少。目前的生化监测临床方法缺乏精确性和个体化,明确需要针对这种情况改进生物标志物。方法:我们报告了一种用于分析人血清IgG中半乳糖掺入情况的自动化超高效液相色谱N-聚糖分析方法的开发及详细验证。样品在96孔板上制备,工作流程包括快速糖蛋白变性、酶促聚糖释放、在固相支持的酰肼上进行聚糖纯化、荧光标记以及固相萃取后的标记后净化。结果:该方法被证明具有准确性和精确性,G0/G1和G0/G2比率的重复性(累积变异系数)分别为2.0%和8.5%。血清和处理后的N-聚糖样品在室温及冻融实验中均表现稳定。结论:这种用于IgG半乳糖掺入的高通量方法稳健、经济且简单。该方法经验证有潜力作为半乳糖血症治疗结果的生物标志物应用。