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Published on: March 25, 2020
Enhancing Antigen Retrieval to Unmask Signaling Phosphoproteins in Formalin-fixed Archival Tissues
Bhawana George1, Abedul Haque1, Vishal Sahu1
1Department of Hematopathology.
Abstract:
The introduction of targeted therapy has revolutionized cancer treatment. Nonetheless, for this approach to succeed, it is crucial to identify the targets, particularly when activated, in tumor tissues. Phosphorylation is a posttranslational modification that causes activation of numerous oncogenic protein kinases and transcription regulators. Hence, phosphoproteins is a class of biomarkers that has therapeutic and prognostic implications directly relevant to cancer patients' management. Despite the progress in histopathology methodology, analysis of the expression of phosphoproteins in tumor tissues still represents a challenge owing to preanalytical and analytical factors that include antigen retrieval strategies. In this study, we tested the hypothesis that optimizing antigen retrieval methods will improve phosphoproteins unmasking and enhance their immunohistochemical staining signal. We screened 4 antigen retrieval methods by using antibodies specific for 3 oncogenic phosphoproteins to stain human lymphoma tumors that were developed in severe combined immunodeficiency mice and subsequently fixed in formalin for 2 years. Then, we used antibodies specific for 15 survival phosphoproteins to compare the most effective method identified from our screening experiment to the antigen retrieval method that is most commonly utilized. Using the antigen retrieval buffer Tris-EDTA at pH 9.0 and heating for 45 minutes at 97°C unmasked and significantly enhanced the staining of 9 of the 15 phosphoproteins (P<0.0001). Our antigen retrieval approach is cost effective and feasible for clinical and research settings. We anticipate that combining this approach with the newly proposed methods to improve tissue fixation will further improve unmasking of phosphoproteins in human and animal tissues.
Insights
Optimizing antigen retrieval methods significantly enhances the detection of phosphoproteins, crucial biomarkers for cancer targeted therapy. This improved immunohistochemical staining aids in better patient management and cancer research.
Area of Science:
- Oncology
- Biochemistry
- Histopathology
Background:
- Targeted cancer therapy relies on identifying activated targets within tumor tissues.
- Phosphoproteins are key biomarkers with prognostic and therapeutic implications in cancer management.
- Analyzing phosphoprotein expression in tumor tissues is challenging due to preanalytical and analytical factors, including antigen retrieval.
Purpose of the Study:
- To test the hypothesis that optimizing antigen retrieval methods improves phosphoprotein unmasking and immunohistochemical staining.
- To identify an optimal antigen retrieval strategy for enhancing phosphoprotein detection in formalin-fixed tissues.
Main Methods:
- Screened four antigen retrieval methods using antibodies for three oncogenic phosphoproteins on mouse lymphoma tumors.
- Compared the most effective method against a standard method for fifteen survival phosphoproteins.
- Utilized Tris-EDTA buffer at pH 9.0 with heating at 97°C for 45 minutes.
Main Results:
- Optimized antigen retrieval significantly enhanced the staining signal for 9 out of 15 phosphoproteins (P<0.0001).
- The Tris-EDTA pH 9.0 method at 97°C for 45 minutes proved effective.
- The developed approach is cost-effective and feasible for clinical and research applications.
Conclusions:
- Optimized antigen retrieval is crucial for effective phosphoprotein detection in histopathology.
- This method improves the reliability of phosphoprotein biomarkers for cancer patient management.
- Combining optimized retrieval with improved tissue fixation may further enhance phosphoprotein analysis.

