Abstract 151P
Background
Colorectal cancer (CRC) represents ∼7% of new cancer cases and 11% of cancer deaths worldwide. Tumor-Infiltrating Lymphocyte (TIL) immunotherapy is efficacious against melanoma, but its potency in epithelial cancers such as CRC remains inconsistent. We hypothesized that growing tumor organoids in an Air-Liquid Interface (ALI) system prior to TIL expansion might select for the rare tumor-specific T cells that mediate antitumor activity.
Methods
ALI CRC organoids were generated by embedding intact tumor fragments within a collagen matrix on top of a permeable support membrane exposed to both air and culture medium. This configuration facilitates optimal oxygenation, supporting the growth of faithful mini replicas of original tissue that preserve stroma and tumor-infiltrating immune cells, including cytotoxic T cells. To characterize ALI TILs after ex vivo expansion, cell surface markers were analyzed by flow cytometry and immune gene expression by single-cell RNA sequencing. We also established submerged organoids in vitro and transplanted them as organoid derived xenografts (ODX) in mice to assess antitumor activity. Tumor reactivity and T cell cytotoxicity were measured as cytokine induction and tumor cell death upon in vitro co-culture, while preclinical in vivo efficacy was assessed as tumor growth inhibition.
Results
Our ALI process yielded high cell numbers, mostly comprised of CD4+ and CD8+ T cells of the effector and central memory subtypes. T cell receptor analysis revealed unique sets of polyclonal repertoires, suggestive of tumor specificity. Functionally, ALI TIL tumor reactivity and killing were demonstrated in vitro, that translated to a potent in vivo antitumor activity against autologous ODX models.
Conclusions
Our study presents an innovative TIL immunotherapy approach for CRC. The application of ALI organoid culture conditions prior to the ex vivo TIL expansion resulted in a cell product with appropriate phenotypic and functional features, warranting further development of the novel process.
Legal entity responsible for the study
The authors.
Funding
Khosla Ventures, Peregrine Ventures, Alexandria, Wilson Sonsini.
Disclosure
M. Leushacke: Financial Interests, Institutional, Principal Investigator: Nextvivo. M. Pari, J. Ju, P-Y. Lin, B. Shreshta: Financial Interests, Personal, Stocks/Shares: NextVivo. C. Chartier: Financial Interests, Institutional, Officer: NextVivo.
Resources from the same session
146P - A Novel Allosteric Oral Immunotherapy Small Molecule Modulates Adenosine 2A Receptor Signaling and Restores Anti-Tumor Immune Responses
Presenter: David Pejoski
Session: Poster Display
147P - Pre-clinical evaluation and safety profile of the highly selective anti-VISTA antibody K01401-020
Presenter: Geneviève Gueguen Dorbes
Session: Poster Display
148P - HexaBody-OX40, a novel Fc_ receptor crosslinking-independent OX40-targeting antibody, exhibits agonistic activity in vitro and antitumor activity in vivo
Presenter: Kristel Kemper
Session: Poster Display
149P - HLA/SIRPa bispecifics-A novel multitarget therapeutic strategy to induce potent anti-tumor immune responses
Presenter: anahita rafiei
Session: Poster Display
150P - Chemotherapy in combination with Toll-like receptor agonism promoted antitumor immune response in triple negative breast cancer
Presenter: Eunice Dotse
Session: Poster Display
152P - Discovery of best-in-class dual-acting A2AR/A2BR antagonists that are functional in high adenosine environment
Presenter: Nainesh Katagihallimath
Session: Poster Display
153P - Discovery of a Novel, Dual CD73 and PD-1 Targeting Multispecific Drug Fc-Conjugate (DFC) for the Treatment of Cancer
Presenter: James Levin
Session: Poster Display
154P - Computer-aided drug design based on CLDN4 ligand and its biological evaluation in ovarian cancer
Presenter: Yi Xu
Session: Poster Display
155P - A Phase 1 Study Exploring the Safety and Tolerability of the Small-Molecule PD-L1 Inhibitor INCB099280 in Select Advanced Solid Tumors
Presenter: Hans Prenen
Session: Poster Display
156TiP - The LUNGVAC-study; A randomized phase II, open-label, multicenter study investigating efficacy and safety of anti-PD-1/PD-L1 treatment +/- UV1 vaccination as first line treatment in patients with inoperable advanced or metastatic non-small cell lung cancer (NSCLC)
Presenter: Elin Marie Stensland
Session: Poster Display