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PLD-Specific Small-Molecule Inhibitors Decrease Tumor-Associated Macrophages and Neutrophils Infiltration in Breast
Karen M Henkels1, Naveen Reddy Muppani1, Julian Gomez-Cambronero2,1
1Wright State University Boonshoft School of Medicine, Department of Biochemistry and Molecular Biology, Dayton, Ohio 45435, United States of America.
Abstract:
Phospholipase D-2 (PLD2) has a key role in breast cancer formation and metastasis formation with PLD small inhibitors reducing primary tumor growth. This study aimed to evaluate the importance of targeting PLD on the tumor microenvironment. We provide evidence about the beneficial effect of PLD inhibitors [FIPI (dual PLD1/PLD2) or VU0155072-2 (PLD2 inhibitor)] on avoiding infiltration of tumor-helping macrophages and neutrophils. Tumor growth and metastasis within the primary tumors had low (<20% over controls) PLD enzyme activity. Unexpectedly, we found that the inhibitors also affected PLD2 gene expression and protein albeit at a lesser extent. The later could indicate that targeting both the actual PLD enzyme and its activity could be beneficial for potential cancer treatments in vivo. F4/80 and Ly6G staining of macrophages and neutrophils, respectively, and Arg1 staining data were consistent with M2 and N2 polarization. NOS2 staining increased in xenotransplants upon treatment with PLD2 inhibitors suggesting the novel observation that an increased recruitment of M1 macrophages occurred in primary tumors. PLD inhibitor-treated primary tumors had large, fragile, necrotic areas that were Arg1+ for M2 macrophages. The xenotransplants also caused the formation of large F4/80+ and Ly6G+ (>100 μm) clusters in lungs. However, PLD inhibitors, particularly FIPI, were able to diminish leukocyte presence. Ex vivo chemotaxis and PLD activity of peripheral blood neutrophils (PMN) and peritoneal macrophages was also determined. Whereas PMN had impaired functionality, macrophages did not. This significantly increased ("emboldened") macrophage function was due to PLD inhibition. Since tumor-associated leukocytes in primary tumors and metastases were targeted via PLD inhibition, we posit that these inhibitors have a key role in cancer regression, while still affording an appropriate inflammatory response at least from off-site innate immunity macrophages.
Insights
Targeting Phospholipase D-2 (PLD2) with inhibitors reduces breast cancer growth and metastasis by modulating immune cells. This approach impacts tumor microenvironment, potentially enhancing cancer regression while maintaining beneficial inflammation.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Phospholipase D-2 (PLD2) plays a critical role in breast cancer development and metastasis.
- PLD inhibitors have shown potential in reducing primary tumor growth.
- The impact of targeting PLD on the tumor microenvironment requires further investigation.
Purpose of the Study:
- To evaluate the significance of targeting PLD within the tumor microenvironment.
- To assess the effects of PLD inhibitors (FIPI and VU0155072-2) on immune cell infiltration and polarization.
Main Methods:
- Administration of PLD inhibitors (FIPI, VU0155072-2) in breast cancer models.
- Analysis of tumor growth, metastasis, and immune cell infiltration (macrophages, neutrophils) via F4/80, Ly6G, and Arg1 staining.
- Assessment of PLD2 gene expression and protein levels.
- Ex vivo chemotaxis and PLD activity assays on peripheral blood neutrophils and peritoneal macrophages.
Main Results:
- PLD inhibitors reduced infiltration of tumor-promoting macrophages and neutrophils.
- Low PLD enzyme activity was observed in primary tumors and metastases.
- Inhibitors affected PLD2 expression and protein levels, suggesting dual action.
- PLD inhibition led to M1 macrophage recruitment and altered M2 macrophage polarization.
- Inhibitors diminished leukocyte presence in tumors and lung metastases.
- Ex vivo studies showed impaired neutrophil function but enhanced macrophage function upon PLD inhibition.
Conclusions:
- Targeting PLD with inhibitors offers a promising strategy for breast cancer treatment by modulating the tumor microenvironment and immune response.
- The dual action on PLD enzyme and gene expression may enhance therapeutic benefits.
- PLD inhibitors can promote cancer regression by targeting tumor-associated leukocytes while preserving beneficial innate immunity.
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