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Published on: November 19, 2019
Bruton Tyrosine Kinase-Dependent Immune Cell Cross-talk Drives Pancreas Cancer
Andrew J Gunderson1, Megan M Kaneda2, Takahiro Tsujikawa3
1Department of Cell, Developmental and Cancer Biology, Oregon Health and Science University, Portland, Oregon.
Unlabelled:
Pancreas ductal adenocarcinoma (PDAC) has one of the worst 5-year survival rates of all solid tumors, and thus new treatment strategies are urgently needed. Here, we report that targeting Bruton tyrosine kinase (BTK), a key B-cell and macrophage kinase, restores T cell-dependent antitumor immune responses, thereby inhibiting PDAC growth and improving responsiveness to standard-of-care chemotherapy. We report that PDAC tumor growth depends on cross-talk between B cells and FcRγ(+) tumor-associated macrophages, resulting in T(H)2-type macrophage programming via BTK activation in a PI3Kγ-dependent manner. Treatment of PDAC-bearing mice with the BTK inhibitor PCI32765 (ibrutinib) or by PI3Kγ inhibition reprogrammed macrophages toward a T(H)1 phenotype that fostered CD8(+) T-cell cytotoxicity, and suppressed PDAC growth, indicating that BTK signaling mediates PDAC immunosuppression. These data indicate that pharmacologic inhibition of BTK in PDAC can reactivate adaptive immune responses, presenting a new therapeutic modality for this devastating tumor type.
Significance:
We report that BTK regulates B-cell and macrophage-mediated T-cell suppression in pancreas adenocarcinomas. Inhibition of BTK with the FDA-approved inhibitor ibrutinib restores T cell-dependent antitumor immune responses to inhibit PDAC growth and improves responsiveness to chemotherapy, presenting a new therapeutic modality for pancreas cancer.
Insights
Targeting Bruton tyrosine kinase (BTK) in pancreatic cancer reactivates T cell immunity against tumors. Inhibiting BTK with ibrutinib suppresses tumor growth and enhances chemotherapy effectiveness, offering a new treatment strategy for pancreatic ductal adenocarcinoma.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Pancreas ductal adenocarcinoma (PDAC) exhibits poor survival rates, necessitating novel therapeutic approaches.
- Tumor growth in PDAC is linked to immunosuppression mediated by B cells and macrophages.
- Bruton tyrosine kinase (BTK) plays a critical role in B-cell and macrophage signaling pathways.
Purpose of the Study:
- To investigate the role of BTK in PDAC immunosuppression.
- To evaluate the therapeutic potential of BTK inhibition in PDAC.
- To determine if BTK inhibition can restore anti-tumor immune responses.
Main Methods:
- Utilized a mouse model of PDAC.
- Administered BTK inhibitor PCI-32765 (ibrutinib) and PI3Kγ inhibitor.
- Assessed macrophage programming, T cell-dependent cytotoxicity, and tumor growth.
- Evaluated responsiveness to standard-of-care chemotherapy.
Main Results:
- PDAC growth depends on BTK-mediated cross-talk between B cells and macrophages, leading to T(H)2-polarized macrophages.
- BTK inhibition reprogrammed macrophages to a T(H)1 phenotype, enhancing CD8(+) T cell cytotoxicity.
- Inhibition of BTK or PI3Kγ suppressed PDAC growth in mice.
Conclusions:
- BTK signaling mediates immunosuppression in PDAC by regulating B-cell and macrophage interactions.
- Ibrutinib, an FDA-approved BTK inhibitor, restores T cell-mediated anti-tumor immunity.
- BTK inhibition presents a promising therapeutic strategy for PDAC, improving chemotherapy response.
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