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Pharmacogenetics of anticancer drug sensitivity in pancreatic cancer
Elisa Giovannetti1, Valentina Mey, Sara Nannizzi
1Division of Pharmacology and Chemotherapy, Department of Internal Medicine, University of Pisa, 55, Via Roma, 56126 Pisa, Italy.
Abstract:
Chemotherapy has produced unsatisfactory results in pancreas cancer and novel approaches, including treatment tailoring by pharmacogenetic analysis and new molecular-targeted drugs, are required. The scarcity of effective therapies may reflect the lack of knowledge about the influence of tumor-related molecular abnormalities on responsiveness to drugs. Advances in the understanding of pancreas cancer biology have been made over the past decade, including the discovery of critical mutations in oncogenes (i.e., K-Ras) as well as the loss of tumor suppressor genes, such as TP53 and p16(INK4). Other studies showed the dysregulation of the expression of proteins involved in the control of cell cycle, proliferation, apoptosis, and invasiveness, such as Bcl-2, Akt, mdm2, and epidermal growth factor receptor. These characteristics might contribute to the aggressive behavior of pancreatic cancer and influence response to treatment. Indeed, the inactivation of p53 may explain the relative resistance to 5-fluorouracil, whereas Bcl-2 overexpression is associated with reduced sensitivity to gemcitabine. However, the future challenge of pancreas cancer chemotherapy relies on the identification of molecular markers that help in the selection of drugs best suited to the individual patient. Recent pharmacogenetic studies focused on genes encoding proteins directly involved in drug activity, showing the role of thymidylate synthase and human equilibrative nucleoside transporter-1 as prognostic factor in 5-fluorouracil- and gemcitabine-treated patients, respectively. Finally, inhibitors of signal transduction and angiogenesis are under extensive investigation, and several prospective trials have been devoted to this area. Pharmacogenetics is likely to play a central role in the personalization of treatment, to stratify patients based on their likelihood of response to both standard agents (i.e., gemcitabine/nucleoside transporters) and targeted treatments (i.e., epidermal growth factor receptor gene mutations and/or amplification and tyrosine kinase inhibitors), Thus, molecular analysis should be implemented in the optimal management of the patient affected by pancreatic adenocarcinoma.
Insights
Pancreas cancer treatment needs improvement. Pharmacogenetics can personalize chemotherapy by matching drugs to a patient's specific tumor molecular profile for better outcomes.
Area of Science:
- Oncology
- Pharmacogenetics
- Molecular Biology
Background:
- Pancreas cancer chemotherapy yields unsatisfactory results, necessitating novel therapeutic strategies.
- Tumor-specific molecular abnormalities significantly influence drug responsiveness, yet this knowledge is limited.
- Key molecular alterations in pancreas cancer include oncogene mutations (e.g., K-Ras) and tumor suppressor gene loss (e.g., TP53, p16INK4).
Purpose of the Study:
- To explore the role of tumor-related molecular abnormalities in pancreas cancer drug response.
- To highlight the potential of pharmacogenetics in tailoring chemotherapy for individual patients.
- To identify molecular markers for optimizing pancreas cancer treatment strategies.
Main Methods:
- Review of recent advances in understanding pancreas cancer biology and molecular alterations.
- Analysis of pharmacogenetic studies focusing on genes involved in drug metabolism and activity.
- Investigation of signal transduction and angiogenesis inhibitors in clinical trials.
Main Results:
- Specific molecular changes, like p53 inactivation and Bcl-2 overexpression, correlate with resistance to 5-fluorouracil and gemcitabine, respectively.
- Thymidylate synthase and human equilibrative nucleoside transporter-1 are identified as prognostic factors for 5-fluorouracil and gemcitabine efficacy.
- Emerging targeted therapies, including signal transduction and angiogenesis inhibitors, are under active investigation.
Conclusions:
- Pharmacogenetics is crucial for personalizing pancreas cancer treatment by stratifying patients based on predicted response to standard and targeted agents.
- Molecular analysis, including gene mutations (e.g., EGFR) and transporter activity, should be integrated into the management of pancreatic adenocarcinoma.
- Personalized treatment approaches guided by molecular profiling promise to improve therapeutic outcomes in pancreas cancer.
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Pharmacogenetics and Pharmacogenomics: Overview
Pharmacogenetics of Drug Metabolism: Overview
Principles of Pharmacogenetics: Types of Genetic Variants
