4.8 Article

Atmospheric-Pressure Infrared Laser-Ablation Plasma- Postionization Mass Spectrometry Imaging of Formalin-Fixed Paraffin-Embedded (FFPE) and Fresh-Frozen Tissue Sections with No Sample Preparation

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ANALYTICAL CHEMISTRY
卷 94, 期 28, 页码 9970-9974

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AMER CHEMICAL SOC
DOI: 10.1021/acs.analchem.2c00690

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资金

  1. Cancer Research UK Rosetta Grand Challenge [A24034]
  2. UK Governments Department for Business, Energy and Industrial Strategy (BEIS) through the UKs National Measurement System programs

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Mass spectrometry imaging (MSI) is a powerful technique for providing spatially resolved atomic and molecular information from almost any sample type. Optimizing MSI methods for analysis of FFPE tissue is necessary due to the prevalence and importance of FFPE tissue storage.
Mass spectrometry imaging (MSI) encompasses a powerful suit of techniques which provide spatially resolved atomic and molecular information from almost any sample type. MSI is now widely used in preclinical research to provide insight into metabolic phenotypes of disease. Typically, fresh-frozen tissue preparations are considered optimal for biological MSI and other traditional preservation methods such as formalin fixation, alone or with paraffin embedding (FFPE), are considered less optimal or even incompatible. Due to the prevalence of FFPE tissue storage, particularly for rare and therefore high-value tissue samples, there is substantial motivation for optimizing MSI methods for analysis of FFPE tissue. Here, we present a novel modality, atmospheric-pressure infrared laser-ablation plasma postionization (AP-IR-LA-PPI), with the first proof-of-concept examples of MSI for FFPE and fresh-frozen tissues, with no post-sectioning sample preparation. We present ion images from FFPE and fresh tissues in positive and negative ion modes. Molecular annotations (via the Metaspace annotation engine) and on-tissue MS/MS provide additional confidence that the detected ions arise from a broad range of metabolite and lipid classes from both FFPE and fresh frozen tissues.

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