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Updated: Mar 27, 2026

Detection of Targetable Alterations in Non-small Cell Lung Cancer using Next-generation Sequencing
Published on: October 10, 2025
On the pharmacogenetics of non-small cell lung cancer treatment
Mariacarmela Santarpia1, Christian Rolfo2, G J Peters3
1a Medical Oncology Unit, Human Pathology Department , University of Messina , Messina , Italy.
Introduction:
Despite many clinical efforts, non-small-cell lung cancer (NSCLC) has a dismal 5-year survival rate of 16%, and high incidence of recurrence. The success of biologically targeted agents, as well as the activity of well-established chemotherapeutic regimens, has been limited by inherited/acquired resistance, and biomarkers to adapt the prescription of anticancer drugs to patients' features are urgently warranted. Areas covered. In oncology, pharmacogenetics should provide the way to select patients who may benefit from a specific therapy that best match the individual and tumor genetic profile, thus allowing maximum activity and minimal toxicity. The present review summarizes the main findings on NSCLC pharmacogenetics, critically reappraising the most important studies on polymorphisms correlated with outcome of pemetrexed and EGFR-inhibitors, and provides perspective on clinical application of genomic tests for treatment decision-making. Expert Opinion. A major challenge in NSCLC is the identification of subgroups of diseases/patients that will truly benefit from specific treatments. Ideally, convenient and minimally invasive tests to decipher biomarkers of chemosensitivity/resistance and toxicity should be developed alongside novel anticancer treatments. Integration with the latest generation of whole-genome analyses and liquid biopsies as well as prospective validation in large cohorts of patients will overcome the limitations of the traditional pharmacogenetic approaches.
Insights
Pharmacogenetics can personalize non-small-cell lung cancer (NSCLC) treatment by identifying patients who will benefit from specific therapies. This approach aims to improve efficacy and reduce toxicity by matching treatments to individual genetic profiles.
Area of Science:
- Oncology
- Pharmacogenetics
- Genomics
Background:
- Non-small-cell lung cancer (NSCLC) has a low 5-year survival rate (16%) and high recurrence rates.
- Treatment resistance to chemotherapy and targeted agents necessitates new strategies.
- Biomarkers are crucial for tailoring anticancer drug prescriptions to individual patient characteristics.
Purpose of the Study:
- To review pharmacogenetic findings in NSCLC.
- To critically evaluate studies on polymorphisms affecting pemetrexed and EGFR-inhibitor outcomes.
- To discuss the clinical application of genomic tests for treatment decisions.
Main Methods:
- Literature review of pharmacogenetic studies in NSCLC.
- Analysis of polymorphisms correlated with treatment outcomes.
- Assessment of current and future clinical applications of genomic data.
Main Results:
- Pharmacogenetics offers a pathway to select patients for therapies matching their genetic profile.
- Specific polymorphisms are correlated with patient outcomes for pemetrexed and EGFR-inhibitors.
- Genomic tests hold promise for guiding NSCLC treatment decisions.
Conclusions:
- Identifying patient subgroups who benefit from specific treatments is a key challenge in NSCLC.
- Development of minimally invasive tests for chemosensitivity, resistance, and toxicity biomarkers is needed.
- Integrating advanced genomic analyses and liquid biopsies with prospective validation is essential for advancing pharmacogenetics in NSCLC.
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