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Future of personalized medicine in oncology: a systems biology approach
Ana Maria Gonzalez-Angulo1, Bryan T J Hennessy, Gordon B Mills
1Department of Breast Medical Oncology, The University of Texas M. D. Anderson Cancer Center, 1515 Holcombe Blvd., Houston, TX 77030-4009, USA. agonzalez@mdanderson.org
Abstract:
The development of cost-effective technologies able to comprehensively assess DNA, RNA, protein, and metabolites in patient tumors has fueled efforts to tailor medical care. Indeed validated molecular tests assessing tumor tissue or patient germline DNA already drive therapeutic decision making. However, many theoretical and regulatory challenges must still be overcome before fully realizing the promise of personalized molecular medicine. The masses of data generated by high-throughput technologies are challenging to manage, visualize, and convert to the knowledge required to improve patient outcomes. Systems biology integrates engineering, physics, and mathematical approaches with biologic and medical insights in an iterative process to visualize the interconnected events within a cell that determine how inputs from the environment and the network rewiring that occurs due to the genomic aberrations acquired by patient tumors determines cellular behavior and patient outcomes. A cross-disciplinary systems biology effort will be necessary to convert the information contained in multidimensional data sets into useful biomarkers that can classify patient tumors by prognosis and response to therapeutic modalities and to identify the drivers of tumor behavior that are optimal targets for therapy. An understanding of the effects of targeted therapeutics on signaling networks and homeostatic regulatory loops will be necessary to prevent inadvertent effects as well as to develop rational combinatorial therapies. Systems biology approaches identifying molecular drivers and biomarkers will lead to the implementation of smaller, shorter, cheaper, and individualized clinical trials that will increase the success rate and hasten the implementation of effective therapies into the clinical armamentarium.
Insights
Systems biology offers a powerful approach to personalize cancer medicine by integrating complex molecular data. This strategy aims to develop better biomarkers and targeted therapies for improved patient outcomes.
Area of Science:
- Computational Biology
- Translational Oncology
- Systems Biology
Background:
- Advanced technologies enable comprehensive molecular profiling (DNA, RNA, protein, metabolites) of patient tumors.
- Molecular tests currently guide therapeutic decisions, but challenges remain in realizing personalized medicine.
- Managing and interpreting large-scale omics data is a significant hurdle.
Purpose of the Study:
- To explore how systems biology can overcome challenges in personalized molecular medicine.
- To convert multidimensional data into biomarkers for tumor classification and treatment response prediction.
- To identify optimal therapeutic targets and develop rational combination therapies.
Main Methods:
- Integrating engineering, physics, and mathematical approaches with biological and medical insights.
- Visualizing interconnected cellular events and network rewiring in tumors.
- Analyzing genomic aberrations and their impact on cellular behavior and patient outcomes.
Main Results:
- Systems biology can identify molecular drivers and biomarkers for prognosis and therapeutic response.
- Understanding drug effects on signaling networks is crucial for preventing adverse effects.
- This approach facilitates the development of rational combinatorial therapies.
Conclusions:
- Cross-disciplinary systems biology efforts are essential for advancing personalized cancer care.
- This approach will enable smaller, faster, cheaper, and individualized clinical trials.
- Systems biology accelerates the implementation of effective therapies into clinical practice.
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