DNA methylation features and diagnostic model establishment of MET amplification in lung adenocarcinoma
- Journal
- Therapeutic advances in medical oncology (Q1)
- Published
- 26 August 2026
- Study design
- Prospective / inception cohort
- Evidence level
- Level 2, Moderate (CEBM 2b)
- Authors
- Shuting Zhan, Jianfu Li, Jinsheng Tao, Hao Yang, Bo Cheng, Caichen Li, et al.
- PMID
- 42662181
- DOI
- 10.1177/17588359261481795
Why clinicians should know about it
- Picked for Pathology and Forensic Medicine (paper of the day, 29 August 2026): DNA methylation model for MET amplification detection
Abstract
BACKGROUND: Accurate detection of MET amplification is essential for guiding targeted therapy in lung adenocarcinoma (LUAD). Conventional methods such as FISH are limited by tissue availability, and ctDNA-based liquid biopsy shows limited sensitivity for amplification detection. DNA methylation profiling offers a promising alternative. OBJECTIVES: To identify MET amplification-associated DNA methylation features and develop a diagnostic model for MET amplification detection in LUAD. DESIGN: A retrospective cohort study. METHODS: Targeted DNA methylation sequencing (Illumina TruSeq Methyl Capture EPIC) was performed on 38 LUAD tissue samples at our institution. MET amplification was defined based on NGS-derived copy number (CN) using two thresholds: CN3 and CN5. DNA methylation data from 443 LUAD cases in TCGA were integrated with the institutional cohort to identify high-confidence differentially methylated positions (DMPs). Random Forest models were constructed and validated internally and in the TCGA cohort. Subgroup analyses were performed by EGFR mutation status and sample type. GO and KEGG analyses were conducted for functional relevance. RESULTS: A total of 20,661 (CN3) and 13,303 (CN5) DMPs were identified, of which 241 and 107, respectively, overlapped with TCGA-derived DMPs. The CN3-based model achieved AUCs of 0.92 (95% CI: 0.84-1.00) in the test cohort and 0.69 (95% CI: 0.64-0.74) in the TCGA cohort, whereas the CN5-based model yielded AUCs of 0.93 (95% CI: 0.81-1.00) and 0.77 (95% CI: 0.70-0.84), respectively. A simplified CN5-based model using the top five DMPs maintained comparable performance (AUC 0.89, 95% CI: 0.72-1.00). Diagnostic performance remained stable in EGFR-mutant patients and in biopsy specimens. Functional enrichment analyses indicated that DMPs were significantly involved in kinase regulation and MET downstream signaling pathways, including the PI3K-Akt signaling pathway. A hypermethylated MET amplification-associated DMP at Chr7:116367600 was consistently observed under both CN thresholds in the institutional cohort. CONCLUSION: This study identifies MET amplification-associated DNA methylation features in LUAD. The CN5-based diagnostic model demonstrated promising accuracy. These findings suggest a novel approach for predicting NGS-defined MET amplification and warrant further validation in larger cohorts and prospective liquid biopsy studies.
Abstract as published, via PubMed.
For healthcare professionals. The summary is generated by AI from the published abstract, and the evidence level is assigned automatically from the study design on the Oxford CEBM hierarchy. Neither is medical advice. Read the full paper before changing practice.