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Transfer of Manipulated Tumor-associated Neutrophils into Tumor-Bearing Mice to Study their Angiogenic Potential In Vivo
Published on: July 20, 2019
Repurposing nitric oxide donating drugs in cancer therapy through immune modulation
Chung-Yen Li1, Gangga Anuraga2,3, Chih-Peng Chang1,4
1College of Medicine, Institute of basic medical sciences, National Cheng Kung University, Tainan, Taiwan, ROC.
Background:
Nitric oxide-releasing drugs are used for cardiovascular diseases; however, their effects on the tumor immune microenvironment are less clear. Therefore, this study explored the impact of nitric oxide donors on tumor progression in immune-competent mice.
Methods:
The effects of three different nitric oxide-releasing compounds (SNAP, SNP, and ISMN) on tumor growth were studied in tumor-bearing mouse models. Three mouse tumor models were used: B16F1 melanoma and LL2 lung carcinoma in C57BL/6 mice, CT26 colon cancer in BALB/c mice, and LL2 lung carcinoma in NOD/SCID mice. After nitric oxide treatment, splenic cytokines and lymphocytes were analyzed by cytokine array and flow cytometry, and tumor-infiltrating lymphocytes in the TME were analyzed using flow cytometry and single-cell RNA sequencing.
Results:
Low doses of three exogenous nitric oxide donors inhibited tumor growth in two immunocompetent mouse models but not in NOD/SCID immunodeficient mice. Low-dose nitric oxide donors increase the levels of splenic cytokines IFN-γ and TNF-α but decrease the levels of cytokines IL-6 and IL-10, suggesting an alteration in Th2 cells. Nitric oxide donors increased the number of CD8+ T cells with activation gene signatures, as indicated by single-cell RNA sequencing. Flow cytometry analysis confirmed an increase in infiltrating CD8+ T cells and dendritic cells. The antitumor effect of nitric oxide donors was abolished by depletion of CD8+ T cells, indicating the requirement for CD8+ T cells. Tumor inhibition correlated with a decrease in a subtype of protumor macrophages and an increase in a subset of Arg1-positive macrophages expressing antitumor gene signatures. The increase in this subset of macrophages was confirmed by flow cytometry analysis. Finally, the combination of low-dose nitric oxide donor and cisplatin induced an additive cancer therapeutic effect in two immunocompetent animal models. The enhanced therapeutic effect was accompanied by an increase in the cells expressing the gene signature of NK cell.
Conclusions:
Low concentrations of exogenous nitric oxide donors inhibit tumor growth in vivo by regulating T cells and macrophages. CD8+ T cells are essential for antitumor effects. In addition, low-dose nitric oxide donors may be combined with chemotherapeutic drugs in cancer therapy in the future.
Insights
Low-dose nitric oxide donors inhibit tumor growth by enhancing CD8+ T cells and altering macrophages in immunocompetent mice. This approach shows potential for combination cancer therapy with chemotherapy.
Area of Science:
- Immunology
- Cancer Biology
- Pharmacology
Background:
- Nitric oxide (NO)-releasing drugs are established treatments for cardiovascular diseases.
- The impact of NO donors on the tumor immune microenvironment (TME) and cancer progression remains less understood.
- This study investigates the effects of NO donors on tumor growth in immunocompetent mouse models.
Purpose of the Study:
- To explore the impact of exogenous nitric oxide donors on tumor progression.
- To elucidate the mechanisms by which NO affects the tumor immune microenvironment.
- To assess the potential of NO donors in combination cancer therapy.
Main Methods:
- Three NO-releasing compounds (SNAP, SNP, ISMN) were tested in B16F1 melanoma, LL2 lung carcinoma, and CT26 colon cancer models.
- Tumor growth was monitored in immunocompetent (C57BL/6, BALB/c) and immunodeficient (NOD/SCID) mice.
- Immune responses were analyzed via splenic cytokine arrays, flow cytometry of lymphocytes and tumor-infiltrating cells, and single-cell RNA sequencing.
Main Results:
- Low-dose NO donors inhibited tumor growth in immunocompetent mice but not in immunodeficient mice, highlighting the role of the immune system.
- NO donors modulated splenic cytokines (increased IFN-γ, TNF-α; decreased IL-6, IL-10) and increased CD8+ T cell activation and infiltration.
- Antitumor effects were dependent on CD8+ T cells and correlated with favorable macrophage subset alterations; combination with cisplatin showed additive effects.
Conclusions:
- Exogenous nitric oxide donors inhibit tumor growth in vivo by modulating T cells and macrophages within the tumor immune microenvironment.
- CD8+ T cells are critical mediators of the antitumor effects induced by NO donors.
- Low-dose NO donors represent a promising strategy for combination cancer therapy with conventional chemotherapeutic agents.
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