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Implantation and Monitoring by PET/CT of an Orthotopic Model of Human Pleural Mesothelioma in Athymic Mice
Published on: December 21, 2019
Targeting FAcilitates Chromatin Transcription complex inhibits pleural mesothelioma and enhances immunotherapy
Anand Singh1, Nathanael Pruett1, Shivani Dixit1
1Thoracic Surgery Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Background:
Diffuse pleural mesothelioma (DPM) is an aggressive therapy-resistant cancer with unique molecular features. Numerous agents have been tested, but clinically effective ones remain elusive. Herein, we propose to use a small molecule CBL0137 (curaxin) that simultaneously suppresses nuclear factor-κB (NF-κB) and activates tumor suppressor p53 via targeting FAcilitates Chromatin Transcription (FACT) complex, a histone chaperone critical for DNA repair.
Methods:
We used DPM cell lines, murine models (xeno- and allo-grafts), plus DPM patient samples to characterize anti-tumor effects of CBL0137 and to delineate specific molecular mechanisms.
Results:
We verified that CBL0137 induced cell cycle arrest and apoptosis. We also discovered that DPM is a FACT-dependent cancer with overexpression of both subunits structure-specific recognition protein 1 (SSRP1), a poor prognosis indicator, and suppressor of Ty 16 (SUPT16H). We defined several novel uses of CBL0137 in DPM therapy. In combination with cisplatin, CBL0137 exhibited additive anti-tumor activity compared to monotherapy. Similarly, CBL0137 (systemic) could be combined with other novel agents like microRNA-215 (intrapleural) as a more effective regimen. Importantly, we established that CBL0137 induces immunogenic cell death that contributes to activating immune response pathways in DPM. Therefore, when CBL0137 is combined with dual immune checkpoint inhibitors DPM tumor growth is significantly suppressed.
Conclusions:
We identified an unrecognized molecular vulnerability of DPM based on FACT dependency. CBL0137 alone and in several combinations with different therapeutics showed promising efficacy, including that of improved anti-tumor immunity. Overall, these preclinical findings suggest that CBL0137 could be ideally suited for use in DPM clinical trials.
Insights
The novel drug CBL0137 shows promise for treating diffuse pleural mesothelioma (DPM) by targeting the FACT complex. It demonstrates efficacy alone and in combination therapies, enhancing anti-tumor immunity for DPM treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Diffuse pleural mesothelioma (DPM) is an aggressive cancer with limited treatment options.
- Existing therapies for DPM have shown limited clinical efficacy.
- CBL0137 targets the FACT complex, suppressing NF-κB and activating p53.
Purpose of the Study:
- To investigate the anti-tumor effects of CBL0137 in DPM.
- To elucidate the molecular mechanisms underlying CBL0137's action in DPM.
- To explore novel therapeutic strategies for DPM using CBL0137.
Main Methods:
- Utilized DPM cell lines, murine models (xeno- and allo-grafts), and patient samples.
- Characterized anti-tumor effects and molecular mechanisms of CBL0137.
- Evaluated CBL0137 in combination with cisplatin, microRNA-215, and immune checkpoint inhibitors.
Main Results:
- CBL0137 induced cell cycle arrest and apoptosis in DPM cells.
- DPM was identified as a FACT-dependent cancer with overexpression of SSRP1 and SUPT16H.
- CBL0137 demonstrated additive effects with cisplatin and enhanced efficacy with microRNA-215.
- CBL0137 induced immunogenic cell death, potentiating anti-tumor immune responses.
- Combination therapy with dual immune checkpoint inhibitors significantly suppressed DPM tumor growth.
Conclusions:
- DPM exhibits a previously unrecognized vulnerability to FACT inhibition.
- CBL0137 shows significant preclinical efficacy in DPM, both as monotherapy and in combination regimens.
- CBL0137 enhances anti-tumor immunity, suggesting its potential in DPM immunotherapy.
- These findings support the clinical investigation of CBL0137 for DPM treatment.
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