Experimental Biology and Medicine (Jun 2024)

Attenuated mutants of Salmonella enterica Typhimurium mediate melanoma regression via an immune response

  • Genesy Pérez Jorge,
  • Genesy Pérez Jorge,
  • Marco Gontijo,
  • Marco Gontijo,
  • Marina Flóro e Silva,
  • Marina Flóro e Silva,
  • Isabella Carolina Rodrigues Dos Santos Goes,
  • Yessica Paola Jaimes-Florez,
  • Yessica Paola Jaimes-Florez,
  • Lilian de Oliveira Coser,
  • Francisca Janaína Soares Rocha,
  • Selma Giorgio,
  • Marcelo Brocchi

DOI
https://doi.org/10.3389/ebm.2024.10081
Journal volume & issue
Vol. 249

Abstract

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The lack of effective treatment options for an increasing number of cancer cases highlights the need for new anticancer therapeutic strategies. Immunotherapy mediated by Salmonella enterica Typhimurium is a promising anticancer treatment. Candidate strains for anticancer therapy must be attenuated while retaining their antitumor activity. Here, we investigated the attenuation and antitumor efficacy of two S. enterica Typhimurium mutants, ΔtolRA and ΔihfABpmi, in a murine melanoma model. Results showed high attenuation of ΔtolRA in the Galleria mellonella model, and invasion and survival in tumor cells. However, it showed weak antitumor effects in vitro and in vivo. Contrastingly, lower attenuation of the attenuated ΔihfABpmi strain resulted in regression of tumor mass in all mice, approximately 6 days after the first treatment. The therapeutic response induced by ΔihfABpmi was accompanied with macrophage accumulation of antitumor phenotype (M1) and significant increase in the mRNAs of proinflammatory mediators (TNF-α, IL-6, and iNOS) and an apoptosis inducer (Bax). Our findings indicate that the attenuated ΔihfABpmi exerts its antitumor activity by inducing macrophage infiltration or reprogramming the immunosuppressed tumor microenvironment to an activated state, suggesting that attenuated S. enterica Typhimurium strains based on nucleoid-associated protein genes deletion could be immunotherapeutic against cancer.

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