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Published on: October 27, 2014
A Genomically Tailored Multiagent Precision Medicine Clinical Trial for Adults with Recurrent Glioblastoma
Jiaying Chen1, Nancy Ann Oberheim Bush1,2, Jennifer A Grabowsky3
1Department of Neurological Surgery, University of California, San Francisco, San Francisco, California.
Purpose:
Existing salvage therapies for recurrent glioblastoma (rGBM) have limited efficacy, with a median survival of approximately 9 months. Given the complex molecular heterogeneity of GBM, single-target approaches have consistently failed as a treatment strategy. We conducted a phase I clinical trial to assess the feasibility, safety, and efficacy of a genomically tailored multiagent regimen in 30 adults with surgically treated rGBM.
Patients And Methods:
Adults with IDH wild-type GBM (n = 29) or grade 4 IDH-mutant astrocytoma (n = 1) were consented and underwent clinically indicated surgery for recurrent disease. Comprehensive genomic profiling was performed on the recurrent tumors, and results for each patient were discussed at an individualized molecular tumor board to determine a personalized treatment regimen combining up to four FDA-approved drugs, including one cytotoxic agent as the backbone.
Results:
A total of 12 drugs were used in 18 combinations-the most common regimen was lomustine, afatinib, and abemaciclib (n = 8). The most common toxicities included cytopenias, rash, and gastrointestinal symptoms, requiring frequent dose reductions. Measured from surgery at trial enrollment, progression-free survival at 6 months was 40%, overall survival (OS) at 9 months was 73%, and median OS was 12.7 months. After trial therapy, genomic profiling performed on subsequent recurrent tumor specimens identified genetic evolution corresponding to putative treatment resistance mechanisms.
Conclusions:
Implementation of individualized treatment regimens in a timely fashion was feasible for patients with surgically resectable rGBM. Overall efficacy was not significantly improved compared with a contemporary patient cohort treated without experimental regimens, with full dosing of most combination therapies limited by toxicities.
Insights
A phase 1 clinical trial explored genomically-tailored multi-agent therapy for recurrent glioblastoma (rGBM). While feasible, the personalized approach did not significantly improve survival outcomes due to toxicity limitations.
Area of Science:
- Neuro-oncology
- Genomics
- Clinical Trials
Background:
- Recurrent glioblastoma (rGBM) presents a significant clinical challenge with limited salvage therapy options.
- Existing treatments for rGBM offer median survival of approximately 9 months.
- The molecular heterogeneity of glioblastoma (GBM) has rendered single-target therapies ineffective.
Purpose of the Study:
- To assess the feasibility, safety, and efficacy of a personalized, multi-agent treatment regimen for surgically-treated recurrent glioblastoma.
- To evaluate a genomically-tailored approach in adult patients with rGBM.
Main Methods:
- A phase 1 clinical trial enrolled 30 adults with recurrent glioblastoma (IDH-wildtype or IDH-mutant).
- Comprehensive genomic profiling of recurrent tumors guided the selection of personalized treatment regimens.
- Regimens combined up to 4 FDA-approved drugs, including a cytotoxic backbone, determined by a molecular tumor board.
Main Results:
- Twelve drugs in 18 combinations were utilized; lomustine, afatinib, and abemaciclib was the most common regimen.
- Common toxicities included cytopenias and rash, necessitating frequent dose reductions.
- Progression-free survival at 6 months was 40%, overall survival at 9 months was 73%, with a median overall survival of 12.7 months.
Conclusions:
- Individualized, genomically-tailored treatment regimens are feasible for surgically resectable rGBM.
- The study did not demonstrate a significant improvement in overall efficacy compared to historical controls.
- Treatment toxicities limited full dosing of combination therapies, impacting potential efficacy.
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