Advancing Adoptive Cell Therapy: Optimized Expansion of Adaptive NK Cells for Solid Tumors
Almazan, N. M.; Roman, S.; Sun, Y.; Brautigam, L.; Stragliotto, G.; Gultekin, O.; Saheli, S.; Lehti, K.; Naucler, C. S.; Sarhan, D.
Show abstract
BackgroundImmune therapies are emerging as a critical component of cancer treatment, capable of delivering durable and potentially curative responses. While CAR-T cell therapy has proven effective for hematological malignancies, it faces challenges in treating solid tumors due to tumor antigen heterogeneity, an immunosuppressive tumor microenvironment, and physical barriers hindering CAR-T cell infiltration. NK cells, particularly adaptive NK (aNK) cells, offer a promising alternative due to their ability to recognize and kill tumor cells without prior sensitization and their resistance to immunosuppressive environments. PurposeThe study investigates the role of cytokines, specifically IL-21 and IL-15, in enhancing aNK cell expansion and activation using peripheral blood mononuclear cells (PBMCs) from healthy donors and tumor-infiltrating lymphocytes (TILs) from glioblastoma (GBM) patients. MethodsBuffy coats and GBM TILs were collected from Karolinska Hospital. NK cells were isolated and expanded in vitro with IL-15 and IL-21 cytokines and feeder cells (K562 and K562E). Furthermore, tumor lysate was added in the cultures to boost memory responses in aNK cells. NK cell functionality, cytotoxicity, and phenotyping was assessed using flow cytometry and statistical analysis (t-test and two-way ANOVA) used to validate the results. Further animal model was used to validate the cytotoxicity capacities of these cells against GBM tumors using a zebrafish model. ResultsIL-21 drives the expansion of aNK better than IL-15 controls, data shown in PBMCs and TILs derived from GBM patients and IPLA OVCA patients. Additionally, the use of tumor lysate as a booster for restimulation further amplifies the cytotoxic capacity of aNK cells against autologous tumors. The zebrafish model validates this method, by decreasing the tumor size in zebrafish animals after 3 days of injection. ConclusionThe results demonstrate that IL-21 is essential for the specific expansion of aNK cells, enhancing their aggressiveness towards tumor cells. Additionally, tumor lysate significantly increases the cytotoxic efficacy of aNK cells upon restimulation with the same tumor cells. These findings suggest that IL-21 plays a crucial role in the specific expansion and activation of aNK cells, enhancing their aggressiveness towards tumor cells. By optimizing the expansion protocol, this method aims to advance the clinical application of aNK cells in immunotherapies for solid tumors, offering a potential solution to the limitations faced by current CAR-T therapies.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Augmented expansion of Treg cells from healthy and autoimmune subjects via adult progenitor cell co-culture. 94%
- Antigenic determinants of SARS-CoV-2-specific CD4 + T cell lines reveals M protein-driven dysregulation of interferon signaling 94%
- Blinatumomab-driven T-cell activation in αβ and γδ T-cell subsets: Insights from in vitro assays 94%
Similar papers in this journal
- NKG7 is a stable marker of cytotoxicity across immune contexts and within the tumor microenvironment 94%
- Vitamin A-treated NK cells reduce IFN-gamma production and support regulatory T cell differentiation 93%
- Immunotherapy of CT26 murine tumors is characterized by an oligoclonal response against the AH1 tumor rejection antigen 93%
Similar papers in this journal
- Single-Cell Transcriptomics Reveals Dynamics of NK Cell Expansion in a Feeder Cell-Free Culture of PBMCs - Implications for Immunotherapy 96%
- Use of cellular FAD autofluorescence as a label-free cellular attribute for the production of chimeric antigen receptor-T cells 95%
- Expanded adaptive NKG2C+ NK cells exhibit potent ADCC and functional responses against HBV-infected hepatoma cell lines 94%
Similar papers in this journal
- Patient-derived tumor explant models of tumor immune microenvironment reveal distinct and reproducible immunotherapy responses 93%
- CD20 expression regulates CD37 levels in B-cell lymphoma: implications for immunotherapies. 93%
- CD4+ tumor-infiltrating lymphocytes secreting T cell-engagers induce regression of autologous patient-derived non-small cell lung cancer xenografts 93%
Similar papers in this journal
- Serum-free differentiation platform for the generation of B lymphocytes and natural killer cells from human CD34+ cord blood progenitors 95%
- DOK1 and DOK2 regulate CD8+ T cell signaling and memory formation without affecting tumor cell killing 95%
- Loss of Y in regulatory T lymphocytes in the tumor micro-environment of primary colorectal cancers and liver metastases 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.