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Intracarotid Cancer Cell Injection to Produce Mouse Models of Brain Metastasis
Published on: February 8, 2017
CCL2 blockade combined with PD-1/P-selectin immunomodulators impedes breast cancer brain metastasis
Sahar Israeli Dangoor1, Rami Khoury1, Koren Salomon1
1Department of Physiology and Pharmacology, Faculty of Medicine, Tel Aviv University, Tel Aviv 6997801, Israel.
Abstract:
Over the last two decades, the diagnosis and treatment of breast cancer patients have improved considerably. However, brain metastases remain a major clinical challenge and a leading cause of mortality. Thus, a better understanding of the pathways involved in the metastatic cascade is essential. To this end, we have investigated the reciprocal effects of astrocytes and breast cancer cells, employing traditional 2D cell culture and our unique 3D multicellular tumouroid models. Our findings revealed that astrocytes enhance the proliferation, migration and invasion of breast cancer cells, suggesting a supportive role for astrocytes in breast cancer outgrowth to the brain. Elucidating the key players in astrocyte-breast cancer cells crosstalk, we found that CCL2 is highly expressed in breast cancer brain metastases tissue sections from both patients and mice. Our in vitro and in vivo models further confirmed that CCL2 has a functional role in brain metastasis. Given their aggressive nature, we sought additional immune checkpoints for rationale combination therapy. Among the promising candidates were the adhesion molecule P-selectin, which we have recently shown to play a key role in the crosstalk with microglia cells and the co-inhibitory receptor PD-1, the main target of currently approved immunotherapies. Finally, combining CCL2 inhibition with immunomodulators targeting either PD-1/PD-L1 or P-selectin/P-Selectin Ligand-1 axes in our human 3D tumouroid models and in vivo presented more favourable outcomes than each monotherapy. Taken together, we propose that CCL2-CCR2/CCR4 is a key pathway promoting breast cancer brain metastases and a promising target for an immunotherapeutic combination approach.
Insights
Astrocytes promote breast cancer brain metastasis by enhancing cancer cell growth and spread. Targeting the CCL2 pathway combined with immune checkpoint inhibitors offers a promising therapeutic strategy for brain metastases.
Area of Science:
- Neuro-oncology
- Cancer Biology
- Immunotherapy
Background:
- Breast cancer brain metastases are a significant cause of mortality despite advances in treatment.
- Understanding the mechanisms driving brain metastasis is crucial for developing effective therapies.
Purpose of the Study:
- To investigate the role of astrocytes in breast cancer brain metastasis.
- To identify key molecular pathways involved in astrocyte-breast cancer cell interactions.
- To evaluate combination therapies targeting identified pathways and immune checkpoints.
Main Methods:
- Utilized 2D cell cultures and 3D multicellular tumouroid models to study astrocyte-breast cancer cell interactions.
- Analyzed CCL2 expression in patient and mouse brain metastasis tissues.
- Employed in vitro and in vivo models to assess the efficacy of CCL2 inhibition and immunomodulators (PD-1/PD-L1, P-selectin/P-Selectin Ligand-1).
Main Results:
- Astrocytes were found to enhance breast cancer cell proliferation, migration, and invasion.
- CCL2 expression was elevated in brain metastases and functionally implicated in brain metastasis.
- Combination therapy targeting CCL2 and immune checkpoints (PD-1/PD-L1 or P-selectin/P-Selectin Ligand-1) showed superior outcomes compared to monotherapy.
Conclusions:
- The CCL2-CCR2/CCR4 pathway is a critical driver of breast cancer brain metastasis.
- Targeting CCL2 in combination with immune checkpoint inhibitors represents a promising therapeutic strategy for managing breast cancer brain metastases.

