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Proteomic Sample Preparation from Formalin Fixed and Paraffin Embedded Tissue
Published on: September 2, 2013
Quantitative Proteomics Using Formalin-fixed, Paraffin-embedded Biopsy Tissues in Inflammatory Disease
Abhimanyu Amarnani1,2, Joseph R Capri3, Puneet Souda3
1Department of Head and Neck Surgery, UCLA, Los Angeles, CA 90095, USA.
Insights
Formalin-fixed, paraffin-embedded (FFPE) tissues can reliably detect proteins in inflammatory diseases, including lupus nephritis. While most protein identifications show high concordance with fresh-frozen tissues (FFT), some immune and inflammatory proteins may be quantified less in FFPE samples.
Area of Science:
- Proteomics
- Pathology
- Immunology
Background:
- Access to fresh-frozen tissues (FFT) for disease pathogenesis research is limited.
- Formalin-fixed, paraffin-embedded (FFPE) tissues are widely available but may introduce bias due to formalin fixation.
- This study addresses the potential of FFPE tissues for proteomic analysis in inflammatory diseases.
Purpose of the Study:
- To compare the proteomic content of FFPE and FFTs.
- To determine the utility of FFPE tissues for studying inflammatory diseases, specifically lupus nephritis.
- To assess potential biases in protein quantification between FFPE and FFTs.
Main Methods:
- Adjacent murine lupus nephritis kidney slices were processed as FFPE or FFTs.
- Proteomics workflow involved filter-aided sample preparation and dimethyl isotope labeling.
- Nano-LC MS/MS analysis was performed using an Orbitrap XL MS.
Main Results:
- Over 97% protein identification concordance was observed between adjacent FFPE and FFTs.
- Proteins in pathways like 'systemic lupus erythematosus' and 'interferon-α' were reproducibly quantified.
- Certain immune and inflammatory proteins were quantified at lower levels in FFPE compared to FFTs (12%-29% difference).
- Pilot study on human FFPE tissues identified relevant lupus nephritis pathogenesis proteins.
Conclusions:
- Archived FFPE tissues are reliable for proteomic analysis in inflammatory diseases.
- This is the first report of lupus nephritis kidney proteomics using FFPE tissue.
- Caution is advised for quantifying certain immune and inflammation-related proteins in FFPE samples due to potential underestimation compared to FFTs.
Background:
Investigations in human disease pathogenesis have been hampered due to paucity of access to fresh-frozen tissues (FFT) for use in global, data-driven methodologies. As an alternative, formalin-fixed, paraffin-embedded (FFPE) tissues are readily available in pathology banks. However, the use of formalin for fixation can lead to the loss of proteins that appear during inflammation, thus introducing an inherent sample bias. To address this, we compared FF and FFPE tissue proteomics to determine whether FFPE-tissue can be used effectively in inflammatory diseases.
Methods:
Adjacent kidney slices from lupus nephritic mice were processed as FFPE or FFTs. Their tissue lysates were run together using proteomics workflow involving filter-aided sample preparation, in-solution dimethyl isotope labeling, StageTip fractionation, and nano-LC MS/MS through an Orbitrap XL MS.
Results:
We report a >97% concordance in protein identification between adjacent FFPE and FFTs in murine lupus nephritic kidneys. Specifically, proteins representing pathways, namely, 'systemic lupus erythematosus', 'interferon-α', 'TGF-β', and 'extracellular matrix', were reproducibly quantified between FFPE and FFTs. However, 12%-29% proteins were quantified differently in FFPE compared to FFTs, but the differences were consistent across experiments. In particular, certain proteins represented in pathways, including 'inflammatory response' and 'innate immune system' were quantified less in FFPE than in FFTs. In a pilot study of human FFPE tissues, we identified proteins relevant to pathogenesis in lupus nephritic kidney biopsies compared to control kidneys.
Conclusion:
This is the first report of lupus nephritis kidney proteomics using FFPE tissue. We concluded that archived FFPE tissues can be reliably used for proteomic analyses in inflammatory diseases, with a caveat that certain proteins related to immunity and inflammation may be quantified less in FFPE than in FFTs.
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