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Published on: April 11, 2016
Review of precision cancer medicine: Evolution of the treatment paradigm
Apostolia M Tsimberidou1, Elena Fountzilas2, Mina Nikanjam3
1The University of Texas MD Anderson Cancer Center, Department of Investigational Cancer Therapeutics, Houston, TX.
Abstract:
In recent years, biotechnological breakthroughs have led to identification of complex and unique biologic features associated with carcinogenesis. Tumor and cell-free DNA profiling, immune markers, and proteomic and RNA analyses are used to identify these characteristics for optimization of anticancer therapy in individual patients. Consequently, clinical trials have evolved, shifting from tumor type-centered to gene-directed, histology-agnostic, with innovative adaptive design tailored to biomarker profiling with the goal to improve treatment outcomes. A plethora of precision medicine trials have been conducted. The majority of these trials demonstrated that matched therapy is associated with superior outcomes compared to non-matched therapy across tumor types and in specific cancers. To improve the implementation of precision medicine, this approach should be used early in the course of the disease, and patients should have complete tumor profiling and access to effective matched therapy. To overcome the complexity of tumor biology, clinical trials with combinations of gene-targeted therapy with immune-targeted approaches (e.g., checkpoint blockade, personalized vaccines and/or chimeric antigen receptor T-cells), hormonal therapy, chemotherapy and/or novel agents should be considered. These studies should target dynamic changes in tumor biologic abnormalities, eliminating minimal residual disease, and eradicating significant subclones that confer resistance to treatment. Mining and expansion of real-world data, facilitated by the use of advanced computer data processing capabilities, may contribute to validation of information to predict new applications for medicines. In this review, we summarize the clinical trials and discuss challenges and opportunities to accelerate the implementation of precision oncology.
Insights
Precision medicine uses unique biologic features to tailor cancer therapy, showing improved outcomes with matched treatments. Early implementation and comprehensive profiling are key to advancing precision oncology.
Area of Science:
- Oncology
- Biotechnology
- Genomics
Background:
- Biotechnological advances have identified unique biologic features driving carcinogenesis.
- Tumor profiling (DNA, immune markers, proteomics, RNA) optimizes individualized anticancer therapy.
- Clinical trials have shifted to gene-directed, histology-agnostic designs based on biomarker profiling.
Purpose of the Study:
- To review precision oncology clinical trials and their outcomes.
- To discuss challenges and opportunities in implementing precision medicine.
- To highlight the importance of early and comprehensive tumor profiling.
Main Methods:
- Analysis of clinical trial data in precision oncology.
- Review of gene-directed, histology-agnostic trial designs.
- Exploration of combination therapies targeting tumor biology.
Main Results:
- Matched therapy demonstrates superior outcomes compared to non-matched therapy across various cancers.
- Precision medicine approaches, when used early, improve treatment efficacy.
- Combination therapies show promise in overcoming tumor complexity and resistance.
Conclusions:
- Early and comprehensive tumor profiling is crucial for effective precision medicine implementation.
- Combination therapies targeting dynamic tumor changes are essential for improved patient outcomes.
- Real-world data analysis can accelerate the validation and application of precision oncology strategies.
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