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首页> 外文期刊>ACS Chemical Biology >Imaging of N?Linked Glycans from Formalin-Fixed Paraffin-Embedded Tissue Sections Using MALDI Mass Spectrometry
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Imaging of N?Linked Glycans from Formalin-Fixed Paraffin-Embedded Tissue Sections Using MALDI Mass Spectrometry

机译:使用MALDI质谱从福尔马林固定石蜡包埋的组织切片中对N?连接的聚糖进行成像

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摘要

Aberrant glycosylation is associated with most of the diseases. Direct imaging and profiling of N-glycans on tissue sections can reveal tissue-specific and/or diseaseassociated N-glycans, which not only could serve as molecular signatures for diagnosis but also shed light on the functional roles of these biomolecules. Mass spectrometry imaging (MSI) is a powerful tool that has been used to correlate peptides, proteins, lipids, and metabolites with their underlying histopathology in tissue sections. Here, we report an MSI technique for direct analysis of N-glycans from formalin-fixed paraffin-embedded (FFPE) tissues. This technique consists of sectioning FFPE tissues, deparaffinization, and rehydration of the sections, denaturing tissue proteins, releasing N-linked glycans from proteins by printing peptide-N-glycosidase F over the sections, spray-coating the tissue with matrix, and analyzing N-glycans by matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). Brain sections from a C57BL/6 mouse were imaged using this technique at a resolution of 100 μm. Forty-two N-glycans were analyzed from the mouse brain section. The mass spectrometry images were used to study the relative abundance of oligomannose, nonfucosylated, and fucosylated complex N-glycans in different brain areas including isocortex, hippocampal formation, and brainstem and specific glycans associated with different areas of the brain were identified. Furthermore, glioblastoma tumor xenografts in a NOD/SCID mouse were imaged. Several glycans with differential expression in tumor versus normal brain tissues were identified. The MSI technique allows for imaging of N-glycans directly from FFPE sections. This method can potentially identify tissue-specific and/or disease-associated glycans coexpressed with other molecular signatures or within certain histological structures.
机译:糖基化异常与大多数疾病有关。 N-聚糖在组织切片上的直接成像和分析可以揭示组织特异性和/或与疾病相关的N-聚糖,它们不仅可以作为诊断的分子标记,而且可以阐明这些生物分子的功能。质谱成像(MSI)是一种功能强大的工具,已用于将肽,蛋白质,脂质和代谢物与其在组织切片中的潜在组织病理学相关联。在这里,我们报告一种MSI技术,用于直接分析福尔马林固定石蜡包埋(FFPE)组织中的N-聚糖。该技术包括对FFPE组织进行切片,去石蜡和切片再水化,使组织蛋白质变性,通过在切片上印刷肽-N-糖苷酶F来从蛋白质释放N-连接的聚糖,用基质喷涂组织并分析N基质辅助激光解吸/电离质谱法(MALDI-MS)测定β-聚糖。使用此技术以100μm的分辨率对C57BL / 6小鼠的大脑切片进行成像。从小鼠脑部分析了42种N-聚糖。质谱图像用于研究低聚甘露糖,非岩藻糖基化和岩藻糖基化复合N聚糖在不同大脑区域(包括等皮质,海马形成和脑干)的相对丰度,并鉴定了与大脑不同区域相关的特定聚糖。此外,对NOD / SCID小鼠中的胶质母细胞瘤肿瘤异种移植进行了成像。鉴定了几种在肿瘤与正常脑组织中差异表达的聚糖。 MSI技术可直接从FFPE切片中对N-聚糖进行成像。该方法可以潜在地识别与其他分子标记共同表达或在某些组织学结构内共表达的组织特异性和/或与疾病相关的聚糖。

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