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Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
CD47 blockade (ALX301) enhances immunoradiotherapy response in HPV negative head and neck squamous cell carcinoma
Abdula Monther1,2, Riyam Al-Msari1,3, Robert Saddawi-Konefka1,4,5
1Moores Cancer Center, UC San Diego, La Jolla, California United States of America.
Abstract:
Head and neck squamous cell carcinoma (HNSCC) is a significant cause of morbidity and mortality worldwide, with limited treatment options for patients with locally advanced disease. CD47 immune checkpoint inhibitors have been used to block the CD47/SIRPa interaction that inhibits antigen-presenting cell phagocytosis, thereby enhancing antigen presentation to cytotoxic T-cells, and have shown promise in combination with anti-PD1 immunotherapy in tumors, including recurrent/metastatic HNSCC. We found that CD47 expression is associated with poor prognosis in HNSCC and explored the anti-tumor activity of an anti-CD47 fusion protein in combination with anti-PD1 and lymphatic-sparing radiotherapy in a locally advanced HNSCC model. In the 4MOSC1 syngeneic HPV-negative HNSCC mouse model, ALX301 (an engineered CD47-blocking SIRPα fusion for murine models) induced complete tumor regression when combined with anti-PD-1, and produced a partial tumor response as a monotherapy. An anti-PD1 immune checkpoint inhibitor in a CD47-null tumor background led to complete tumor regression confirming a key role for CD47 in tumor immunity. ALX301 treated mice demonstrated increased MHC-II expression on dendritic cells within the tumor and upregulation of CD86 co-stimulatory molecule on dendritic cells within the tumor, sentinel lymph nodes, and contralateral lymph nodes. Combination ALX301 and anti-PD1 treatment in an anti-PD1 resistant 4MOSC2 model demonstrated significant tumor regression, enhanced survivability, improved response with neoadjuvant radiotherapy, and greater retention of CD8 + T-cells within the tumor microenvironment. Notably, T-cell receptor sequencing revealed increased shared clonality between the tumor and sentinel lymph nodes of ALX301 treated mice. These data demonstrate that a combination of CD47 blockade and anti-PD1 therapy enhances tumor antigen presentation and immune cell infiltration, while further improving anti-tumor responses in combination with tumor-targeted radiotherapy. This study provides support for the rational design of combinatorial immunoradiotherapy, using anti-CD47 inhibitors and anti-PD1 therapy, in a clinical trial targeting locally advanced HPV-negative HNSCC.
Insights
Combining CD47 blockade with anti-PD1 immunotherapy and radiotherapy shows significant promise for treating head and neck squamous cell carcinoma (HNSCC). This approach enhances anti-tumor immune responses and improves outcomes in preclinical models.
Area of Science:
- Oncology
- Immunotherapy
- Cancer Research
Background:
- Head and neck squamous cell carcinoma (HNSCC) presents limited treatment options for advanced stages.
- CD47 immune checkpoint inhibitors can enhance anti-tumor immunity by blocking the CD47/SIRPa interaction.
- CD47 blockade combined with anti-PD1 immunotherapy has shown potential in various cancers, including HNSCC.
Purpose of the Study:
- To investigate the anti-tumor activity of combining an anti-CD47 fusion protein (ALX301) with anti-PD1 immunotherapy and radiotherapy in a locally advanced HNSCC model.
- To evaluate the impact of CD47 blockade on immune cell function and tumor microenvironment.
- To assess the efficacy of this combination therapy in an anti-PD1 resistant HNSCC model.
Main Methods:
- Utilized a syngeneic HPV-negative HNSCC mouse model (4MOSC1) and an anti-PD1 resistant model (4MOSC2).
- Administered ALX301 (anti-CD47 fusion protein) alone and in combination with anti-PD1 immunotherapy.
- Incorporated lymphatic-sparing radiotherapy as neoadjuvant treatment.
- Assessed tumor regression, survival, immune cell infiltration (MHC-II, CD86, CD8+ T-cells), and T-cell receptor clonality.
Main Results:
- ALX301 combined with anti-PD1 induced complete tumor regression in the 4MOSC1 model; monotherapy showed partial response.
- CD47 blockade increased MHC-II and CD86 expression on dendritic cells, enhancing antigen presentation.
- Combination therapy significantly regressed tumors in the anti-PD1 resistant 4MOSC2 model, improving survival and T-cell retention.
- T-cell receptor sequencing indicated increased immune cell engagement between tumor and lymph nodes.
Conclusions:
- Combination therapy of CD47 blockade, anti-PD1, and radiotherapy enhances anti-tumor immune responses in HNSCC.
- This combinatorial approach shows efficacy even in anti-PD1 resistant tumors.
- The findings support the clinical investigation of combinatorial immunoradiotherapy for locally advanced HPV-negative HNSCC.
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