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BIOMARKER:

MET amplification

i
Other names: DFNB97, AUTS9, RCCP2, C-Met, HGFR, HGF Receptor, Met Proto-Oncogene, HGF/SF Receptor, Proto-Oncogene C-Met, Scatter Factor Receptor, Tyrosine-Protein Kinase Met, Hepatocyte Growth Factor Receptor, MET, MET Proto-Oncogene, Receptor Tyrosine Kinase
Entrez ID:
8d
MET amplification in diffuse pleural mesothelioma and response to savolitinib: a case report. (PubMed, Transl Lung Cancer Res)
The disease proved refractory to multiple lines of therapy, including platinum-based chemotherapy, immunotherapy, intrathoracic instillation and a subsequent individualized regimen comprising intraperitoneal cisplatin plus sintilimab for local disease control and potential immunomodulation synergized with oral anlotinib. It illustrates that rare but actionable genomic alterations, such as MET amplification, can be identified through liquid or tissue biopsy and can inform successful targeted treatment strategies, even in a tumor type where such alterations are uncommon. Histological classification combined with molecular profiling remains pivotal for personalized oncology.
Journal • IO biomarker
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MET (MET proto-oncogene, receptor tyrosine kinase) • CDKN2A (Cyclin Dependent Kinase Inhibitor 2A) • BAP1 (BRCA1 Associated Protein 1)
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MET amplification • MET mutation
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cisplatin • Focus V (anlotinib) • Tyvyt (sintilimab) • Orpathys (savolitinib)
9d
Metastatic Odyssey: Decoding the Genomic Journey from Primary Colorectal Cancer to Disseminated Disease. (PubMed, Cancers (Basel))
The clinical future lies in interception: leveraging liquid biopsies for early detection, targeting both tumor-intrinsic vulnerabilities and permissive metastatic niches and adapting therapy dynamically to anticipate resistance. Understanding this genomic odyssey is essential for transforming mCRC into a controllable chronic condition.
Review • Journal • MSi-H Biomarker
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EGFR (Epidermal growth factor receptor) • HER-2 (Human epidermal growth factor receptor 2) • BRAF (B-raf proto-oncogene) • MET (MET proto-oncogene, receptor tyrosine kinase) • MSI (Microsatellite instability) • PTEN (Phosphatase and tensin homolog) • JAK2 (Janus kinase 2) • SMAD4 (SMAD family member 4) • B2M (Beta-2-microglobulin) • JAK1 (Janus Kinase 1) • TGFB1 (Transforming Growth Factor Beta 1)
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EGFR mutation • MSI-H/dMMR • BRAF mutation • HER-2 amplification • MET amplification • RAS mutation • MET mutation
14d
ETV6-NTRK3 as a resistance mechanism to epidermal growth factor receptor (EGFR) tyrosine kinase inhibitors: favorable response after combination of osimertinib and entrectinib: a case report and literature review. (PubMed, Front Pharmacol)
Combination therapy with osimertinib and entrectinib induced regression of pulmonary lesions, but the patient ultimately discontinued all targeted agents due to the development of severe hepatorenal failure and Escherichia coli-associated sepsis. This case highlights the need for additional research into the safety profile of EGFR-TKI/NTRK inhibitor combination regimens in resistant NSCLC.
Journal
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EGFR (Epidermal growth factor receptor) • HER-2 (Human epidermal growth factor receptor 2) • MET (MET proto-oncogene, receptor tyrosine kinase) • NTRK3 (Neurotrophic tyrosine kinase, receptor, type 3) • ETV6 (ETS Variant Transcription Factor 6) • NTRK (Neurotrophic receptor tyrosine kinase)
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EGFR mutation • HER-2 amplification • EGFR exon 19 deletion • MET amplification • MET mutation
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Tagrisso (osimertinib) • Rozlytrek (entrectinib)
18d
Targeting MET in EGFR-mutated NSCLC. (PubMed, J Thorac Oncol)
Finally, we highlight unresolved challenges including the lack of standardized biomarker thresholds, optimal timing of MET inhibition, and rational sequencing of available agents. As the therapeutic landscape continues to evolve, improved biomarker precision and optimization of treatment strategies will be essential to maximize the benefit of MET-targeted therapies in EGFRm NSCLC.
