Augmenting antitumor immunity in colon cancer via GSDMD-mediated pyroptosis induced by an attenuated Salmonella delivery system

As a major gastrointestinal malignancy, colon cancer (CC) demands more effective therapies. Gene therapy is an emerging promising strategy, and pyroptosis, a novel lytic cell death form, serves as a vital antitumor target, with Gasdermin D (GSDMD)—a key pore-forming protein in pyroptosis—showing anti-CC potential. We constructed an engineered attenuated Salmonella strain to deliver a GSDMD-expressing plasmid, and verified its therapeutic efficacy via in vitro and in vivo studies. In CC cell lines, the Salmonella vector upregulated GSDMD and cleaved caspase-1 (its upstream activator), inhibiting cell proliferation and inducing pyroptosis. In CC-bearing mice, the strain significantly suppressed tumor progression, reduced Ki67 expression, elevated intratumoral GSDMD and cleaved caspase-1 levels, and enhanced CD4 + and CD8 + T cell infiltration to boost antitumor immunity. This study suggests that attenuated Salmonella-mediated GSDMD delivery combats CC by triggering pyroptosis and stimulating antitumor immunity, laying a foundation for GSDMD-targeted gene therapeutics.

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Publication Details

Journal
Immunologic Research
Published
2026-10-05
DOI
https://doi.org/10.1007/s12026-026-09851-6
Primary Topic
Cancer Research and Treatments
Type
article
Field-Weighted Citation Impact
0.00

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article

Augmenting antitumor immunity in colon cancer via GSDMD-mediated pyroptosis induced by an attenuated Salmonella delivery system

朱静媛, Bin Han, Pengkun Wei, Zhiang Liu et al.
Immunologic Research
Cancer Research and Treatments
article

Augmenting antitumor immunity in colon cancer via GSDMD-mediated pyroptosis induced by an attenuated Salmonella delivery system

朱静媛, Bin Han, Pengkun Wei, Zhiang Liu, Tiesuo Zhao, Sheng Guo, Ziwei Ai, Huijie Jia, Xurui Chai, Chuanjie Liu, Xiaolong Jia, Xu Si
article en

Abstract

As a major gastrointestinal malignancy, colon cancer (CC) demands more effective therapies. Gene therapy is an emerging promising strategy, and pyroptosis, a novel lytic cell death form, serves as a vital antitumor target, with Gasdermin D (GSDMD)—a key pore-forming protein in pyroptosis—showing anti-CC potential. We constructed an engineered attenuated Salmonella strain to deliver a GSDMD-expressing plasmid, and verified its therapeutic efficacy via in vitro and in vivo studies. In CC cell lines, the Salmonella vector upregulated GSDMD and cleaved caspase-1 (its upstream activator), inhibiting cell proliferation and inducing pyroptosis. In CC-bearing mice, the strain significantly suppressed tumor progression, reduced Ki67 expression, elevated intratumoral GSDMD and cleaved caspase-1 levels, and enhanced CD4 + and CD8 + T cell infiltration to boost antitumor immunity. This study suggests that attenuated Salmonella-mediated GSDMD delivery combats CC by triggering pyroptosis and stimulating antitumor immunity, laying a foundation for GSDMD-targeted gene therapeutics.

Immunologic ResearchVol. 74(1)
Xinxiang University (CN), Henan Medical University (CN)
Natural Science Foundation of Henan Province
Good health and well-being
Openalex Percentile: Top 19%
Cancer Research and Treatments
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