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Mobilizing antigen-presenting mast cells in anti-PD-1-refractory triple-negative breast cancer: a phase 2 trial
Song-Yang Wu1,2, Xi Jin1,2, Yin Liu1,2
1Department of Breast Surgery, Key Laboratory of Breast Cancer in Shanghai, Fudan University Shanghai Cancer Center, Shanghai, China.
Abstract:
The central challenge in triple-negative breast cancer (TNBC) immunotherapy is to identify novel mechanism-derived strategies for anti-programmed death-1 (PD-1) resistance and efficiently assess their efficacy and safety in humans. Understanding the intricate heterogeneity of the tumor microenvironment and its impact on treatment could guide the initiation of proof-of-concept clinical trials. Here, integrating single-cell transcriptome of 44 treatment-naive patients with TNBC, we unveiled an association between intrapatient mast cell heterogeneity and clinical benefit of PD-1 blockade. Upon independent parallel validation in 484 patients with TNBC, high levels of breast tissue antigen-presenting mast cells (apMCs) were associated with enhanced anti-PD-1 efficacy. Mechanistically, apMCs largely located within tertiary lymphoid structures and were efficient in performing presentation and cross-presentation of antigens and expressed co-stimulatory molecules. Conditional deletion of antigen-presenting machinery in mast cells dampened tumor-reactive T cells. A widely prescribed allergy medication, cromolyn, was identified to mobilize apMC-mediated T cell immunity and sensitize tumors to PD-1 blockade. We subsequently initiated a phase 2 clinical trial in female patients with anti-PD-1-refractory metastatic TNBC. Here we report the results of the cromolyn arm (cromolyn plus anti-PD-1 backbone). The prespecified primary endpoint of this arm was met, with a confirmed objective response rate of 50.0%. Our study defines a crucial role of mast cells in cancer immune control, identifies an apMC-directed approach to overcome anti-PD-1 resistance and highlights a reverse-translational framework that offers conceptual advances in precision immuno-oncology with direct implications for clinical therapy. ClinicalTrials.gov identifier: NCT05076682 .
Insights
Researchers found that high levels of antigen-presenting mast cells (apMCs) improve response to anti-programmed death-1 (PD-1) therapy in triple-negative breast cancer (TNBC). An allergy drug, cromolyn, combined with anti-PD-1, showed a 50% response rate in a clinical trial.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Triple-negative breast cancer (TNBC) immunotherapy faces challenges in overcoming resistance to anti-programmed death-1 (PD-1) therapies.
- Understanding tumor microenvironment heterogeneity is crucial for developing effective treatment strategies.
Purpose of the Study:
- To identify mechanisms of resistance to PD-1 blockade in TNBC.
- To investigate the role of mast cells in anti-PD-1 efficacy.
- To evaluate a novel therapeutic strategy combining cromolyn with anti-PD-1 therapy.
Main Methods:
- Single-cell transcriptomics of 44 treatment-naive TNBC patients.
- Validation in 484 TNBC patients.
- Mechanistic studies involving antigen presentation and T cell responses.
- Phase 2 clinical trial of cromolyn plus anti-PD-1 in metastatic TNBC.
Main Results:
- High levels of antigen-presenting mast cells (apMCs) in TNBC correlate with improved clinical benefit from PD-1 blockade.
- apMCs are effective antigen-presenting cells within tertiary lymphoid structures.
- Cromolyn enhances apMC-mediated T cell immunity and sensitizes tumors to PD-1 blockade.
- The Phase 2 trial demonstrated a 50.0% objective response rate in patients receiving cromolyn plus anti-PD-1.
Conclusions:
- Mast cells play a critical role in cancer immune control and overcoming PD-1 resistance.
- apMC-directed strategies, like using cromolyn, offer a promising approach to enhance immunotherapy efficacy in TNBC.
- This study exemplifies a reverse-translational framework for precision immuno-oncology.
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