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TP53 Alterations Correlate with Response to VEGF/VEGFR Inhibitors: Implications for Targeted Therapeutics
Jennifer J Wheler1, Filip Janku1, Aung Naing1
1Department of Investigational Cancer Therapeutics, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Abstract:
TP53 tumor-suppressor gene mutations are among the most frequent abnormalities in cancer, affecting approximately 40% of patients. Yet, there is no accepted way to target these alterations in the clinic. At the same time, antagonists of VEGFR or its ligand are best-selling oncology drugs, with multiple, expensive compounds approved. Although only a subset of patients benefit from these antiangiogenesis agents, no relevant biomarker has been identified. Interestingly, TP53 mutations upregulate VEGF-A and VEGFR2. We prospectively enrolled 500 patients, to be interrogated by comprehensive genomic profiling (CGP) (next-generation sequencing, 236 genes), and to be matched, whenever possible, with targeted agents. Herein, we analyze outcomes based on VEGF/VEGFR inhibitor treatment and presence of TP53 mutations. Of the 500 patients, 188 (37.6%; with ≥1 alteration) were treated; 106 (56% of 188) had tumors that harbored TP53 mutations. VEGF/VEGFR inhibitor therapy was independently associated with improvement in all outcome parameters [rate of stable disease (SD) ≥6 months/partial and complete remission (PR/CR); (31% versus 7%; TP53-mutant patients (who received no other molecular-matched agents) treated with versus without VEGF/VEGFR inhibitors), time-to-treatment failure, and overall survival (multivariate analysis: all P ≤ 0.01)] for the patients harboring TP53-mutant cancers, but improvement was not seen in any of these parameters for patients with TP53 wild-type neoplasms. We conclude that TP53 mutations predict sensitivity to VEGF/VEGFR inhibitors in the clinic. TP53 alterations may therefore be a ready biomarker for treatment with antiangiogenesis agents, a finding of seminal importance across the cancer field. Mol Cancer Ther; 15(10); 2475-85. ©2016 AACR.
Insights
TP53 mutations predict cancer patient response to VEGF/VEGFR inhibitors. This finding identifies TP53 as a biomarker for antiangiogenesis therapy, improving treatment outcomes for patients with TP53-mutant tumors.
Area of Science:
- Oncology
- Cancer Genomics
- Molecular Therapeutics
Background:
- TP53 tumor-suppressor gene mutations are frequent in cancer (approx. 40%) but lack targeted therapies.
- VEGF/VEGFR inhibitors are approved oncology drugs, yet patient benefit is limited by the absence of predictive biomarkers.
- TP53 mutations are known to upregulate VEGF-A and VEGFR2, suggesting a potential link to antiangiogenesis therapy response.
Purpose of the Study:
- To investigate the association between TP53 mutations and clinical outcomes in patients treated with VEGF/VEGFR inhibitors.
- To determine if TP53 alterations can serve as a predictive biomarker for antiangiogenesis therapy efficacy.
Main Methods:
- Prospective enrollment of 500 cancer patients for comprehensive genomic profiling (CGP) using next-generation sequencing (236 genes).
- Matching patients with targeted agents, including VEGF/VEGFR inhibitors, when feasible.
- Analysis of treatment outcomes (stable disease, remission, time-to-treatment failure, overall survival) based on TP53 mutation status and VEGF/VEGFR inhibitor use.
Main Results:
- Of 188 treated patients, 106 had TP53 mutations.
- VEGF/VEGFR inhibitor therapy significantly improved outcomes (stable disease, remission, time-to-treatment failure, overall survival) in TP53-mutant cancers (P ≤ 0.01).
- No significant improvement was observed in TP53 wild-type tumors treated with VEGF/VEGFR inhibitors.
Conclusions:
- TP53 mutations are a strong predictor of sensitivity to VEGF/VEGFR inhibitors in cancer patients.
- TP53 alterations represent a potential clinical biomarker for guiding antiangiogenesis treatment selection.
- This discovery has significant implications for personalized cancer therapy and the broader field of oncology.
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