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Phase 0 Trial of AZD1775 in First-Recurrence Glioblastoma Patients
Nader Sanai1, Jing Li2, Julie Boerner2
1Ivy Brain Tumor Center, Barrow Neurological Institute, Phoenix, Arizona. nader.sanai@bnaneuro.net.
Abstract:
Purpose: AZD1775 is a first-in-class Wee1 inhibitor with dual function as a DNA damage sensitizer and cytotoxic agent. A phase I study of AZD1775 for solid tumors suggested activity against brain tumors, but a preclinical study indicated minimal blood-brain barrier penetration in mice. To resolve this controversy, we examined the pharmacokinetics and pharmacodynamics of AZD1775 in patients with first-recurrence, glioblastoma.Patients and Methods: Twenty adult patients received a single dose of AZD1775 prior to tumor resection and enrolled in either a dose-escalation arm or a time-escalation arm. Sparse pharmacokinetic blood samples were collected, and contrast-enhancing tumor samples were collected intraoperatively. AZD1775 total and unbound concentrations were determined by a validated LC/MS-MS method. Population pharmacokinetic analysis was performed to characterize AZD1775 plasma pharmacokinetic profiles. Pharmacodynamic endpoints were compared to matched archival tissue.Results: The AZD1775 plasma concentration-time profile following a single oral dose in patients with glioblastoma was well-described by a one-compartment model. Glomerular filtration rate was identified as a significant covariate on AZD1775 apparent clearance. AZD1775 showed good brain tumor penetration, with a median unbound tumor-to-plasma concentration ratio of 3.2, and achieved potential pharmacologically active tumor concentrations. Wee1 pathway suppression was inferred by abrogation of G2 arrest, intensified double-strand DNA breakage, and programmed cell death. No drug-related adverse events were associated with this study.Conclusions: In contrast to recent preclinical data, our phase 0 study of AZD 1775 in recurrent glioblastoma indicates good human brain tumor penetration, provides the first evidence of clinical biological activity in human glioblastoma, and confirms the utility of phase 0 trials as part of an accelerated paradigm for drug development in patients with glioma. Clin Cancer Res; 24(16); 3820-8. ©2018 AACRSee related commentary by Vogelbaum, p. 3790.
Insights
AZD1775, a Wee1 inhibitor, effectively penetrates human glioblastoma tumors, unlike preclinical findings. This study provides the first clinical evidence of its biological activity in brain tumors.
Area of Science:
- Oncology
- Pharmacology
- Neuro-oncology
Background:
- AZD1775 is a Wee1 inhibitor with potential in solid tumors.
- Preclinical data suggested limited blood-brain barrier penetration, conflicting with earlier phase I findings.
- Glioblastoma is an aggressive brain tumor with limited treatment options.
Purpose of the Study:
- To evaluate the pharmacokinetics and pharmacodynamics of AZD1775 in patients with recurrent glioblastoma.
- To resolve conflicting data regarding AZD1775's brain tumor penetration.
- To assess the drug's biological activity within human brain tumors.
Main Methods:
- Phase 0 study involving 20 adult patients with first-recurrence glioblastoma.
- Patients received a single dose of AZD1775 before tumor resection.
- Pharmacokinetic analysis of plasma and tumor samples; pharmacodynamic assessment of Wee1 pathway markers.
Main Results:
- AZD1775 demonstrated good penetration into human glioblastoma tumors (median unbound tumor-to-plasma ratio of 3.2).
- Pharmacologically active concentrations were achieved, leading to Wee1 pathway suppression, G2 arrest abrogation, increased DNA damage, and cell death.
- No drug-related adverse events were reported.
Conclusions:
- Contrary to preclinical data, AZD1775 shows significant brain tumor penetration in humans.
- This study provides the first clinical evidence of AZD1775's biological activity in human glioblastoma.
- Phase 0 trials are valuable for accelerated drug development in glioma patients.
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