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Updated: Jul 3, 2026

Measuring Growth and Gene Expression Dynamics of Tumor-Targeted S. Typhimurium Bacteria
Published on: July 6, 2013
Inhibition of tumor growth using salmonella expressing Fas ligand
Markus Loeffler1, Gaelle Le'Negrate, Maryla Krajewska
1Burnham Institute for Medical Research, 10901 North Torrey Pines Rd, La Jolla, CA 92037, USA.
Abstract:
Intravenous administration of bacteria leads to their accumulation in tumors and to sporadic tumor regression. We therefore explored the hypothesis that Salmonella typhimurium engineered to express the proapoptotic cytokine Fas ligand (FasL) would exhibit enhanced antitumor activity. Immunocompetent mice carrying tumors derived from syngeneic murine D2F2 breast carcinoma or CT-26 colon carcinoma cells were treated intravenously with FasL-expressing S. typhimurium or with phosphate-buffered saline (PBS; control). Treatment with FasL-expressing S. typhimurium inhibited growth of primary tumors by an average of 59% for D2F2 tumors and 82% for CT-26 tumors (eg, at 25 days after initial treatment, mean volume of PBS-treated CT-26 colon carcinomas = 1385 mm(3) and of S. typhimurium FasL-treated CT-26 tumors = 243 mm(3), difference = 1142 mm(3), 95% confidence interval = 800 mm(3) to 1484 mm(3), P < .001). Pulmonary D2F2 metastases (as measured by lung weight) were reduced by 34% in S. typhimurium FasL-treated mice compared with PBS-treated mice. FasL-expressing S. typhimurium had similar effects on growth of murine B16 melanoma tumors in wild-type mice but not in lpr/lpr mice, which lack Fas, or in mice with disrupted host inflammatory responses. Antitumor activity was achieved without overt toxicity. These preclinical results raise the possibility that using attenuated S. typhimurium to deliver FasL to tumors may be an effective and well-tolerated therapeutic strategy for some cancers.
Insights
Engineered Salmonella typhimurium expressing Fas ligand (FasL) demonstrated significant tumor growth inhibition in preclinical models. This bacterial therapy shows potential as a well-tolerated cancer treatment strategy.
Area of Science:
- Oncology
- Microbiology
- Immunology
Background:
- Intravenous bacteria administration can accumulate in tumors, leading to tumor regression.
- Engineering bacteria to express therapeutic molecules is a strategy to enhance antitumor effects.
Purpose of the Study:
- To investigate the enhanced antitumor activity of Salmonella typhimurium engineered to express the proapoptotic cytokine Fas ligand (FasL).
Main Methods:
- Immunocompetent mice with D2F2 breast carcinoma or CT-26 colon carcinoma tumors were treated intravenously with FasL-expressing S. typhimurium or PBS.
- Tumor growth, pulmonary metastasis, and effects in Fas-deficient or inflammation-impaired mice were assessed.
Main Results:
- FasL-expressing S. typhimurium significantly inhibited primary tumor growth (59% for D2F2, 82% for CT-26).
- Pulmonary metastases were reduced by 34% in treated mice.
- Antitumor effects were dependent on Fas expression and host inflammatory responses, observed without overt toxicity.
Conclusions:
- Attenuated S. typhimurium delivering FasL to tumors represents a potential therapeutic strategy for certain cancers.
- This approach demonstrated preclinical efficacy and tolerability.
