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Updated: Aug 31, 2025

Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
Tumor mutational burden and efficacy of chemotherapy in lung cancer
Juan Song1,2,3, Yu Yan1,2, Cuicui Chen1,2
1Department of Pulmonary and Critical Care Medicine, Zhongshan Hospital, Fudan University, Shanghai, 200032, China.
Purpose:
TMB is one of the potent biomarkers of response to immune checkpoint blockade. The association between TMB and efficacy of chemotherapy in advanced lung cancer has not been comprehensively explored.
Methods:
Ninety lung cancer patients receiving first-line chemotherapy with large panel next-generation sequencing data of pre-treatment tumor tissue were identified. The effect of TMB on PFS of chemotherapy were evaluated in univariate and multivariate analyses.
Results:
The median TMB level of lung cancer patients enrolled in this study was 9.4 mutations/Mb, with TMB levels in smokers significantly higher than those in non-smokers. All patients were divided into high TMB and low TMB groups with the cutoff of the median TMB. The patients with low TMB had longer PFS of first-line chemotherapy (median PFS 9.77 vs 6.33 months, HR = 0.523, 95% CI 0.32-0.852, log-rank P = 0.009). Subgroup analysis showed that PFS of chemotherapy favored low TMB than high TMB among subgroups of male, age < 60, NSCLC, adenocarcinoma, stage IV, ECOG PS 0, driver mutation positive, TP53 wild type and patients not receiving bevacizumab. In multivariate analysis, PFS of chemotherapy remained significantly longer in low TMB group (HR = 0.554, p = 0.036). In those patients received immunotherapy upon unsatisfactory chemotherapy, PFS of immunotherapy was much longer in high TMB group (median PFS 32.88 vs 6.62 months, HR = 0.2426, 95% CI 0.06-0.977, log-rank P = 0.04).
Conclusions:
TMB level of tumor tissue is a potent biomarker for efficacy of chemotherapy and immunotherapy in lung cancer. It may provide some clues for the decision of treatment strategy.
Insights
Tumor mutational burden (TMB) predicts chemotherapy response in lung cancer, with lower TMB linked to longer progression-free survival (PFS). High TMB predicts better immunotherapy outcomes after chemotherapy failure.
Area of Science:
- Oncology
- Genomics
- Biomarkers
Background:
- Tumor mutational burden (TMB) is recognized as a biomarker for immune checkpoint blockade efficacy.
- The relationship between TMB and chemotherapy effectiveness in advanced lung cancer remains underexplored.
Purpose of the Study:
- To investigate the association between TMB and the efficacy of first-line chemotherapy in advanced lung cancer patients.
- To evaluate TMB as a predictive biomarker for both chemotherapy and subsequent immunotherapy outcomes.
Main Methods:
- Analysis of pre-treatment tumor tissue from 90 lung cancer patients undergoing first-line chemotherapy.
- Large panel next-generation sequencing data used to determine TMB levels.
- Progression-free survival (PFS) evaluated using univariate and multivariate analyses in relation to TMB.
Main Results:
- Median TMB was 9.4 mutations/Mb; smokers had significantly higher TMB than non-smokers.
- Low TMB patients demonstrated significantly longer PFS with first-line chemotherapy (9.77 vs. 6.33 months).
- In patients receiving immunotherapy after chemotherapy failure, high TMB correlated with substantially longer PFS (32.88 vs. 6.62 months).
Conclusions:
- Tumor mutational burden is a significant biomarker for predicting chemotherapy and immunotherapy efficacy in lung cancer.
- TMB assessment may aid in optimizing treatment strategies for lung cancer patients.
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