Department of Condensed Matter, National Institute for Research and Development in Electrochemistry and Condensed Matter, 300569 Timisoara, Romania.
Department of Physics, West University of Timisoara, 300223 Timisoara, Romania.
Molecules. 2022 Jan 24;27(3):743. doi: 10.3390/molecules27030743.
Gangliosides (GGs) represent an important class of biomolecules associated with the central nervous system (CNS). In view of their special role at a CNS level, GGs are valuable diagnostic markers and prospective therapeutic agents. By ion mobility separation mass spectrometry (IMS MS), recently implemented by us in the investigation of human CNS gangliosidome, we previously discovered a similarity between GG profiles in CSF and the brain. Based on these findings, we developed IMS tandem MS (MS/MS) to characterize rare human CSF glycoforms, with a potential biomarker role. To investigate the oligosaccharide and ceramide structures, the ions detected following IMS MS separation were submitted to structural analysis by collision-induced dissociation (CID) MS/MS in the transfer cell. The IMS evidence on only one mobility feature, together with the diagnostic fragment ions, allowed the unequivocal identification of isomers in the CSF. Hence, by IMS MS/MS, GalNAc-GD1c(d18:1/18:1) and GalNAc-GD1c(d18:1/18:0) having both Neu5Ac residues and GalNAc attached to the external galactose were for the first time discovered and structurally characterized. The present results demonstrate the high potential of IMS MS/MS for biomarker discovery and characterization in body fluids, and the perspectives of method implementation in clinical analyses targeting the early diagnosis of CNS diseases through molecular fingerprints.
神经节苷脂(GGs)是一类与中枢神经系统(CNS)相关的重要生物分子。鉴于其在中枢神经系统水平的特殊作用,GGs 是有价值的诊断标志物和潜在的治疗药物。我们最近通过离子淌度分离质谱(IMS MS)对人中枢神经系统神经节苷脂组进行了研究,发现 CSF 和大脑中的 GG 图谱存在相似性。基于这些发现,我们开发了 IMS 串联质谱(MS/MS)来表征具有潜在生物标志物作用的罕见人 CSF 糖型。为了研究寡糖和神经酰胺结构,IMS MS 分离后检测到的离子通过转移细胞中的碰撞诱导解离(CID)MS/MS 进行结构分析。IMS 仅在一个淌度特征上的证据,以及诊断片段离子,允许在 CSF 中对异构体进行明确鉴定。因此,通过 IMS MS/MS,首次发现并结构表征了具有 Neu5Ac 残基和连接到外半乳糖的 GalNAc 的 GalNAc-GD1c(d18:1/18:1)和 GalNAc-GD1c(d18:1/18:0)。目前的结果表明,IMS MS/MS 具有在生物体液中发现和表征生物标志物的巨大潜力,并有望通过分子指纹实现该方法在针对 CNS 疾病早期诊断的临床分析中的应用。