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Ex vivo Expansion of Tumor-reactive T Cells by Means of Bryostatin 1/Ionomycin and the Common Gamma Chain Cytokines Formulation
Published on: January 14, 2011
Short-term cultured tumor fragments to study immunotherapy combinations based on CD137 (4-1BB) agonism
Iñaki Eguren-Santamaría1,2,3, Inmaculada Rodríguez1,3, Claudia Herrero-Martin1,3
1Combination Strategies for Translational Immunotherapy, Immunology and Immunotherapy Program, Centro de Investigación Médica Aplicada (CIMA) Universidad de Navarra, Pamplona, Spain.
Abstract:
Biomarkers for cancer immunotherapy are an unmet medical need. The group of Daniela Thommen at the NKI recently reported on novel methodologies based on short-term cultures of patient-derived tumor fragments whose cytokine concentrations in the supernatants and activation markers on infiltrating T cells were associated with clinical response to PD-1 blockade. We set up a similar culture technology with tumor-derived fragments using mouse tumors transplanted into syngeneic immunocompetent mice to test an agonist anti-CD137 mAb and its combinations with anti-PD-1 and/or anti-TGF-β. Increases in IFNγ concentrations in the tissue culture supernatants were detected upon in-culture activation with the anti-CD137 and anti-PD-1 mAb combinations or concanavalin A as a positive control. No other cytokine from a wide array was informative of stimulation with these mAbs. Interestingly, increases in Ki67 and other activation markers were substantiated in lymphocytes from cell suspensions gathered at the end of 72 h cultures. In mice bearing bilateral tumors in which one was excised prior to in vivo anti-CD137 + anti-PD-1 treatment to perform the fragment culture evaluation, no association was found between IFNγ production from the fragments and the in vivo therapeutic outcome in the non-resected contralateral tumors. The experimental system permitted freezing and thawing of the fragments with similar functional outcomes. Using a series of patient-derived tumor fragments from excised solid malignancies, we showed IFNγ production in a fraction of the studied cases, that was conserved in frozen/thawed fragments. The small tumor fragment culture technique seems suitable to preclinically explore immunotherapy combinations.
Insights
This study explores a novel tumor fragment culture method to predict cancer immunotherapy response. While IFNγ production in cultures didn't directly correlate with in vivo outcomes, the technique shows promise for preclinical immunotherapy combination testing.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Biomarkers for cancer immunotherapy are crucial but currently lacking.
- Previous work showed patient-derived tumor fragment cultures correlate with PD-1 blockade response.
- This study aimed to validate and adapt this culture technology for preclinical immunotherapy research.
Purpose of the Study:
- To evaluate a small tumor fragment culture system for predicting response to immunotherapy combinations.
- To test agonist anti-CD137 mAb in combination with anti-PD-1 and/or anti-TGF-β in a murine model.
- To assess the utility of this method for exploring novel immunotherapy strategies.
Main Methods:
- Utilized short-term cultures of patient-derived tumor fragments and murine tumor models.
- Assessed cytokine concentrations (IFNγ) and lymphocyte activation markers (Ki67) in culture supernatants and cell suspensions.
- Tested combinations of anti-CD137, anti-PD-1, and anti-TGF-β mAbs.
- Investigated the impact of freezing and thawing on fragment culture functionality.
Main Results:
- Increases in IFNγ were observed with anti-CD137 and anti-PD-1 combinations in vitro.
- Lymphocyte activation markers (Ki67) increased in cultured cells after 72h.
- No direct correlation was found between in vitro IFNγ production and in vivo therapeutic outcomes in contralateral tumors.
- The fragment culture system demonstrated consistent results after freezing and thawing.
Conclusions:
- Small tumor fragment culture is a viable preclinical model for exploring immunotherapy combinations.
- IFNγ production in fragment cultures may not be a direct predictor of in vivo response for all combinations.
- The technique's ability to preserve function after cryopreservation supports its utility in translational research.

