Tumor-targeting amino acid auxotrophic Salmonella typhimurium

Robert M Hoffman1

  • 1AntiCancer Inc., San Diego, CA 92111, USA. all@anticancer.com

Amino Acids
|March 18, 2009
PubMed

Insights

Salmonella typhimurium auxotrophs, a novel bacterial cancer therapy, effectively target and destroy viable tumor tissue, including metastases, in mice without chemotherapy. This innovative approach shows significant promise for treating various cancers, offering a new therapeutic paradigm.

Area of Science:

  • Oncology
  • Microbiology
  • Bacterial Therapeutics

Background:

  • Traditional cancer therapies often involve toxic chemotherapy with significant side effects.
  • Bacterial cancer therapy strategies have shown promise but often require combination with chemotherapy.
  • Targeting viable tumor tissue with engineered bacteria offers a potential alternative.

Purpose of the Study:

  • To develop and evaluate an effective bacterial cancer therapy using Salmonella typhimurium auxotrophs.
  • To assess the efficacy of Salmonella typhimurium A1-R against primary and metastatic tumors in preclinical models.
  • To explore the potential of engineered promoters for enhanced therapeutic expression in tumors.

Main Methods:

  • Generation of Salmonella typhimurium auxotrophs (A1-R) with restricted growth in normal tissues.
  • In vitro studies of A1-R infection and nuclear destruction in tumor cells.
  • Administration of A1-R via intravenous, intratumoral, intrasplenic, and lymphatic routes in mice with human tumors.
  • Identification of engineered promoter clones with enhanced expression in tumor environments.

Main Results:

  • Salmonella typhimurium A1-R demonstrated high anti-tumor virulence and effectively infected tumor cells.
  • Complete cure and long-term survival were observed in 40% of mice with metastatic prostate and breast tumors.
  • Significant efficacy against osteosarcoma, pancreatic cancer, fibrosarcoma, and their metastases (lung, lymph node, liver) was achieved.
  • Tumor regression and metastasis cure occurred without chemotherapy or other treatments.
  • Engineered promoters showed preferential expression in bacteria within tumors.

Conclusions:

  • Engineered Salmonella typhimurium auxotrophs (A1-R) represent an effective monotherapy for primary and metastatic cancers.
  • This bacterial therapy strategy offers a significant improvement over conventional approaches requiring chemotherapy.
  • Targeted delivery and engineered promoters hold potential for enhancing the efficacy of Salmonella-based cancer therapy.