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A novel role for an old target: CD45 for breast cancer immunotherapy
Annat Raiter1, Oran Zlotnik1,2, Julia Lipovetsky1
1Felsenstein Medical Research Center, Sackler School of Medicine, Tel Aviv University, Petach Tikva, Israel.
Abstract:
Breast cancer subtypes have not shown significant response to current immunomodulatory therapies. Although most subtypes are treatable, triple negative breast cancer (TNBC), an aggressive highly metastatic cancer, comprising 10-20% of breast cancers, remains an unmet medical need. New strategies are needed in order to overcome flaws in the responsiveness to current TNBC therapies. Our aims were: first, to determine the efficacy of a novel immunomodulatory peptide, C24D, on TNBC and second, to elucidate the molecular mechanism by which C24D induces immune-modulating tumor killing. Using mass spectrometry analysis, we identified CD45 as the C24D binding receptor. In vitro and in vivo TNBC models were used to assess the efficacy of C24D in reversing TNBC-induced immunosuppression and in triggering immune-modulated tumor cell killing. The CD45 signal transduction pathway was evaluated by western blot and FACS analyses. We revealed that addition of PBMCs from healthy female donors to TNBC cells results in a cascade of suppressive CD45 intracellular signals. On binding to CD45's extra-cellular domain on TNBC-suppressed leukocytes, the C24D peptide re-activates the Src family of tyrosine kinases, resulting in specific tumor immune response. In vitro, immune reactivation by C24D results in an increase of CD69+ T and CD69+ NK cells, triggering specific killing of TNBC cells. In vivo, C24D induced CD8+ and activated CD56+ tumor infiltrated cells, resulting in tumor apoptosis. Our results should renew interest in molecules targeting CD45, such as the C24D peptide, as a novel strategy for TNBC immunotherapy.
Insights
A novel peptide, C24D, effectively targets CD45 to reverse immunosuppression in triple-negative breast cancer (TNBC). This peptide re-activates immune cells, triggering specific killing of TNBC cells and offering a new immunotherapy strategy.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Triple-negative breast cancer (TNBC) is an aggressive subtype with limited response to current immunotherapies.
- Novel strategies are crucial to overcome treatment resistance and improve outcomes for TNBC patients.
- Targeting immune suppression within the tumor microenvironment is a key challenge in TNBC therapy.
Purpose of the Study:
- To evaluate the efficacy of the novel immunomodulatory peptide C24D against TNBC.
- To elucidate the molecular mechanism of C24D-induced immune-mediated tumor cell killing.
- To identify the specific receptor for the C24D peptide.
Main Methods:
- Mass spectrometry was used to identify CD45 as the binding receptor for C24D.
- In vitro and in vivo TNBC models were employed to assess C24D's immunomodulatory effects.
- Western blot and flow cytometry (FACS) analyses were performed to evaluate the CD45 signaling pathway.
Main Results:
- C24D binds to CD45 on immunosuppressed leukocytes in TNBC, re-activating Src family kinases.
- In vitro, C24D increased CD69+ T and NK cells, leading to specific TNBC cell killing.
- In vivo, C24D promoted CD8+ and CD56+ immune cell infiltration, inducing tumor apoptosis.
Conclusions:
- The C24D peptide demonstrates significant efficacy in reversing TNBC-induced immunosuppression.
- C24D's mechanism involves CD45 receptor engagement and reactivation of anti-tumor immune responses.
- Targeting CD45 with peptides like C24D represents a promising novel immunotherapy strategy for TNBC.

