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Updated: Nov 3, 2025

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
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.
Abstract:
A major contributing factor in triple-negative breast cancer progression is its ability to evade immune surveillance. One mechanism for this immunosuppression is through ribosomal protein S19 (RPS19), which facilitates myeloid-derived suppressor cells (MDSCs) recruitment in tumors, which generate cytokines TGF-β and IL-10 and induce regulatory T cells (Tregs), all of which are immunosuppressive and enhance tumor progression. Hence, enhancing the immune system in breast tumors could be a strategy for anticancer therapeutics. The present study evaluated the immune response of atovaquone, an antiprotozoal drug, in three independent breast-tumor models. Our results demonstrated that oral administration of atovaquone reduced HCC1806, CI66 and 4T1 paclitaxel-resistant (4T1-PR) breast-tumor growth by 45%, 70% and 42%, respectively. MDSCs, TGF-β, IL-10 and Tregs of blood and tumors were analyzed from all of these in vivo models. Our results demonstrated that atovaquone treatment in mice bearing HCC1806 tumors reduced MDSCs from tumor and blood by 70% and 30%, respectively. We also observed a 25% reduction in tumor MDSCs in atovaquone-treated mice bearing CI66 and 4T1-PR tumors. In addition, a decrease in TGF-β and IL-10 in tumor lysates was observed in atovaquone-treated mice with a reduction in tumor Tregs. Moreover, a significant reduction in the expression of RPS19 was found in tumors treated with atovaquone.
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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