Research Institute of Biomolecular and Chemical Engineering, University of Pannonia, Veszprem, Hungary.
Horvath Csaba Memorial Laboratory of Bioseparation Sciences, Research Center for Molecular Medicine, Doctoral School of Molecular Medicine, Faculty of Medicine, University of Debrecen, Debrecen, Hungary.
Curr Mol Med. 2020;20(10):840-846. doi: 10.2174/1566524020666201230094722.
The utilization of N-glycan profiling recently gained high importance in fundamental biomedical and applied clinical research. However, for the time being, no glycan biomarker has been approved for clinical diagnosis by the regulatory agencies due to the lack of verifications on large patient cohorts and suitable analytical technologies. In this paper, the effect of human blood sample handling was studied prior to N-glycosylation profiling by capillary electrophoresis, coupled with high sensitivity fluorescence detection. Special attention was paid to the preservation of sialylated structures because of their important clinical - biological relevance. Our results suggested that it is adequate to refrigerate and store the collected total blood samples prior to analysis to obtain unbiased results. Furthermore, we report on the good practice of serum sample handling in order to prevent decomposition of the sialylated structures. Our findings may promote procedure standardization and easier clinical translation of diagnostic N-glycosylation profiling in molecular medicinal applications.
N-糖链谱分析在基础生物医学和应用临床研究中具有重要意义。然而,由于缺乏对大样本患者队列和合适分析技术的验证,到目前为止,还没有糖基生物标志物被监管机构批准用于临床诊断。在本文中,在通过毛细管电泳结合高灵敏度荧光检测进行 N-糖基化谱分析之前,研究了人血样本处理对其的影响。由于唾液酸化结构具有重要的临床生物学意义,因此特别关注其保存。我们的研究结果表明,在分析前冷藏和储存采集的全血样本以获得无偏结果是足够的。此外,我们还报告了血清样本处理的良好做法,以防止唾液酸化结构的分解。我们的发现可能会促进程序标准化,并更容易将诊断性 N-糖基化谱分析转化为分子医学应用中的临床诊断。