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基于片上衍生化和质谱成像的近细胞分辨率超高灵敏空间糖组学分析。

Highly Sensitive Spatial Glycomics at Near-Cellular Resolution by On-Slide Derivatization and Mass Spectrometry Imaging.

机构信息

Institute for Glycomics, Griffith University, Gold Coast, Queensland 4222, Australia.

Ovarian Cancer Research, University Hospital Basel, University of Basel, Basel 4001, Switzerland.

出版信息

Anal Chem. 2024 Jul 16;96(28):11163-11171. doi: 10.1021/acs.analchem.3c05984. Epub 2024 Jul 2.

Abstract

Glycans on proteins and lipids play important roles in maturation and cellular interactions, contributing to a variety of biological processes. Aberrant glycosylation has been associated with various human diseases including cancer; however, elucidating the distribution and heterogeneity of glycans in complex tissue samples remains a major challenge. Matrix-assisted laser desorption/ionization (MALDI) mass spectrometry imaging (MSI) is routinely used to analyze the spatial distribution of a variety of molecules including N-glycans directly from tissue surfaces. Sialic acids are nine carbon acidic sugars that often exist as the terminal sugars of glycans and are inherently difficult to analyze using MALDI-MSI due to their instability prone to in- and postsource decay. Here, we report on a rapid and robust method for stabilizing sialic acid on N-glycans in FFPE tissue sections. The established method derivatizes and identifies the spatial distribution of α2,3- and α2,6-linked sialic acids through complete methylamidation using methylamine and PyAOP ((7-azabenzotriazol-1-yloxy)tripyrrolidinophosphonium hexafluorophosphate). Our in situ approach increases the glycans detected and enhances the coverage of sialylated species. Using this streamlined, sensitive, and robust workflow, we rapidly characterize and spatially localize N-glycans in human tumor tissue sections. Additionally, we demonstrate this method's applicability in imaging mammalian cell suspensions directly on slides, achieving cellular resolution with minimal sample processing and cell numbers. This workflow reveals the cellular locations of distinct N-glycan species, shedding light on the biological and clinical significance of these biomolecules in human diseases.

摘要

糖蛋白和糖脂上的聚糖在成熟和细胞相互作用中发挥着重要作用,有助于多种生物过程。糖基化异常与多种人类疾病有关,包括癌症;然而,阐明复杂组织样本中聚糖的分布和异质性仍然是一个主要挑战。基质辅助激光解吸/电离(MALDI)质谱成像(MSI)通常用于直接从组织表面分析包括 N-聚糖在内的各种分子的空间分布。唾液酸是九碳酸性糖,通常作为聚糖的末端糖存在,由于其不稳定,容易发生内源性和外源性衰变,因此使用 MALDI-MSI 进行分析具有固有难度。在这里,我们报告了一种在 FFPE 组织切片中稳定 N-聚糖上唾液酸的快速而稳健的方法。该方法通过使用甲胺和 PyAOP((7-氮杂苯并三唑-1-基氧基)三吡咯烷磷鎓六氟磷酸盐)进行完全甲酰胺化,衍生化并鉴定α2,3-和α2,6-连接的唾液酸的空间分布。我们的原位方法增加了检测到的聚糖并增强了唾液酸化物质的覆盖范围。使用这种简化、灵敏和稳健的工作流程,我们可以快速表征和空间定位人肿瘤组织切片中的 N-聚糖。此外,我们证明了该方法在直接在载玻片上对哺乳动物细胞悬浮液进行成像的适用性,实现了具有最小样本处理和细胞数量的细胞分辨率。该工作流程揭示了不同 N-聚糖物种的细胞位置,阐明了这些生物分子在人类疾病中的生物学和临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b2e/11256013/c7eff4a56823/ac3c05984_0001.jpg

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