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Updated: Aug 22, 2025

Transfer of Manipulated Tumor-associated Neutrophils into Tumor-Bearing Mice to Study their Angiogenic Potential In Vivo
Published on: July 20, 2019
Systemic Nos2 Depletion and Cox inhibition limits TNBC disease progression and alters lymphoid cell spatial
Veena Somasundaram1, Lisa A Ridnour1, Robert Ys Cheng1
1Cancer Innovation Laboratory, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Frederick, MD, USA.
Abstract:
Antitumor immune polarization is a key predictor of clinical outcomes to cancer therapy. An emerging concept influencing clinical outcome involves the spatial location of CD8+ T cells, within the tumor. Our earlier work demonstrated immunosuppressive effects of NOS2 and COX2 tumor expression. Here, we show that NOS2/COX2 levels influence both the polarization and spatial location of lymphoid cells including CD8+ T cells. Importantly, elevated tumor NOS2/COX2 correlated with exclusion of CD8+ T cells from the tumor epithelium. In contrast, tumors expressing low NOS2/COX2 had increased CD8+ T cell penetration into the tumor epithelium. Consistent with a causative relationship between these observations, pharmacological inhibition of COX2 with indomethacin dramatically reduced tumor growth of the 4T1 model of TNBC in both WT and Nos2- mice. This regimen led to complete tumor regression in ∼20-25% of tumor-bearing Nos2- mice, and these animals were resistant to tumor rechallenge. Th1 cytokines were elevated in the blood of treated mice and intratumoral CD4+ and CD8+ T cells were higher in mice that received indomethacin when compared to control untreated mice. Multiplex immunofluorescence imaging confirmed our phenotyping results and demonstrated that targeted Nos2/Cox2 blockade improved CD8+ T cell penetration into the 4T1 tumor core. These findings are consistent with our observations in low NOS2/COX2 expressing breast tumors proving that COX2 activity is responsible for limiting the spatial distribution of effector T cells in TNBC. Together these results suggest that clinically available NSAID's may provide a cost-effective, novel immunotherapeutic approach for treatment of aggressive tumors including triple negative breast cancer.
Insights
Tumor expression of NOS2 and COX2 limits CD8+ T cell infiltration. Inhibiting COX2 with indomethacin enhances T cell penetration and reduces tumor growth, offering a potential immunotherapy for aggressive cancers like triple-negative breast cancer.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Antitumor immune polarization predicts cancer therapy outcomes.
- Spatial location of CD8+ T cells within tumors influences clinical outcomes.
- Previous work identified immunosuppressive effects of NOS2 and COX2 tumor expression.
Purpose of the Study:
- To investigate the influence of NOS2 and COX2 on immune cell spatial location.
- To determine if inhibiting COX2 can improve anti-tumor immunity and reduce tumor growth.
Main Methods:
- Utilized the 4T1 model of triple-negative breast cancer (TNBC) in wild-type (WT) and Nos2-deficient (Nos2-) mice.
- Administered indomethacin, a COX2 inhibitor, to assess its impact on tumor growth and immune cell infiltration.
- Employed multiplex immunofluorescence imaging to analyze T cell distribution within tumors.
Main Results:
- Elevated NOS2/COX2 correlated with CD8+ T cell exclusion from the tumor epithelium.
- Low NOS2/COX2 tumors showed increased CD8+ T cell penetration.
- Indomethacin treatment significantly reduced tumor growth, induced complete regression in some mice, and enhanced CD8+ T cell infiltration into the tumor core.
- Treatment led to elevated Th1 cytokines in blood and increased intratumoral CD4+ and CD8+ T cells.
Conclusions:
- COX2 activity limits the spatial distribution of effector T cells in TNBC.
- Targeted blockade of NOS2/COX2 improves CD8+ T cell penetration into tumors.
- Clinically available NSAIDs may offer a cost-effective immunotherapy for aggressive tumors, including TNBC.

