Intratumoral injection of EpCAM BITE, IL-12, and GM-CSF mRNA-LNPs blocks the growth of local treated and distant untreated tumors

We have previously shown that a T cell engaging bispecific humanized anti-human EpCAM-CD3 antibody efficiently kills a human EpCAM positive human xenograft in an NSG partially humanized mouse injected intravenously with human T cells when the anti-EpCAM-CD3 was delivered intratumorally as an mRNA-LNP. To extend these results we tested the effects of combining the anti-human EpCAM-CD3 with various cytokines injected into a tumor on the left side of NSG mice and an uninjected tumor on the right side of the mice. Combining both IL-12 and GM-CSF with anti-EpCAM-CD3 increased the number of T cells and the expression of genes and pathways that mediated T cell-based killing in the neighborhood of both the injected and the uninjected tumor and substantial increases in the expression of HLA Class II and associated genes in both tumors. This turned the cancer cells into potentially antigen-presenting cells. The effect of combining intratumoral injection of anti-EpCAM-CD3 with cytokines IL-12 and GM-CSF on tumor growth distal to the injection site avoids serious side effects on normal tissue, and suggests this technology offers a major approach to immunotherapy for treatment of a wide range of cancers from early to severe late stages.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-09-04
DOI
https://doi.org/10.1073/pnas.2616059123
Primary Topic
Monoclonal and Polyclonal Antibodies Research
Type
article
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article

Intratumoral injection of EpCAM BITE, IL-12, and GM-CSF mRNA-LNPs blocks the growth of local treated and distant untreated tumors

Walter F. Bodmer, Vita GOLUBOVSKAYA, Jinying Sun, John Sienkiewicz et al.
Proceedings of the National Academy of Sciences
Monoclonal and Polyclonal Antibodies Research
article

Intratumoral injection of EpCAM BITE, IL-12, and GM-CSF mRNA-LNPs blocks the growth of local treated and distant untreated tumors

Walter F. Bodmer, Vita GOLUBOVSKAYA, Jinying Sun, John Sienkiewicz, Lijun Wu, Robert Berahovich, Shiming Zhang, Liang Hu, Hua Zhou, Le Li
article en

Abstract

We have previously shown that a T cell engaging bispecific humanized anti-human EpCAM-CD3 antibody efficiently kills a human EpCAM positive human xenograft in an NSG partially humanized mouse injected intravenously with human T cells when the anti-EpCAM-CD3 was delivered intratumorally as an mRNA-LNP. To extend these results we tested the effects of combining the anti-human EpCAM-CD3 with various cytokines injected into a tumor on the left side of NSG mice and an uninjected tumor on the right side of the mice. Combining both IL-12 and GM-CSF with anti-EpCAM-CD3 increased the number of T cells and the expression of genes and pathways that mediated T cell-based killing in the neighborhood of both the injected and the uninjected tumor and substantial increases in the expression of HLA Class II and associated genes in both tumors. This turned the cancer cells into potentially antigen-presenting cells. The effect of combining intratumoral injection of anti-EpCAM-CD3 with cytokines IL-12 and GM-CSF on tumor growth distal to the injection site avoids serious side effects on normal tissue, and suggests this technology offers a major approach to immunotherapy for treatment of a wide range of cancers from early to severe late stages.

Proceedings of the National Academy of SciencesVol. 123(36)
University of Oxford (GB), International Research Associates (United States) (US), Institute of Applied Biotechnologies (Czechia) (CZ)
Good health and well-being
Openalex Percentile: Top 11%
Monoclonal and Polyclonal Antibodies Research
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Intratumoral injection of EpCAM BITE, IL-12, and GM-CSF mRNA-LNPs blocks the growth of local treated and distant untreated tumors — Walter F. Bodmer, Vita GOLUBOVSKAYA, et al. · Proceedings of the National Academy of Sciences (2026) | TGRS Research Map | TGRS