Atovaquone Suppresses Triple-Negative Breast Tumor Growth by Reducing Immune-Suppressive Cells

Nehal Gupta1,2, Shreyas Gaikwad2, Itishree Kaushik2

  • 1Department of Biomedical Sciences, Texas Tech University Health Sciences Center, Amarillo, TX 79106, USA.

Insights

The antiprotozoal drug atovaquone effectively reduced triple-negative breast cancer growth by targeting immune-suppressing myeloid-derived suppressor cells (MDSCs) and associated factors like RPS19.

Area of Science:

  • Immunology
  • Oncology
  • Pharmacology

Background:

  • Triple-negative breast cancer (TNBC) progression is linked to immune evasion.
  • Ribosomal protein S19 (RPS19) promotes immunosuppression by recruiting myeloid-derived suppressor cells (MDSCs).
  • MDSCs generate TGF-β and IL-10, inducing regulatory T cells (Tregs) that enhance tumor progression.

Purpose of the Study:

  • To evaluate the immune response and antitumor efficacy of atovaquone in preclinical breast cancer models.
  • To investigate atovaquone's impact on MDSCs, TGF-β, IL-10, Tregs, and RPS19 expression.

Main Methods:

  • Oral administration of atovaquone in three independent breast tumor models (HCC1806, CI66, 4T1-PR).
  • Analysis of tumor growth, MDSCs, TGF-β, IL-10, and Tregs in blood and tumors.
  • Assessment of RPS19 expression in treated tumors.

Main Results:

  • Atovaquone significantly reduced tumor growth in HCC1806 (45%), CI66 (70%), and 4T1-PR (42%) models.
  • Treatment decreased MDSCs in tumors and blood, with notable reductions in TGF-β, IL-10, and Tregs.
  • A significant reduction in RPS19 expression was observed in atovaquone-treated tumors.

Conclusions:

  • Atovaquone demonstrates potent antitumor activity in breast cancer models.
  • The drug modulates the tumor immune microenvironment by reducing immunosuppressive cells and factors.
  • Targeting RPS19 and MDSCs with atovaquone represents a potential therapeutic strategy for TNBC.

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