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Individualised cancer therapeutics: dream or reality?
Neil Senzer1, Yuqiao Shen, Colin Hill
1Mary Crowley Medical Research Center, Collins Building, Suite 302, Dallas, TX 75246, USA.
Abstract:
Traditional measures for treating metastatic cancer involve identification of the originating organ from which the neoplasm arose and empirical treatment with cytotoxic chemotherapy. Arguably, with the exception of haematological malignancies, demonstration of efficacy in solid tumours has been limited. Over the past half-decade, theoretical and technological advances have resulted in greater application of molecular science to drug design, which has enabled development of new 'targeted' therapeutics. However, generic chemotherapy paradigms have not changed. Establishment of the optimal population for 'targeted' therapeutics based on molecular diagnostics (i.e. genomic and proteomic characterisation) to identify sensitive tumour-host ecosystems in individual patients at the 'bedside', is not being done as part of routine oncology management. This review focuses on the concept of designing individualised therapeutics based on genomic and proteomic profile of malignant tissue. Genetic and epigenetic perturbations in signal pathways drive cancer growth, survival, invasion and metastatic spread. The burgeoning evidence which supports the concept that each patient's cancer has a unique complement of pathogenic genetic and molecular derangements is reviewed. Such evidence supports the strategy of individualised selection of a therapeutic complex from a menu of targeting options that best complements the specific oncomolecular profile of the 'tumour-host' system.
Insights
Individualized cancer treatment using genomic and proteomic profiling offers a targeted approach for solid tumors. This strategy aims to match specific therapies to each patient's unique molecular profile for better outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
- Proteomics
Background:
- Traditional cytotoxic chemotherapy shows limited efficacy in solid tumors.
- Advances in molecular science have led to targeted therapeutics.
- Current oncology management rarely uses molecular diagnostics for treatment selection.
Purpose of the Study:
- To review the concept of individualizing cancer therapeutics based on genomic and proteomic profiles.
- To highlight the potential of matching targeted therapies to specific oncomolecular profiles.
- To advocate for the integration of molecular diagnostics in routine cancer care.
Main Methods:
- Review of current literature on cancer genomics and proteomics.
- Analysis of theoretical and technological advances in molecular science and drug design.
- Discussion of evidence supporting unique molecular derangements in individual cancers.
Main Results:
- Genetic and epigenetic alterations in signaling pathways drive cancer progression.
- Each patient's cancer possesses a unique set of pathogenic molecular derangements.
- Molecular diagnostics can identify sensitive tumor-host ecosystems.
Conclusions:
- Individualized therapeutics based on molecular profiling represent a promising strategy for solid tumors.
- Matching therapies to the specific oncomolecular profile of a patient's tumor-host system is crucial.
- Routine integration of molecular diagnostics is needed for effective personalized oncology.
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