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Published on: April 11, 2016
Precision oncology platforms: practical strategies for genomic database utilization in cancer treatment
Antonia A Gazola1, William Lautert-Dutra2, Leticia Frohlich Archangelo3
1School of Medicine, Pontifical Catholic University of Rio Grande do Sul - PUCRS, Av. Ipiranga, 668, Porto Alegre, RS, 90619-900, Brazil.
Abstract:
In recent years, the expansion of molecularly targeted cancer therapies has significantly advanced precision oncology. Parallel developments in next-generation sequencing (NGS) technologies have also improved precision oncology applications, making genomic analysis of tumors more affordable and accessible. Targeted NGS panels now enable the rapid identification of diverse actionable mutations, requiring clinicians to efficiently assess the predictive value of cancer biomarkers for specific treatments. The urgency for timely and accurate decision-making in oncology emphasizes the importance of reliable precision oncology software. Online clinical decision-making tools and associated cancer databases have been designed by consolidating genomic data into standardized, accessible formats. These new platforms are highly integrated and crucial for identifying actionable somatic genomic biomarkers essential for tumor survival, determining corresponding drug targets, and selecting appropriate treatments based on the mutational profile of each patient's tumor. To help oncologists and translational cancer researchers unfamiliar with these tools, we review the utility, accuracy, and comprehensiveness of several commonly used precision medicine software options currently available. Our analysis categorized selected genomic databases based on their primary content, utility, and how well they provide practical guidance for interpreting somatic biomarker data. We identified several comprehensive, mostly open-access platforms that are easy to use for genetic biomarker searches, each with unique features and limitations. Among the precision oncology tools we evaluated, we found MyCancerGenome and OncoKB to be the first choice, offering comprehensive, accurate up-to-date information on the clinical significance of somatic mutations. To illustrate the application of these precision oncology tools in clinical settings, we evaluated three case studies to see how use of the platforms could have influenced treatment planning. Most of the precision oncology software evaluated could be easily streamlined into clinical workflows to provide updated information on approved drugs and clinical trials related the actionable mutations detected. Some platforms were very intuitive and easy to use, while others, often developed in smaller academic settings, were more difficult to navigate and may not be updated consistently. Future enhancements, incorporating artificial intelligence algorithms, are likely to improve integration of the platforms with diverse big data sources, enabling more accurate predictions of potential therapeutic responses.
Insights
Precision oncology software aids cancer treatment decisions by analyzing tumor mutations. MyCancerGenome and OncoKB are top choices for identifying actionable biomarkers and guiding therapy selection.
Area of Science:
- Oncology
- Genomics
- Bioinformatics
Background:
- Molecularly targeted therapies and next-generation sequencing (NGS) have advanced precision oncology.
- Genomic analysis of tumors is now more accessible, enabling rapid identification of actionable mutations.
Purpose of the Study:
- To review the utility, accuracy, and comprehensiveness of precision oncology software.
- To guide oncologists and researchers in selecting appropriate tools for interpreting somatic biomarker data.
Main Methods:
- Evaluated and categorized several online clinical decision-making tools and cancer databases.
- Assessed platforms based on content, utility, and practical guidance for somatic biomarker interpretation.
- Analyzed case studies to illustrate the impact of these tools on treatment planning.
Main Results:
- Identified comprehensive, mostly open-access platforms for genetic biomarker searches.
- MyCancerGenome and OncoKB were identified as top choices for clinical significance of somatic mutations.
- Most evaluated software can be integrated into clinical workflows for updated drug and trial information.
Conclusions:
- Precision oncology software is crucial for timely and accurate cancer treatment decisions.
- User-friendliness and update consistency vary among platforms.
- Future enhancements, including AI, will improve integration and predictive accuracy.
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