A Phase 2 interventional study of Talazoparib in Recurrent Glioma, Recurrent Glioblastoma and Poly ADP Ribose Polymerase (PARP) Inhibitor, sponsored by The University of Hong Kong. Completed at 1 site in Hong Kong. Open to participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2025-06-11.
Sponsored by The University of Hong Kong · Phase 2, Interventional, and Treatment
In view of the strong biological rationale of employing PARP inhibition in high grade glioma, the current study purposes testing of talazoparib in a biomarker-enriched group of glioma. Carboplatin will be added to sensitize the tumor to PARP inhibition, and low dose radiation therapy will be applied to increase talazoparib drug penetration through blood-brain barrier. The goal is to estimate the effect size of such combinational treatment approach in recurrent high-grade glioma with DNA damage repair deficiency (dDDR)
Recurrent high grade glioma with dDDR, defined by genomic aberrations associated including IDH mutation, PTEN mutation and "BRCAness" signature as defined by next-generation-sequencing (NGS) based comprehensive genomic profiling, will be enrolled.
Patients will receive treatment in 7-day cycle. D1-4: Oral talazoparib 0.75mg daily; D1: Carboplatin (AUC 1.5). On cycle 1 day 1 low dose whole radiation radiation therapy will be given to increase drug penetration. Primary outcome is 6-month progression free survival (PFS-6) by RANO criteria. The study intended to recruit 33 subjects
1,920 studies on the registry are indexed under Glioblastoma; 450 are open to participants now.
This study's enrollment of 33 is close to the median of 36 across 1,618 interventional studies indexed under Glioblastoma.
Browse Glioblastoma studies →The University of Hong Kong is the lead sponsor of 1,262 studies on the registry; 340 are open to participants now.
Of its 8 completed or terminated interventional studies of FDA-regulated products, 0 (0%) have results posted.
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Tumor with one or more putatively pathogenic mutations or homozygous deletion in the genes associated with DDR or genomic instability, as listed below, will be eligible for the study. Genetic analysis on tumor tissue should be performed with next-generation-sequencing (NGS) based analysis to screen for the following genomic aberrations, which included,
Patients must have passed an interval of 6 months or greater between completion of prior radiotherapy and registration. If patients have not passed an interval of at least 6 months, they may still be eligible if they meet one or more of the following criteria:
Patients must have recovered from the toxic effects of prior therapy, and there must be a minimum time of 28 days prior to registration from the administration of any investigational agent or prior cytotoxic therapy with the following exceptions:
Normal bone marrow and organ function as defined below:
Exclusion Criteria:
Severe, active co-morbidity, defined as follows:
Single fraction, low dose (2Gy) whole brain radiation therapy, followed by combination talazoparib and carboplatin
Drug: Talazoparib
low dose whole brain radiation, followed by combination talazoparib and carboplatin
Also known as: Carboplatin, whole brain irradiation
Progression free survival in 6 months
Free from disease progression based on RANO criteria
Time frame: 6 month
Overall survival
from date of study enrollment to the date of death from any cause
Time frame: 1 year
Objective response rate
The percentage of patients with radiologically complete or partial response as determined by the investigator according to RANO criteria
Time frame: 1 year
Duration of response
The time interval between the time patient develops radiologically complete or partial response to disease progression according to RANO criteria
Time frame: 1 year
Plan to share: No
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This study is completed, as verified in Dec 2023. You cannot join it, but the record below documents what was studied.
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The University of Hong Kong