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Updated: Jun 19, 2026

Generation of a Novel Dendritic-cell Vaccine Using Melanoma and Squamous Cancer Stem Cells
Published on: January 6, 2014
Novel cancer vaccine based on genes of Salmonella pathogenicity island 2
Guosheng Xiong1, Mohamed I Husseiny, Liping Song
1Division of Hematology-Oncology, Department of Pediatrics, University of Southern California Keck School of Medicine and The Saban Research Institute of Children's Hospital Los Angeles, Los Angeles, CA, USA.
Abstract:
Although tumors express potentially immunogenic tumor-associated antigens (TAAs), cancer vaccines often fail because of inadequate antigen delivery and/or insufficient activation of innate immunity. Engineering nonpathogenic bacterial vectors to deliver TAAs of choice may provide an efficient way of presenting TAAs in an immunogenic form. In this study, we used genes of Salmonella pathogenicity island 2 (SPI2) to construct a novel cancer vaccine in which a TAA, survivin, was fused to SseF effector protein and placed under control of SsrB, the central regulator of SPI2 gene expression. This construct uses the type III secretion system (T3SS) of Salmonella and allows preferential delivery of tumor antigen into the cytosol of antigen-presenting cells for optimal immunogenicity. In a screen of a panel of attenuated strains of Salmonella, we found that a double attenuated strain of Salmonella typhimurium, MvP728 (purD/htrA), was not toxic to mice and effectively expressed and translocated survivin protein inside the cytosol of murine macrophages. We also found that a ligand for CD1d-reactive natural killer T (NKT) cells, alpha-glucuronosylceramide (GSL1), enhanced MvP728-induced interleukin-12 production in human dendritic cells and that in vivo coadministration of a NKT ligand with MvP728-Llo or MvP728-survivin enhanced effector-memory cytotoxic T lymphocyte (CTL) responses. Furthermore, combined use of MvP728-survivin with GSL1 produced antitumor activity in mouse models of CT26 colon carcinoma and orthotopic DBT glioblastoma. Therefore, the use of TAA delivery via SPI-2-regulated T3SS of Salmonella and NKT ligands as adjuvants may provide a foundation for new cancer vaccines.
Insights
Engineered Salmonella bacteria deliver tumor antigens directly into cells, enhancing immune responses. Combining this with natural killer T cell ligands shows significant antitumor activity in mouse models, paving the way for new cancer vaccines.
Area of Science:
- Immunology
- Microbial Engineering
- Oncology
Background:
- Cancer vaccines struggle with antigen delivery and immune activation.
- Bacterial vectors offer a promising platform for cancer vaccine development.
Purpose of the Study:
- To engineer a novel bacterial cancer vaccine using Salmonella.
- To enhance antigen delivery and immune activation for improved anti-tumor efficacy.
Main Methods:
- Constructed a Salmonella typhimurium vaccine vector (MvP728) expressing survivin via SPI-2 regulated type III secretion system (T3SS).
- Evaluated survivin delivery into macrophages and immune responses in dendritic cells.
- Assessed efficacy of the vaccine, alone and with alpha-glucuronosylceramide (GSL1) NKT ligand, in mouse cancer models.
Main Results:
- The engineered Salmonella strain MvP728 effectively delivered survivin into murine macrophages.
- NKT ligand GSL1 enhanced MvP728-induced interleukin-12 production and boosted cytotoxic T lymphocyte (CTL) responses.
- Combined MvP728-survivin and GSL1 demonstrated significant antitumor activity in colon carcinoma and glioblastoma models.
Conclusions:
- SPI-2 regulated T3SS in Salmonella provides effective tumor-associated antigen (TAA) delivery.
- NKT ligands act as potent adjuvants, enhancing anti-tumor immune responses.
- This engineered bacterial vaccine platform holds promise for developing novel cancer immunotherapies.
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