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Published on: April 11, 2016
A Comprehensive Oncological Biomarker Framework Guiding Precision Medicine
Reza Bayat Mokhtari1,2,3, Manpreet Sambi3, Faezeh Shekari3
1Department of Pharmacology and Therapeutics, Roswell Park Comprehensive Cancer Center, 265 Elm and Carlton Streets, Buffalo, NY 14263, USA.
Abstract:
Cancer remains a major cause of mortality worldwide, driving ongoing innovation in therapeutic strategies. Immunotherapy has transformed cancer care by leveraging the immune system to target tumors, but its effectiveness is limited by tumor heterogeneity, immune resistance, and unpredictable toxicities. Moreover, the absence of robust biomarkers to predict therapeutic response and manage adverse effects remains a significant challenge. Recent advances in biomarker discovery, including liquid biopsy technologies and gut microbiota profiling, are enhancing the precision of immunotherapy and enabling more personalized cancer management. Here, we present a Comprehensive Oncological Biomarker Framework that integrates genetic and molecular testing, imaging, histopathology, multi-omics, and liquid biopsy to generate a molecular fingerprint for each patient. This holistic approach supports individualized diagnosis, prognosis, treatment selection, and response monitoring. Incorporating emerging biomarkers, such as microbiome signatures, further refines patient stratification, guiding the optimization of therapy. By uniting molecular insights with clinical and social factors, this framework aims to address tumor heterogeneity and immune evasion, ultimately improving patient outcomes through precision oncology.
Insights
A new Comprehensive Oncological Biomarker Framework integrates diverse data for personalized cancer treatment. This approach aims to overcome immunotherapy limitations and improve patient outcomes in precision oncology.
Area of Science:
- Oncology
- Immunotherapy
- Biomarker Discovery
Background:
- Cancer immunotherapy shows promise but faces challenges like tumor heterogeneity and resistance.
- Lack of predictive biomarkers hinders effective treatment selection and toxicity management.
- Liquid biopsy and microbiome profiling are emerging tools for precision cancer care.
Purpose of the Study:
- To introduce a Comprehensive Oncological Biomarker Framework (COBF).
- To integrate multi-modal data for personalized cancer management.
- To address limitations in current immunotherapy strategies.
Main Methods:
- Integrating genetic, molecular, imaging, histopathology, multi-omics, and liquid biopsy data.
- Generating a patient-specific molecular fingerprint.
- Incorporating microbiome signatures and clinical/social factors.
Main Results:
- The framework supports individualized diagnosis, prognosis, and treatment selection.
- It enables precise monitoring of therapeutic response.
- Emerging biomarkers refine patient stratification for optimized therapy.
Conclusions:
- The COBF addresses tumor heterogeneity and immune evasion.
- It enhances precision oncology by uniting molecular insights with clinical factors.
- This holistic approach aims to improve patient outcomes in cancer care.
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