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XPO1 target occupancy measurements confirm the selinexor recommended phase 2 dose
Marsha L Crochiere1, Stefan Hannus2, Kerrin Hansen2
1Karyopharm Therapeutics, Inc, Newton, MA 02459, USA.
Abstract:
XPO1 (exportin 1) is the main nuclear export protein with over 200 different protein cargos. XPO1 is overexpressed in tumor cells and high levels are correlated with poor prognosis. Selective Inhibitor of Nuclear Export (SINE) compounds block nuclear export by inhibiting XPO1. The first SINE compound, selinexor, shows promising anti-cancer activity across hematological and solid tumors in Phase 2 and 3 clinical trials. The 2nd generation SINE compound KPT-8602 is being evaluated as an anti-cancer agent in a Phase 1 clinical trial. To predict patient response to treatment and confirm the selinexor recommended phase 2 dose (RP2D), an assay based on fluorescence cross correlation spectroscopy that measures XPO1 occupancy in cancer cells was developed. Studies comparing cytotoxicity and XPO1 occupancy in cell lines treated with selinexor or KPT-8602 indicated that XPO1 occupancy by both compounds could reach saturation regardless of drug sensitivity. However, higher levels of XPO1 protein correlated with lower sensitivity to SINE compound cytotoxicity. In vivo mouse studies showed XPO1 occupancy could be measured in tumors and was dose-dependent, with >90% target saturation at 10 mg/kg (∼50 mg flat dose in humans). Drug-target occupancy was measured in a dose-response time course and full occupancy occurred by 6 hours at all doses. The duration of occupancy was dose-dependent, where 10-15 mg/kg in mice (∼ 50-75 mg human flat dose) was necessary to maintain XPO1 occupancy up to 48 hours post-dose. These findings confirm the selinexor RP2D of 60 mg for achieving target occupancy and inhibition up to 48 hours.
Insights
Selective Inhibitors of Nuclear Export (SINE) compounds target XPO1, crucial in cancer. This study developed an assay to measure XPO1 occupancy, confirming selinexor
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Exportin 1 (XPO1) is a key nuclear export protein overexpressed in tumors, correlating with poor prognosis.
- Selective Inhibitors of Nuclear Export (SINE) compounds inhibit XPO1, showing anti-cancer potential.
- Selinexor and KPT-8602 are investigational SINE compounds for cancer treatment.
Purpose of the Study:
- To develop and validate an assay measuring XPO1 occupancy in cancer cells.
- To correlate XPO1 occupancy with drug sensitivity and patient response.
- To confirm the recommended phase 2 dose (RP2D) for selinexor.
Main Methods:
- Developed a fluorescence cross-correlation spectroscopy (FCCS) assay to measure XPO1 occupancy.
- Compared XPO1 occupancy and cytotoxicity in cell lines treated with selinexor or KPT-8602.
- Conducted in vivo mouse studies to assess XPO1 occupancy in tumors.
Main Results:
- XPO1 occupancy reached saturation with both SINE compounds, irrespective of drug sensitivity.
- Higher XPO1 protein levels correlated with reduced sensitivity to SINE compound cytotoxicity.
- In vivo studies demonstrated dose-dependent XPO1 occupancy in tumors, achieving >90% saturation at 10 mg/kg.
- Optimal dosing (10-15 mg/kg in mice) maintained XPO1 occupancy for up to 48 hours.
Conclusions:
- The FCCS assay effectively measures XPO1 occupancy in cancer cells and tumors.
- XPO1 occupancy is a reliable biomarker for SINE compound efficacy.
- Findings support the selinexor RP2D of 60 mg for sustained target engagement.
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