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Germline oncopharmacogenetics, a promising field in cancer therapy
Chiara Pesenti1, Milena Gusella, Silvia M Sirchia
1Division of Pathology, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Milan, Italy.
Abstract:
Pharmacogenetics (PGx) is the study of the relationship between inter-individual genetic variation and drug responses. Germline variants of genes involved in drug metabolism, drug transport, and drug targets can affect individual response to medications. Cancer therapies are characterized by an intrinsically high toxicity; therefore, the application of pharmacogenetics to cancer patients is a particularly promising method for avoiding the use of inefficacious drugs and preventing the associated adverse effects. However, despite continuing efforts in this field, very few labels include information about germline genetic variants associated with drug responses. DPYD, TPMT, UGT1A1, G6PD, CYP2D6, and HLA are the sole loci for which the European Medicines Agency (EMA) and the US Food and Drug Administration (FDA) report specific information. This review highlights the germline PGx variants that have been approved to date for anticancer treatments, and also provides some insights about other germline variants with potential clinical applications. The continuous and rapid evolution of next-generation sequencing applications, together with the development of computational methods, should help to refine the implementation of personalized medicine. One day, clinicians may be able to prescribe the best treatment and the correct drug dosage based on each patient's genotype. This approach would improve treatment efficacy, reduce toxicity, and predict non-responders, thereby decreasing chemotherapy-associated morbidity and improving health benefits.
Insights
Pharmacogenetics (PGx) uses genetic variations to predict drug responses, especially in cancer therapy. This review covers approved PGx variants for cancer treatments and future personalized medicine applications.
Area of Science:
- Genetics
- Pharmacology
- Oncology
Background:
- Pharmacogenetics (PGx) investigates how genetic differences influence individual drug responses.
- Cancer therapies have high toxicity, making PGx crucial for optimizing treatment and minimizing adverse effects.
- Currently, limited PGx information is integrated into drug labels, despite its potential.
Purpose of the Study:
- To review approved germline pharmacogenetic variants for anticancer treatments.
- To explore other germline variants with potential clinical utility in oncology.
- To discuss the role of advanced sequencing and computational methods in personalized cancer medicine.
Main Methods:
- Literature review of pharmacogenetic variants and their impact on cancer drug response.
- Analysis of approved pharmacogenetic information by regulatory agencies (EMA, FDA).
- Discussion of emerging genetic markers and technological advancements.
Main Results:
- Only a few genes (DPYD, TPMT, UGT1A1, G6PD, CYP2D6, HLA) have associated germline PGx information reported by EMA and FDA for cancer drugs.
- Several other germline variants show potential for clinical application in cancer therapy.
- Next-generation sequencing and computational tools are advancing personalized medicine.
Conclusions:
- Pharmacogenetics holds significant promise for improving cancer treatment efficacy and reducing toxicity.
- Wider implementation of PGx testing can lead to tailored drug selection and dosage.
- Advancements in genetic technologies will facilitate the realization of genotype-guided cancer therapy.
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