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Updated: Feb 13, 2026

Assessing Specificity of Anticancer Drugs In Vitro
Published on: March 23, 2016
Cell mass-dependent expression of an anticancer protein drug by tumor-targeted Salmonella
Kwangsoo Kim1,2, Sa-Young Min3, Ho-Dong Lim3
1Department of Microbiology, Chonnam National University Medical School, Jeollanam-do, Republic of Korea.
Abstract:
Bacterial cancer therapy relies on the properties of certain bacterial species capable of targeting and proliferating within solid malignancies. If these bacteria could be loaded with antitumor proteins, the efficacy of this approach could be greatly increased. However, because most antitumor proteins are also toxic to normal tissue, they must be expressed by bacteria that specifically target and exclusively localize to tumor tissue. As a strategy for treating solid malignancies, we recently evaluated L-asparaginase (L-ASNase) delivered by tumor-targeted Salmonella. In this system, L-ASNase was expressed under the control of the araBAD promoter (PBAD) of the E. coli arabinose operon, which is induced by injection of L-arabinose. Here, we further improved the performance of recombinant Salmonella in cancer therapy by exploiting the quorum-sensing (QS) system, which uses cell mass-dependent auto-induction logic. This approach obviates the necessity of monitoring intratumoral bacterial status and inducing cargo protein expression by administration of an exogenous compound. Recombinant Salmonella in tumors expressed and secreted active L-ASNase in a cell mass-dependent manner, yielding significant anticancer effects. These results suggest that expression of a therapeutic protein under the control of the QS system represents a promising engineering platform for the production of recombinant proteins in vivo.
Insights
Engineered bacteria deliver therapeutic proteins directly to tumors. A novel quorum-sensing system enables bacteria to produce anti-cancer proteins like L-asparaginase (L-ASNase) within tumors, enhancing treatment efficacy.
Area of Science:
- Microbiology
- Biotechnology
- Oncology
Background:
- Bacterial cancer therapy utilizes bacteria targeting solid tumors.
- Enhancing efficacy requires loading bacteria with antitumor proteins.
- Tumor-specific expression is crucial due to antitumor protein toxicity.
Purpose of the Study:
- To improve recombinant Salmonella performance in cancer therapy.
- To engineer bacteria for autonomous therapeutic protein production.
- To utilize quorum-sensing (QS) for controlled protein expression.
Main Methods:
- Recombinant Salmonella engineered with a quorum-sensing (QS) system.
- QS system controls expression of L-asparaginase (L-ASNase).
- Bacterial cell mass dictates L-ASNase production and secretion.
Main Results:
- Recombinant Salmonella expressed and secreted active L-ASNase in tumors.
- L-ASNase production was cell mass-dependent.
- Significant anticancer effects were observed.
Conclusions:
- Quorum-sensing (QS) system enables cell mass-dependent protein production.
- This QS system is a promising platform for in vivo recombinant protein production.
- QS-controlled bacterial cancer therapy offers an improved therapeutic strategy.
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