Sample preparation of formalin-fixed paraffin-embedded tissue sections for MALDI-mass spectrometry imaging

被引:0
作者
Juliane Hermann
Heidi Noels
Wendy Theelen
Michaela Lellig
Setareh Orth-Alampour
Peter Boor
Vera Jankowski
Joachim Jankowski
机构
[1] University Hospital RWTH Aachen,Institute for Molecular Cardiovascular Research
[2] University Hospital RWTH Aachen,Institute for Pathology
[3] Maastricht University,School for Cardiovascular Diseases
来源
Analytical and Bioanalytical Chemistry | 2020年 / 412卷
关键词
MALDI imaging; Tissue preparation; Formalin-fixed paraffin-embedded tissue sections; Optimized sample standard operating protocols (SOP);
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学科分类号
摘要
Matrix-assisted laser desorption/ionization (MALDI) mass spectrometry imaging (MALDI MSI) has become a powerful tool with a high potential relevance for the analysis of biomolecules in tissue samples in the context of diseases like cancer and cardiovascular or cardiorenal diseases. In recent years, significant progress has been made in the technology of MALDI MSI. However, a more systematic optimization of sample preparation would likely achieve an increase in the molecular information derived from MALDI MSI. Therefore, we have employed a systematic approach to develop, establish and validate an optimized “standard operating protocol” (SOP) for sample preparation in MALDI MSI of formalin-fixed paraffin-embedded (FFPE) tissue sample analyses within this study. The optimized parameters regarding the impact on the resulting signal-to-noise (S/N) ratio were as follows: (i) trypsin concentration, solvents, deposition method, and incubation time; (ii) tissue washing procedures and drying processes; and (iii) spray flow rate, number of layers of trypsin deposition, and grid size. The protocol was evaluated on interday variability and its applicability for analyzing the mouse kidney, aorta, and heart FFPE tissue samples. In conclusion, an optimized SOP for MALDI MSI of FFPE tissue sections was developed to generate high sensitivity, to enhance spatial resolution and reproducibility, and to increase its applicability for various tissue types. This optimized SOP will further increase the molecular information content and intensify the use of MSI in future basic research and diagnostic applications.
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页码:1263 / 1275
页数:12
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共 196 条
  • [11] Kaftan F(2015)The challenge of on-tissue digestion for MALDI MSI- a comparison of different protocols to improve imaging experiments Anal Bioanal Chem 407 2223-1953
  • [12] Krueger K(2008)Imaging mass spectrometry of intact proteins from alcohol-preserved tissue specimens: bypassing formalin fixation J Proteome Res 7 3543-341
  • [13] Terne C(2017)MALDI MS imaging investigation of the host response to visceral leishmaniasis Mol BioSyst 13 1946-32
  • [14] Werner C(2015)Mass spectrometry imaging for the proteomic study of clinical tissue Proteomics Clin Appl 9 335-1801
  • [15] Freudenberg U(2016)Mass spectrometry imaging of rat brain lipid profile changes over time following traumatic brain injury J Neurosci Methods 272 19-1677
  • [16] Jankowski V(2016)Lymph node metastasis of primary endometrial cancers: associated proteins revealed by MALDI imaging Proteomics. 16 1793-2900
  • [17] Zidek W(2016)Tissue fixed with formalin and processed without paraffin embedding is suitable for imaging of both peptides and lipids by MALDI-IMS Proteomics. 16 1670-794
  • [18] Groseclose MR(2006)New developments in profiling and imaging of proteins from tissue sections by MALDI mass spectrometry J Proteome Res 5 2889-845
  • [19] Massion PP(2017)MALDI mass spectrometry imaging in rheumatic diseases Biochim Biophys Acta, Proteins Proteomics 1865 784-59
  • [20] Chaurand P(2017)Molecular profiles of thyroid cancer subtypes: classification based on features of tissue revealed by mass spectrometry imaging Biochim Biophys Acta, Proteins Proteomics 1865 837-462