Graduate School of Analytical Science and Technology, Chungnam National University, Daejeon, 34134, Republic of Korea.
Asia Glycomics Reference Site, Daejeon, 34134, Republic of Korea.
Anal Bioanal Chem. 2021 Aug;413(20):5227-5237. doi: 10.1007/s00216-021-03495-1. Epub 2021 Jul 7.
Sialic acid Neu5Gc, a non-human glycan, is recognized as a new harmful substance that can cause vascular disease and cancer. Humans are unable to synthesize Neu5Gc due to a genetic defect that converts Neu5Ac to Neu5Gc, but Neu5Gc is often observed in human biological samples. Therefore, the demand for accurately measuring the amount of Neu5Gc present in human blood or tissues is rapidly increasing, but there is still no method to reliably quantify trace amounts of a non-human sugar. In particular, selective isolation and detection of Neu5Gc from human serum is analytically challenging due to the presence of excess sialic acid Neu5Ac, which has physicochemical properties very similar to Neu5Gc. Herein, we developed the label-free approach based on ZIC-HILIC/MRM-MS that can enrich sialic acids released from human serum and simultaneously monitor Neu5Ac and Neu5Gc. The combination of complete separation of Neu5Gc from abundant Neu5Ac by hydrophilic and electrostatic interactions with selective monitoring of structure-specific cross-ring cleavage ions generated by negative CID-MS/MS was remarkably effective for quantification of Neu5Ac and Neu5Gc at the femtomole level. Indeed, we were able to successfully determine the absolute quantitation of Neu5Gc from 30 healthy donors in the range of 3.336 ± 1.252 pg/μL (mean ± SD), 10,000 times lower than Neu5Ac. In particular, analysis of sialic acids in protein-free serum revealed that both Neu5Ac and Neu5G are mostly bound to proteins and/or lipids, but not in free form. In addition, the correlation between expression level of Neu5Gc and biological factors such as BMI, age, and sex was investigated. This method can be widely used in studies requiring sialic acid-related measurements such as disease diagnosis or prediction of immunogenicity in biopharmaceuticals as it is both fast and highly sensitive.
唾液酸 Neu5Gc 是一种非人类聚糖,被认为是一种新的有害物质,可导致血管疾病和癌症。由于一种将 Neu5Ac 转化为 Neu5Gc 的遗传缺陷,人类无法合成 Neu5Gc,但 Neu5Gc 经常在人类生物样本中观察到。因此,准确测量人类血液或组织中 Neu5Gc 含量的需求迅速增加,但仍没有可靠的方法来定量痕量的非人类糖。特别是,由于存在与 Neu5Gc 物理化学性质非常相似的过量唾液酸 Neu5Ac,因此从人血清中选择性分离和检测 Neu5Gc 在分析上具有挑战性。在此,我们开发了基于 ZIC-HILIC/MRM-MS 的无标记方法,该方法可以从人血清中释放的唾液酸中富集 Neu5Ac,并同时监测 Neu5Ac 和 Neu5Gc。亲水和静电相互作用使 Neu5Gc 与丰富的 Neu5Ac 完全分离,通过负 CID-MS/MS 生成的结构特异性交联裂解离子的选择性监测相结合,对于在飞摩尔水平上定量 Neu5Ac 和 Neu5Gc 非常有效。实际上,我们能够成功地在 3.336 ± 1.252 pg/μL(平均值 ± SD)的范围内从 30 位健康供体中确定 Neu5Gc 的绝对定量,比 Neu5Ac 低 10,000 倍。特别是,无蛋白血清中唾液酸的分析表明,Neu5Ac 和 Neu5Gc 主要与蛋白质和/或脂质结合,而不是以游离形式存在。此外,还研究了 Neu5Gc 的表达水平与 BMI、年龄和性别等生物学因素之间的相关性。由于该方法快速且高度灵敏,因此可广泛用于需要进行与唾液酸相关的测量的研究,例如疾病诊断或生物制药免疫原性的预测。