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Published on: June 27, 2025
A simple and enzyme-free method for processing infiltrating lymphocytes from small mouse tumors for ELISpot analysis
Adam M Swartz1, Elizabeth Reap2, Pamela Norberg2
1Duke Brain Tumor Immunotherapy Program, Department of Neurosurgery, Duke University Medical Center, DUMC Box 3050, 303 Research Drive, 220 Sands Building, Durham, NC 27710, USA; The Preston Robert Tisch Brain Tumor Center, Duke University Medical Center, Durham, NC, USA; Department of Pathology, Duke University Medical Center, Durham, NC, USA.
Insights
This study introduces a novel enzyme-free method for isolating tumor-infiltrating lymphocytes (TILs) from small mouse tumors. This technique improves lymphocyte yield and function for sensitive ELISpot assays.
Area of Science:
- Immunology
- Cellular Biology
- Biotechnology
Background:
- ELISpot assays are crucial for detecting antigen-specific immune responses.
- Processing lymphocytes from solid tumors, especially small ones, is challenging due to low cell numbers and limitations of traditional enzymatic methods.
- Enzymatic dissociation can negatively impact lymphocyte viability and function.
Purpose of the Study:
- To develop and validate an enzyme-free protocol for efficient isolation of tumor-infiltrating lymphocytes (TILs) from small mouse tumors.
- To enable sensitive enumeration of antigen-specific effector lymphocytes via ELISpot analysis from limited tissue samples.
- To overcome the limitations of enzymatic dissociation methods for TIL preparation.
Main Methods:
- A novel enzyme-free protocol involving gentle agitation with a paddle blender for tumor dissociation.
- A short in vitro culture period post-dissociation to eliminate adherent cells and revive lymphocytes.
- Application of the protocol to small mouse tumors, including intracerebral and peripheral models.
Main Results:
- The enzyme-free method successfully isolates viable tumor-infiltrating lymphocytes (TILs) from small mouse tumors.
- The protocol enables effective ELISpot analysis for enumerating antigen-specific effector lymphocytes.
- The method demonstrates applicability to various tumor types and potentially other tissues with low lymphocyte populations.
Conclusions:
- The developed enzyme-free protocol provides a robust and sensitive method for processing small tumors for ELISpot analysis.
- This approach enhances lymphocyte recovery and preserves their functional integrity compared to enzymatic methods.
- The protocol is adaptable and holds promise for broader applications in immunological studies involving low-yield tissues.
Abstract:
The ELISpot assay prevails as one of the most sensitive and meaningful assays for the detection of antigen-specific, effector immune responses. Acquisition of cellular analyte for ELISpot analysis is typically not problematic when derived from tissues enriched in lymphocytes (e.g., lymphoid organs and blood); however, cell processing becomes more difficult when lymphocytes represent only a very minor population relative to the source tissue, especially when the source tissue is in limited supply (e.g., small mouse tumors). Traditional enzymatic-based methods for dissociating tumors often result in poor yields, inconsistent lymphocyte enrichment, and can have deleterious effects on lymphocyte phenotype and function. To address these limitations, we have developed an enzyme-free protocol for processing tumor infiltrating lymphocytes (TILs) from small mouse tumors, which enables the enumeration of antigen-specific effector lymphocytes using ELISpot analysis. This procedure is predicated on the dissociation of tumor tissue using gentle agitation with a paddle blender followed by a brief in vitro culture period to remove adherent cells, as well as to revive lymphocytes from a non-responsive state. Although this method is demonstrated with mouse intracerebral tumors, we have found that this protocol is applicable to peripheral tumors and may likely extend to alternative tissue sources wherein lymphocytes exist in low numbers.
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