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高分辨率质谱分析为脑海绵状血管瘤神经节苷脂模式提供了新的见解。

High resolution mass spectrometry provides novel insights into the ganglioside pattern of brain cavernous hemangioma.

机构信息

National Institute for Research and Development in Electrochemistry and Condensed Matter, Timisoara, Romania; Faculty of Physics, West University of Timisoara, Romania.

"Victor Babes" University of Medicine and Pharmacy Timisoara, Romania.

出版信息

Anal Biochem. 2020 Nov 15;609:113976. doi: 10.1016/j.ab.2020.113976. Epub 2020 Sep 26.

Abstract

In this study we have optimized nanoelectrospray ionization (nanoESI) high resolution mass spectrometry (HR MS) performed on Orbitrap instrument in the negative ion mode for the determination of the composition and structure of gangliosides extracted from human brain cavernous hemangioma. The optimized HR MS platform, allowed the discrimination of 62 ions, corresponding to 52 different ganglioside species, which represents roughly twice the number of species existing in the current inventory of human brain hemangioma-associated gangliosides. The experiments revealed a ganglioside pattern dominated by GD-type of structures as well as an elevated incidence of species characterized by a low degree of sialylation and short glycan chains, including asialo GA1 (d18:1/18:0), which offer a new perspective upon the ganglioside composition in this benign tumor. Many of the structures are characteristic for this type of tumor only and are to be considered in further investigations for their potential use in early brain hemangioma diagnosis based on molecular markers. The detailed fragmentation analysis performed by collision-induced dissociation (CID) tandem MS provided information of structural elements related to the glycan core and ceramide moiety, which confirmed the molecular configuration of GD3 (d18:1/24:1) and GD3 (d18:1/24:2) species with potential biomarker role.

摘要

在这项研究中,我们优化了在负离子模式下使用 Orbitrap 仪器进行的纳米电喷雾电离(nanoESI)高分辨质谱(HR MS),以确定从人脑海绵状血管瘤中提取的神经节苷脂的组成和结构。优化的 HR MS 平台允许区分 62 个离子,对应 52 种不同的神经节苷脂种类,这大约是当前人脑血管瘤相关神经节苷脂目录中存在的种类数量的两倍。实验揭示了以 GD 型结构为主的神经节苷脂模式,以及具有低唾液酸化和短糖链特征的物种的发生率升高,包括无唾液酸 GA1(d18:1/18:0),这为这种良性肿瘤中的神经节苷脂组成提供了新的视角。许多结构仅为这种类型的肿瘤所特有,并且考虑将其用于进一步研究,以基于分子标志物潜在地用于早期脑血管瘤的诊断。通过碰撞诱导解离(CID)串联 MS 进行的详细碎裂分析提供了与聚糖核心和神经酰胺部分相关的结构元素的信息,这证实了 GD3(d18:1/24:1)和 GD3(d18:1/24:2)物种的分子构型具有潜在的生物标志物作用。

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