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A novel method for analyzing formalin-fixed paraffin embedded (FFPE) tissue sections by mass spectrometry imaging

机译:质谱成像分析福尔马林固定石蜡包埋(FFPE)组织切片的新方法

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摘要

Significant advances have been made in the past decade in the field of mass spectrometry imaging (MS imaging). It is a relatively unestablished technique aimed at direct, high-sensitive and spatially exclusive detection of biological molecules from the surface of tissue sections, so that semi-quantitative distribution map of the analyte can be reconstituted from the mass spectra obtained. There is tremendous potential in its application especially in clinical field, such as biomarker discovery or pharmacokinetic study. However, vast majority of the work has been performed on frozen tissue sections, while it remains generally unpractical to produce frozen sections with clinically resected tumor samples. Here we report our novel sample preparation technique that enabled MS imaging from formalin-fixed paraffin embedded (FFPE) tissue section, including retrospective archive as old as 11 years. FFPE sections were first dewaxed with pre-warmed xylene, and exposed tissue surface was enzymatically digested in nanoliter scale droplets to retain analyte localization. As a result, we succeeded in obtaining MS images of peptide peaks derived from several proteins, identified by MS/MS analysis, using ovarian cancer FFPE sections. The qualities of mass spectra obtained by this method were not significantly different from those obtained from frozen sections. By this, we opened the door to retrospective study of past clinical cases in aim to discover molecular biomarker.
机译:在过去的十年中,质谱成像(MS成像)领域已取得了重大进展。它是一种相对尚未建立的技术,旨在从组织切片的表面直接,高灵敏度和空间排他性地检测生物分子,以便可以从获得的质谱图中重新构建分析物的半定量分布图。它的应用潜力巨大,尤其是在临床领域,例如生物标志物发现或药代动力学研究。然而,绝大多数工作是在冷冻组织切片上进行的,而用临床切除的肿瘤样品生产冷冻切片通常仍然不可行。在这里,我们报告了我们新颖的样品制备技术,该技术能够从福尔马林固定石蜡包埋的(FFPE)组织切片中进行MS成像,包括追溯至11岁的回顾性档案。首先用预热的二甲苯对FFPE切片进行脱蜡,然后在纳升级液滴中酶切消化暴露的组织表面,以保留分析物的定位。结果,我们成功地使用卵巢癌FFPE切片获得了由几种蛋白质衍生的肽峰的MS图像,通过MS / MS分析鉴定了该图像。通过这种方法获得的质谱图的质量与从冷冻切片获得的质谱图的质量没有显着差异。由此,我们为回顾过去的临床病例打开了大门,旨在发现分子生物标志物。

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