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Studying the Role of Alveolar Macrophages in Breast Cancer Metastasis
Published on: June 26, 2016
CD24 signalling through macrophage Siglec-10 is a target for cancer immunotherapy
Amira A Barkal1,2,3,4, Rachel E Brewer1,2,3, Maxim Markovic1,2,3
1Institute for Stem Cell Biology and Regenerative Medicine, Stanford University School of Medicine, Stanford, CA, USA.
Abstract:
Ovarian cancer and triple-negative breast cancer are among the most lethal diseases affecting women, with few targeted therapies and high rates of metastasis. Cancer cells are capable of evading clearance by macrophages through the overexpression of anti-phagocytic surface proteins called 'don't eat me' signals-including CD471, programmed cell death ligand 1 (PD-L1)2 and the beta-2 microglobulin subunit of the major histocompatibility class I complex (B2M)3. Monoclonal antibodies that antagonize the interaction of 'don't eat me' signals with their macrophage-expressed receptors have demonstrated therapeutic potential in several cancers4,5. However, variability in the magnitude and durability of the response to these agents has suggested the presence of additional, as yet unknown 'don't eat me' signals. Here we show that CD24 can be the dominant innate immune checkpoint in ovarian cancer and breast cancer, and is a promising target for cancer immunotherapy. We demonstrate a role for tumour-expressed CD24 in promoting immune evasion through its interaction with the inhibitory receptor sialic-acid-binding Ig-like lectin 10 (Siglec-10), which is expressed by tumour-associated macrophages. We find that many tumours overexpress CD24 and that tumour-associated macrophages express high levels of Siglec-10. Genetic ablation of either CD24 or Siglec-10, as well as blockade of the CD24-Siglec-10 interaction using monoclonal antibodies, robustly augment the phagocytosis of all CD24-expressing human tumours that we tested. Genetic ablation and therapeutic blockade of CD24 resulted in a macrophage-dependent reduction of tumour growth in vivo and an increase in survival time. These data reveal CD24 as a highly expressed, anti-phagocytic signal in several cancers and demonstrate the therapeutic potential for CD24 blockade in cancer immunotherapy.
Insights
Cancer cells evade immune detection using "don't eat me" signals like CD47 and PD-L1. Researchers discovered CD24 acts as a dominant immune checkpoint, blocking macrophage clearance and offering a new immunotherapy target for ovarian and breast cancers.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Ovarian and triple-negative breast cancers are lethal, with limited targeted therapies and high metastasis rates.
- Cancer cells evade macrophage clearance via 'don't eat me' signals like CD47, PD-L1, and B2M.
- Existing antibody therapies targeting these signals show variable responses, suggesting other immune evasion mechanisms exist.
Purpose of the Study:
- To identify novel 'don't eat me' signals involved in cancer immune evasion.
- To investigate the role of CD24 as a potential therapeutic target in ovarian and breast cancers.
- To explore the interaction between tumor-expressed CD24 and macrophage receptors.
Main Methods:
- Analysis of CD24 and Siglec-10 expression in tumor-associated macrophages and cancer cells.
- Genetic ablation of CD24 and Siglec-10 in preclinical models.
- In vitro and in vivo experiments using monoclonal antibodies to block the CD24-Siglec-10 interaction.
- Assessment of macrophage phagocytosis, tumor growth, and survival rates.
Main Results:
- Tumor-expressed CD24 was identified as a dominant innate immune checkpoint in ovarian and breast cancers.
- CD24 interacts with sialic-acid-binding Ig-like lectin 10 (Siglec-10) on tumor-associated macrophages, inhibiting phagocytosis.
- Genetic or antibody-mediated blockade of the CD24-Siglec-10 axis robustly enhanced tumor cell phagocytosis and reduced tumor growth in vivo.
- Therapeutic CD24 blockade led to macrophage-dependent tumor reduction and increased survival.
Conclusions:
- CD24 functions as a critical anti-phagocytic signal in multiple cancer types, promoting immune evasion.
- Targeting the CD24-Siglec-10 interaction represents a promising novel immunotherapy strategy for ovarian and breast cancers.
- CD24 blockade can overcome immune resistance and improve therapeutic outcomes in these lethal malignancies.
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