Review • Journal
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EGFR (Epidermal growth factor receptor)
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EGFR mutation • MET amplification • MET overexpression • MET mutation
20d
Synergistic Antitumor Activity of Combination Therapy with a MET TKI Vabametkib and a Third-Generation EGFR TKI Lazertinib in MET-Amplified EGFR-Mutant NSCLC. (PubMed, Cancer Res Treat)
Inhibition of downstream signaling and cell proliferation by vabametkib plus lazertinib were evaluated in osimertinib-resistance NSCLC cell lines (HCC827-AR) and patient-derived organoid (YUO-010) by western blot and Cell Titer-Glo assay. Consistent with the in vitro findings, treatment with vabametkib plus lazertinib produced pronounced suppression of tumor growth in both models through a synergistic mechanism. These findings establish vabametkib plus lazertinib as a promising strategy for MET-amplified NSCLC, currently under evaluation in an ongoing phase II clinical trial (NCT05541822).
Journal
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MET (MET proto-oncogene, receptor tyrosine kinase)
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EGFR mutation • MET amplification • MET mutation
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Tagrisso (osimertinib) • Lazcluze (lazertinib) • vabametkib (ABN401)
21d
Modeling acquired TKI resistance and effective combination therapeutic strategies in murine RET+ lung adenocarcinoma. (PubMed, Cancer Lett)
Oncogenic RET gene rearrangements drive a subset of lung adenocarcinomas (LUAD) and the tyrosine kinase inhibitors (TKIs) selpercatinib and pralsetinib are approved therapeutics. By contrast, upfront treatment with selpercatinib and crizotinib in orthotopic tumors yielded complete elimination of 7 of 9 TR.1 tumors and both deepened and prolonged the duration of response in TR.2 tumors. The findings provide new insight into mechanisms of acquired resistance through bypass signaling and highlight the therapeutic benefit of simultaneous upfront blockade of driver oncogenes and dominant resistance mechanisms in LUAD.
Preclinical • Journal
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HER-2 (Human epidermal growth factor receptor 2) • RET (Ret Proto-Oncogene) • NRG1 (Neuregulin 1) • ERBB4 (erb-b2 receptor tyrosine kinase 4) • NRP1 (Neuropilin 1) • TRIM24 (Tripartite Motif Containing 24) • GAB1 (GRB2 Associated Binding Protein 1)
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MET amplification • RET rearrangement
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Xalkori (crizotinib) • Retevmo (selpercatinib) • Gavreto (pralsetinib)
22d
Telisotuzumab Adizutecan (ABBV-400), a Novel c-Met-Targeting Antibody-Drug Conjugate: First-in-Human Results in Advanced Gastric/Gastroesophageal Junction Cancer. (PubMed, Clin Cancer Res)
Temab-A monotherapy demonstrated antitumor activity and a manageable safety profile in patients with advanced GEA. The findings support further clinical development of Temab-A, particularly in combination with other agents to improve outcomes for patients with 2L+ GEA.
Clinical • P1 data • Journal • First-in-human
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MET (MET proto-oncogene, receptor tyrosine kinase)
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MET amplification • MET expression
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telisotuzumab adizutecan (ABBV-400)
22d
FGFR3-TACC3 fusion as a potential primary resistance mechanism to EGFR-TKI in lung adenocarcinoma harboring co-driven mutations: a case report. (PubMed, Front Oncol)
Pralsetinib was added to osimertinib, resulting in a response lasting 4 months...After one month with alectinib only, osimertinib was added due to the progression, resulting in another response of more than two months. Upon progression with quadruple alterations (EGFR 19del, EGFR C797S, MET amplification, and RET fusions), cabozantinib-gefitinib combination was initiated, leading to rapid deterioration...At the same time, comprehensive genomic testing remains essential for therapeutic decision-making, with ctDNA analysis complementing tissue-based approaches. Notably, the FGFR3-TACC3 fusion may represent a novel resistance mechanism contributing to the limited efficacy of EGFR-TKI.
