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Longitudinal Plasma Proteomics-Derived Biomarkers Predict Response to MET Inhibitors for MET-Dysregulated NSCLC
Guang-Ling Jie1,2, Lun-Xi Peng3, Mei-Mei Zheng2
1School of Medicine, South China University of Technology, Guangzhou 510006, China.
Abstract:
MET inhibitors have shown promising efficacy for MET-dysregulated non-small cell lung cancer (NSCLC). However, quite a few patients cannot benefit from it due to the lack of powerful biomarkers. This study aims to explore the potential role of plasma proteomics-derived biomarkers for patients treated with MET inhibitors using mass spectrometry. We analyzed the plasma proteomics from patients with MET dysregulation (including MET amplification and MET overexpression) treated with MET inhibitors. Thirty-three MET-dysregulated NSCLC patients with longitudinal 89 plasma samples were included. We classified patients into the PD group and non-PD group based on clinical response. The baseline proteomic profiles of patients in the PD group were distinct from those in the non-PD group. Through protein screening, we found that a four-protein signature (MYH9, GNB1, ALOX12B, HSD17B4) could predict the efficacy of patients treated with MET inhibitors, with an area under the curve (AUC) of 0.93, better than conventional fluorescence in situ hybridization (FISH) or immunohistochemistry (IHC) tests. In addition, combining the four-protein signature with FISH or IHC test could also reach higher predictive performance. Further, the combined signature could predict progression-free survival for MET-dysregulated NSCLC (p < 0.001). We also validated the performance of the four-protein signature in another cohort of plasma using an enzyme-linked immunosorbent assay. In conclusion, the four plasma protein signature (MYH9, GNB1, ALOX12B, and HSD17B4 proteins) might play a substitutable or complementary role to conventional MET FISH or IHC tests. This exploration will help select patients who may benefit from MET inhibitors.
Insights
A novel four-protein signature in plasma shows promise for predicting MET inhibitor efficacy in non-small cell lung cancer (NSCLC). This biomarker may improve patient selection for MET-targeted therapies.
Area of Science:
- Oncology
- Proteomics
- Biomarker Discovery
Background:
- MET inhibitors offer efficacy in MET-dysregulated non-small cell lung cancer (NSCLC).
- Lack of predictive biomarkers limits patient benefit from MET-targeted therapies.
- Plasma proteomics presents an opportunity for novel biomarker identification.
Purpose of the Study:
- To identify plasma proteomics-derived biomarkers for predicting MET inhibitor efficacy in NSCLC patients.
- To evaluate the predictive performance of identified biomarkers compared to conventional methods.
Main Methods:
- Plasma proteomics analysis using mass spectrometry on samples from MET-dysregulated NSCLC patients treated with MET inhibitors.
- Classification of patients into progressive disease (PD) and non-PD groups based on clinical response.
- Development and validation of a four-protein signature (MYH9, GNB1, ALOX12B, HSD17B4) using proteomic data and ELISA.
Main Results:
- Baseline proteomic profiles differed significantly between PD and non-PD groups.
- A four-protein signature demonstrated high predictive accuracy (AUC=0.93) for MET inhibitor efficacy, outperforming FISH and IHC.
- The signature also predicted progression-free survival and showed validation in an independent cohort.
Conclusions:
- A four-plasma protein signature (MYH9, GNB1, ALOX12B, HSD17B4) can predict MET inhibitor efficacy in NSCLC.
- This signature may serve as a valuable, potentially complementary or substitutable, biomarker to conventional MET FISH or IHC tests.
- This finding could enhance patient selection for MET-targeted therapies.
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