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April 5, 2026Cancer Research0 citations

Abstract 151: Combination of cytokines, PM21-particle stimulation, and TGF-β conditioning results in Natural Killer cells with enhanced cytotoxicity and infiltration of solid tumors.

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JOJeremiah L. OyerTCTayler J. Croom-PerezJRJavier Rivera-Huertas

Key Points

  • The aim is to enhance the cytotoxicity and tumor infiltration of natural killer (NK) cells using a combination of cytokines and TGF-β conditioning.
  • Activated NK cells using feeder cell-free PM21 particles and cytokines (IL-12, IL-15, IL-18)
  • Applied TGF-β conditioning to assess effects on NK cell function
  • Monitored NK cell expansion and viability post-conditioning
  • Conducted co-culture experiments with tumor spheroids to evaluate infiltration and cytotoxicity
  • TGF-β conditioned CAP-NK cells achieved an average 4000±700-fold expansion by day 14
  • These cells maintained high viability (over 80%) after cryopreservation
  • CAP-NK cells produced significantly more IFNγ when stimulated compared to unconditioned cells
  • Conditioned NK cells infiltrated tumors more effectively than PM21-NK cells, resulting in enhanced tumor killing
  • Cytotoxicity was notably increased against multiple solid tumor cell lines.

Abstract

Abstract In this study, feeder cell-free PM21 particle activation of Natural Killer (NK) cells was combined with cytokine activation and TGF-β conditioning to produce highly proliferative and cytotoxic NK cells that can infiltrate solid tumors. Development of NK cell therapeutics is a promising anti-cancer therapy. For clinical applications, NK cells are typically either ex vivo activated with cytokines or expanded with feeder cells or by feeder cell-free methods. One such method for feeder cell-free expansion of highly cytotoxic NK cells uses plasma membrane particles containing surface IL-21 and 41BBL (PM21). Additionally, NK cells expanded with IL-12, IL-15, and IL-18 in combination with PM21 stimulation (CAP-NK cells) exhibit robust proliferation, potent cytotoxicity, and memory-like features. To further improve their activity against solid tumors—a setting often resistant to NK cells—we introduced TGF-β conditioning. Previous studies have shown that ex vivo TGF-β conditioning induces IFNγ hypersecretion. To assess whether this could enhance anti-tumor function, PM21- and CAP-NK cells were expanded in the presence of TGF-β. The CAP-based expansion method still resulted in enhanced NK-cell expansion, even with TGF-β conditioning. CAP-based expansion remained highly effective even with TGF-β conditioning, achieving an average 4000±700-fold expansion by day 14 compared to 1800±60-fold for PM21-NK cells. TGF-β conditioned NK cells retained high viability after cryopreservation (80% immediately and at 16 h post-thaw) and 99±1% expressed CD25 by day 7. These cells produced significantly more IFNγ upon stimulation than unconditioned CAP-NK cells. Moreover, TGF-β conditioned CAP-NK cells acquired a tissue-resident-like phenotype (CD103+, CD49a+, CD300a−) not observed in PM21- or CAP-NK cells, which would be expected to enhance their ability to infiltrate tumors. To test this, labeled TGF-β conditioned CAP-NK and PM21-NK cells were co-cultured with large lung tumor spheroids and monitored via live-cell imaging. TGF-β conditioned NK cells penetrated tumors faster and deeper than PM21-NK cells, which remained mostly at the periphery, resulting in greater spheroid killing—even in tumors overexpressing TGF-β.TGF-β conditioning also enhanced cytotoxicity against multiple solid tumor cell line spheroids, including lung, pancreatic, and neuroblastoma. Overall, these findings support TGF-β conditioned CAP-NK cells as a potent cellular therapy candidate for solid tumors. Citation Format: Jeremiah L. Oyer, Tayler J. Croom-Perez, Javier A. Rivera-Huertas, Brian P. Tullius, Alicja J. Copik. Combination of cytokines, PM21-particle stimulation, and TGF-β conditioning results in Natural Killer cells with enhanced cytotoxicity and infiltration of solid tumors abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 151.

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Cite This Study

Oyer et al. (2026) studied this question.

synapsesocial.com/papers/69d1fdd4a79560c99a0a4215https://doi.org/10.1158/1538-7445.am2026-151
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract 5234: TGFbeta-conditioned K-NK cells are able to counter immune suppression in the tumor micro-environment2024
  2. 2PM21-particle stimulation augmented with cytokines enhances NK cell expansion and confers memory-like characteristics with enhanced survival2024 · 10 citations
  3. 3Advancing Adoptive Cell Therapy: Optimized Expansion of Adaptive NK Cells for Solid Tumors2024
  4. 4Abstract 1334: Evaluation of NK cell combination therapies in mouse models of cancer2024 · 1 citations
  5. 5Abstract B007: Developing cytokine-armored CAR-NK cells for the treatment of non-small cell lung cancer2026