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April 5, 2026Cancer Research0 citations

Abstract 3805: Enhancing anti-tumor immunity via in vivo LNP delivery of a universal chimeric adapter protein to activate innate immune cells through T cell engagers

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KCKevin CarbajalZen Bio (United States)WAWarren AndersonZen Bio (United States)MSMatthias SchroffZen Bio (United States)

Key Points

  • To enhance anti-tumor immune responses by enabling innate immune cells to engage with T cell engagers.
  • Developed a chimeric adaptor protein to enable innate immune engagement.
  • Delivered TCE-R mRNA using lipid nanoparticles to target cells.
  • Assessed phagocytosis and pro-inflammatory signaling in monocyte cell lines and human primary macrophages.
  • Performed in vivo experiments in immune competent and immunocompromised mice.
  • Demonstrated effective phagocytosis of cancer cells mediated by TCE.
  • Induced pro-inflammatory signaling pathways upon TCE binding.
  • Confirmed expression of TCE-R on innate immune cell surfaces.
  • Showed successful in vivo trafficking of TCE-R to multiple myeloid cell lineages.

Abstract

Abstract T cell engagers (TCEs) have achieved remarkable successes both in liquid and solid tumors. However, relapses tend to occur in a significant fraction of patients, driven by antigen escape or T cell exhaustion. Currently, TCEs are unable to engage innate immune responses and thereby fail to leverage the innate immune system’s crucial support functions, such as inducing a pro-inflammatory environment and promoting antigen spread and T cell licensing against tumor neoantigens. Here we describe a chimeric adaptor protein that renders innate immune cells engageable by existing T cell engagers. This T cell engager receptor (TCE-R) is comprised of an extracellular domain that is recognized by all CD3-targeting TCEs, and a set of intracellular signaling domains that drive innate cell effector function upon TCE binding. Following initial administration of the TCE alone to induce tumor debulking, TCE-R is delivered in vivo using mRNA encapsulated in a lipid nanoparticle (LNP) allowing trafficking of pro-inflammatory innate immune cells to the tumor, inducing a broader TCE-driven anti-tumor response. In a monocyte cell line stably expressing TCE-R, we have demonstrated TCE-mediated phagocytosis of target cancer cells as well as TCE-driven induction of pro-inflammatory signaling pathways. Further, TCE-R delivered as an LNP-encapsulated mRNA to primary human macrophages and dendritic cells in vitro resulted in expression of TCE-R on the cell surface, demonstrating the ability to deliver the transgene to relevant lineages of the innate immune system. Lastly, in vivo delivery of TCE-R LNP to innate immune cells in immune competent Balb/c and immunocompromised NSG mice has been demonstrated through surface expression of the human TCE-R on multiple myeloid cell lineages. Taken together, our data lay the foundation to endow any anti-CD3 TCE with the ability to engage innate immune cells, recruit them to the tumor site, activate them in situ, and to leverage new effector functions to aid, broaden, and expand TCE-driven T cell responses ultimately leading to antigen spread, T cell licensing and durable remission. Citation Format: Kevin Carbajal, Warren Anderson, Matthias Schroff, Maximilian Richter. Enhancing anti-tumor immunity via in vivo LNP delivery of a universal chimeric adapter protein to activate innate immune cells through T cell engagers 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 3805.

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Cite This Study

Carbajal et al. (2026) studied this question.

synapsesocial.com/papers/69d1fd4ea79560c99a0a3375https://doi.org/10.1158/1538-7445.am2026-3805
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Also Consider

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

  1. 1An LNP-mRNA–based in vivo cell engager as a producer of T macrophage tumor triads in situ for targeted anti-solid tumor therapies.2026
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  4. 4Abstract 4904: Reprogramming of the non-pathogenic <i>E. coli</i> surface architecture to create next-generation immune engagers for potent cancer therapies2026
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