Journal
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ALK (Anaplastic lymphoma kinase) • MET (MET proto-oncogene, receptor tyrosine kinase) • RET (Ret Proto-Oncogene) • FGFR3 (Fibroblast growth factor receptor 3) • TACC3 (Transforming acidic coiled-coil containing protein 3) • CCDC6 (Coiled-Coil Domain Containing 6) • IL6ST (Interleukin 6 Signal Transducer) • SLC41A3 (Solute Carrier Family 41 Member 3)
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EGFR exon 19 deletion • MET amplification • RET fusion • FGFR3-TACC3 fusion • ALK fusion • ALK mutation • CCDC6-RET fusion
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Tagrisso (osimertinib) • gefitinib • Alecensa (alectinib) • Cabometyx (cabozantinib tablet) • Gavreto (pralsetinib)
25d
Molecular Profiling across 80,000 Patients with Lung Cancer. (PubMed, J Thorac Oncol)
This is the largest NSCLC dataset analyzed for biomarker distribution across histologies, age, sex and genetic ancestry. This dataset confirms sufficient enough biomarker prevalence across many histological subtypes of NSCLC, providing reassurance that all NSCLC cases should be considered for biomarker workup.
Journal • Tumor mutational burden
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EGFR (Epidermal growth factor receptor) • HER-2 (Human epidermal growth factor receptor 2) • KRAS (KRAS proto-oncogene GTPase) • BRAF (B-raf proto-oncogene) • ALK (Anaplastic lymphoma kinase) • TMB (Tumor Mutational Burden) • MET (MET proto-oncogene, receptor tyrosine kinase) • ROS1 (Proto-Oncogene Tyrosine-Protein Kinase ROS)
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KRAS G12C • HER-2 amplification • MET amplification • ALK rearrangement • TMB-L • ROS1 rearrangement • RET rearrangement • KRAS G12
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FoundationOne® CDx
28d
A Study to Evaluate ANS014004 in Subjects With Locally Advanced or Metastatic Solid Tumors (clinicaltrials.gov)
P1, N=40, Active, not recruiting, Avistone Biotechnology Co., Ltd. | Recruiting --> Active, not recruiting | N=264 --> 40
Enrollment closed • Enrollment change • First-in-human
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MET (MET proto-oncogene, receptor tyrosine kinase)
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MET amplification • MET exon 14 mutation • MET overexpression • MET mutation
29d
Fatal Disease Progression Driven by Acquired MET Amplification After EGFR-TKI Therapy in EGFR- and RBM10-Mutant Lung Adenocarcinoma. (PubMed, Cancer Manag Res)
He received afatinib as frontline treatment and showed a partial response; however, the right lung lesion progressed after 14 months of treatment...Because EGFR testing using resected tissue showed only the original mutation, we switched his regimen to pemetrexed and carboplatin...Although an association between MET amplification and rapidly progressive lung cancer has been predicted previously, to the best of our knowledge, this is the first report on the potential contribution of other mutations, such as those in RNA-binding motif 10, during MET-driven rapid progression. Our report highlights the importance of more active utilization of molecular profiling for the emergence of resistance during tyrosine kinase inhibitor use and the early identification of MET amplification and timely initiation of MET-targeted therapy, such as MET inhibitors in combination with EGFR-TKIs, to potentially mitigate rapid disease progression and clinical deterioration.
Journal
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MET (MET proto-oncogene, receptor tyrosine kinase) • RBM10 (RNA Binding Motif Protein 10)
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EGFR mutation • EGFR L858R • MET amplification
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Gilotrif (afatinib) • carboplatin • pemetrexed