Department of Condensed Matter, National Institute for Research and Development in Electrochemistry and Condensed Matter, Plautius Andronescu Str. 1, 300224 Timisoara, Romania.
Department of Physics, West University of Timisoara, Vasile Parvan Blvd. 4, 300223 Timisoara, Romania.
Int J Mol Sci. 2022 Jan 8;23(2):693. doi: 10.3390/ijms23020693.
Gangliosides are effective biochemical markers of brain pathologies, being also in the focus of research as potential therapeutic targets. Accurate brain ganglioside mapping is an essential requirement for correlating the specificity of their composition with a certain pathological state and establishing a well-defined set of biomarkers. Among all bioanalytical methods conceived for this purpose, mass spectrometry (MS) has developed into one of the most valuable, due to the wealth and consistency of structural information provided. In this context, the present article reviews the achievements of MS in discovery and structural analysis of gangliosides associated with severe brain pathologies. The first part is dedicated to the contributions of MS in the assessment of ganglioside composition and role in the specific neurodegenerative disorders: Alzheimer's and Parkinson's diseases. A large subsequent section is devoted to cephalic disorders (CD), with an emphasis on the MS of gangliosides in anencephaly, the most common and severe disease in the CD spectrum. The last part is focused on the major accomplishments of MS-based methods in the discovery of ganglioside species, which are associated with primary and secondary brain tumors and may either facilitate an early diagnosis or represent target molecules for immunotherapy oriented against brain cancers.
神经节苷脂是脑病理学的有效生化标志物,也是研究的焦点,因为它们可能是潜在的治疗靶点。准确的脑神经节苷脂图谱是将其组成的特异性与特定病理状态相关联并建立明确的生物标志物集的必要条件。在为此目的设想的所有生物分析方法中,质谱(MS)已经发展成为最有价值的方法之一,因为它提供了丰富而一致的结构信息。在这方面,本文综述了 MS 在发现和结构分析与严重脑病理学相关的神经节苷脂方面的成就。第一部分专门介绍了 MS 在评估神经节苷脂组成及其在特定神经退行性疾病(如阿尔茨海默病和帕金森病)中的作用方面的贡献。随后的大部分内容都致力于头部疾病(CD),重点介绍了无脑畸形中神经节苷脂的 MS,无脑畸形是 CD 谱中最常见和最严重的疾病。最后一部分主要集中在基于 MS 的方法在发现与原发性和继发性脑肿瘤相关的神经节苷脂物种方面的主要成就,这些神经节苷脂物种可能有助于早期诊断,或者代表针对脑癌的免疫治疗的靶分子。