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Updated: Jul 14, 2026

Ultra-Fast Amplicon-Based Next-Generation Sequencing in Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
Feasibility and efficacy of molecular analysis-directed individualized therapy in advanced non-small-cell lung cancer
George Simon1, Anupama Sharma, Xueli Li
1Program and Division of Thoracic Oncology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL 33612-9497, USA.
Purpose:
The treatment of patients with advanced non-small-cell lung cancer (NSCLC) is based on clinical trials experience. Molecular characteristics that impact metabolism and efficacy of chemotherapeutic agents are not used for decision making. Ribonucleotide reductase subunit 1 (RRM1) is crucial for nucleotide metabolism, and it is the dominant molecular determinant of gemcitabine efficacy. Excision repair cross-complementing group 1 gene (ERCC1), a component of the nucleotide excision repair complex, is important for platinum-induced DNA adduct repair. We hypothesized that selection of double-agent chemotherapy based on tumoral RRM1 and ERCC1 expression would be feasible and beneficial for patients with advanced NSCLC.
Patients And Methods:
We conducted a prospective phase II clinical trial in patients with advanced NSCLC. Patients were required to have a dedicated tumor biopsy for determination of RRM1 and ERCC1 gene expression by real-time quantitative reverse transcriptase polymerase chain reaction. Double-agent chemotherapy consisting of carboplatin, gemcitabine, docetaxel, and vinorelbine was selected based on gene expression. Disease response and patient survival were monitored.
Results:
Eighty-five patients were registered, 75 had the required biopsy without significant complications, 60 fulfilled all eligibility criteria, and gene expression analysis was not feasible in five patients. RRM1 expression ranged from 0 to 1,637, ERCC1 expression ranged from 1 to 8,103, and their expression was correlated (Spearman's rho = 0.46; P < .01). Disease response was 44%. Overall survival was 59% and progression-free survival was 14% at 12 months, with a median of 13.3 and 6.6 months, respectively.
Conclusion:
Therapeutic decision making based on RRM1 and ERCC1 gene expression for patients with advanced NSCLC is feasible and promising for improvement in patient outcome
Insights
Selecting chemotherapy for advanced non-small-cell lung cancer (NSCLC) based on tumor RRM1 and ERCC1 gene expression is feasible. This approach shows promise for improving patient outcomes in advanced NSCLC.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Advanced non-small-cell lung cancer (NSCLC) treatment relies on clinical trials, not molecular markers.
- Tumoral Ribonucleotide reductase subunit 1 (RRM1) impacts gemcitabine efficacy.
- Tumoral Excision repair cross-complementing group 1 (ERCC1) impacts platinum efficacy.
Purpose of the Study:
- To assess the feasibility and benefit of selecting chemotherapy for advanced NSCLC based on tumoral RRM1 and ERCC1 gene expression.
- To hypothesize that this personalized approach would improve patient outcomes.
Main Methods:
- Prospective phase II clinical trial in advanced NSCLC patients.
- Tumor biopsy for RRM1 and ERCC1 gene expression analysis via real-time quantitative reverse transcriptase polymerase chain reaction.
- Chemotherapy selection (carboplatin, gemcitabine, docetaxel, vinorelbine) based on gene expression levels.
Main Results:
- Gene expression analysis was feasible in 60 of 85 registered patients.
- RRM1 and ERCC1 expression showed significant correlation (Spearman's rho = 0.46; P < .01).
- Observed 44% disease response rate, 59% overall survival, and 14% 12-month progression-free survival.
Conclusions:
- Therapeutic decision-making guided by RRM1 and ERCC1 gene expression is feasible in advanced NSCLC.
- This personalized approach demonstrates promise for enhancing patient outcomes.
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