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Using 22C3 Anti-PD-L1 Antibody Concentrate on Biopsy and Cytology Samples from Non-small Cell Lung Cancer Patients
Published on: September 25, 2018
Niraparib activates interferon signaling and potentiates anti-PD-1 antibody efficacy in tumor models
Zebin Wang1, Kaiming Sun1, Yonghong Xiao1
1TESARO, Inc, Waltham, MA, 02451, USA.
Abstract:
PARP inhibitors have been proven clinically efficacious in platinum-responsive ovarian cancer regardless of BRCA1/2 status and in breast cancers with germline BRCA1/2 mutation. However, resistance to PARP inhibitors may preexist or evolve during treatment in many cancer types and may be overcome by combining PARP inhibitors with other therapies, such as immune checkpoint inhibitors, which confer durable responses and are rapidly becoming the standard of care for multiple tumor types. This study investigated the therapeutic potential of combining niraparib, a highly selective PARP1/2 inhibitor, with anti-PD-1 immune checkpoint inhibitors in preclinical tumor models. Our results indicate that niraparib treatment increases the activity of the type I (alpha) and type II (gamma) interferon pathways and enhances the infiltration of CD8+ cells and CD4+ cells in tumors. When coadministered in immunocompetent models, the combination of niraparib and anti-PD-1 demonstrated synergistic antitumor activities in both BRCA-proficient and BRCA-deficient tumors. Interestingly, mice with tumors cured by niraparib monotherapy completely rejected tumor growth upon rechallenge with the same tumor cell line, suggesting the potential establishment of immune memory in animals treated with niraparib monotherapy. Taken together, our findings uncovered immunomodulatory effects of niraparib that may sensitize tumors to immune checkpoint blockade therapies.
Insights
Combining niraparib (PARP inhibitor) with anti-PD-1 therapy shows synergistic antitumor effects and enhances anti-tumor immunity. This combination may overcome resistance and establish immune memory in various cancer models.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- PARP inhibitors are effective in certain cancers but resistance is a challenge.
- Immune checkpoint inhibitors offer durable responses and are standard care for many tumors.
- Combining therapies may overcome resistance and improve outcomes.
Purpose of the Study:
- To investigate the therapeutic potential of combining niraparib (a PARP1/2 inhibitor) with anti-PD-1 immune checkpoint inhibitors.
- To evaluate the synergistic antitumor activity and immunomodulatory effects of this combination in preclinical models.
Main Methods:
- Utilized preclinical tumor models, including BRCA-proficient and BRCA-deficient settings.
- Administered niraparib alone and in combination with anti-PD-1 antibodies.
- Assessed tumor immune infiltration (CD8+, CD4+ cells) and interferon pathway activity.
Main Results:
- Niraparib treatment upregulated type I and II interferon pathways.
- Combination therapy demonstrated synergistic antitumor activity in immunocompetent models.
- Niraparib monotherapy induced immune memory, leading to complete tumor rejection upon rechallenge.
Conclusions:
- Niraparib exhibits immunomodulatory effects, enhancing anti-tumor immunity.
- The combination of niraparib and anti-PD-1 therapy shows significant promise for cancer treatment.
- These findings suggest niraparib can sensitize tumors to immune checkpoint blockade.
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