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DRUG:

Tabrecta (capmatinib)

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Other names: INC280, INCB028060, INC-280, INCB-028060, INCB-28060, INC 280, INCB 028060, INCB28060, INCB 28060
Company:
Incyte, Novartis
Drug class:
c-MET inhibitor
Related drugs:
4d
Cost-effectiveness analysis of tepotinib vs capmatinib as subsequent therapy in MET exon 14-mutated non-small-cell lung cancer. (PubMed, Lung Cancer Manag)
The incremental cost-effectiveness ratio (ICER) of Capmatinib treatment vs. Tepotinib treatment was calculated at 60,977.28 USD/QALY. Tepotinib was not cost-effective compared to Capmatinib as the second-line treatment for advanced or metastatic NSCLC patients with MET exon 14 skipping mutations in China.
Review • Journal • HEOR • Cost-effectiveness
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MET (MET proto-oncogene, receptor tyrosine kinase)
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MET exon 14 mutation • MET mutation
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Tepmetko (tepotinib) • Tabrecta (capmatinib)
2ms
Real-World Evidence for 10 Oncology Drugs Approved in the last 5 years: A Comprehensive Narrative Synthesis. (PubMed, Crit Rev Oncol Hematol)
RWE confirms the effectiveness and safety of multiple recently approved oncology drugs reinforcing the external validity of RCTs.
Review • Journal • HEOR • Real-world evidence • MSi-H Biomarker
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HER-2 (Human epidermal growth factor receptor 2) • ER (Estrogen receptor) • MSI (Microsatellite instability)
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HER-2 positive • MSI-H/dMMR • HER-2 negative • ESR1 mutation
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Enhertu (fam-trastuzumab deruxtecan-nxki) • Lumakras (sotorasib) • Retevmo (selpercatinib) • Jemperli (dostarlimab-gxly) • Krazati (adagrasib) • Tepmetko (tepotinib) • Tabrecta (capmatinib) • Trodelvy (sacituzumab govitecan-hziy) • Padcev (enfortumab vedotin-ejfv) • Orserdu (elacestrant)
2ms
Clinical Activity of MET-TKIs in METex14 Skipping NSCLC With Poor Performance Status. (PubMed, Anticancer Res)
MET-TKIs are effective for NSCLC with the METex14 skipping mutation; however, their efficacy for patients with a poor PS is limited.
Retrospective data • Journal • PD(L)-1 Biomarker • IO biomarker
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MET (MET proto-oncogene, receptor tyrosine kinase)
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PD-L1 expression • MET exon 14 mutation
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Tepmetko (tepotinib) • Tabrecta (capmatinib)
2ms
Targeting Mesenchymal-Epidermal Transition (MET) Aberrations in Non-Small Cell Lung Cancer: Current Challenges and Therapeutic Advances. (PubMed, Cancers (Basel))
Encouragingly, several MET TKIs such as capmatinib, tepotinib, and savolitinib have been approved for the treatment of MET exon 14 skipping mutations. On 14 May 2025, the U.S. Food and Drug Administration granted accelerated approval to telisotuzumab vedotin-tllv for adult patients with locally advanced or metastatic non-squamous NSCLC whose tumors exhibit high c-Met protein overexpression and who have already received prior systemic therapy. In this review, we summarize the structure and physiological role of the MET receptor, the molecular mechanisms underlying aberrant MET activation, its contribution to acquired resistance against targeted therapies, and emerging strategies for effectively targeting MET alterations in NSCLC.
Review • Journal
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MET (MET proto-oncogene, receptor tyrosine kinase)
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MET amplification • MET exon 14 mutation • MET overexpression
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Orpathys (savolitinib) • Tepmetko (tepotinib) • Tabrecta (capmatinib) • Emrelis (telisotuzumab vedotin-tllv)
2ms
A tri-scale in silico framework integrating pharmacovigilance and mechanistic modeling suggests tepotinib-associated acute kidney injury risk. (PubMed, Ren Fail)
Molecular docking revealed high-affinity binding between tepotiniband all six hub targets (Vina scores: -8.0 to -10.6 kcal/mol), providing a structural basis for the postulated mechanistic link to AKI. These findings not only highlight the necessity for enhanced renal monitoring in tepotinib-treated patients but, more broadly, establish the FAERS-NetDock Pipeline as a reusable, generalizable and hypothesis-generating framework for evaluating tyrosine kinase inhibitors (TKIs)-induced nephrotoxicity; this framework is immediately applicable to profiling the safety of other TKIs (e.g. crizotinib, capmatinib, savolitinib, afatinib and osimertinib) and is readily adaptable for de-risking a wider spectrum of targeted therapies.
Journal • Adverse events
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EGFR (Epidermal growth factor receptor) • AKT1 (V-akt murine thymoma viral oncogene homolog 1) • CASP3 (Caspase 3) • HSP90AA1 (Heat Shock Protein 90 Alpha Family Class A Member 1Heat Shock Protein 90 Alpha Family Class A Member 1)
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Xalkori (crizotinib) • Tagrisso (osimertinib) • Gilotrif (afatinib) • Orpathys (savolitinib) • Tepmetko (tepotinib) • Tabrecta (capmatinib) • simmitinib (SYHA1817)
3ms
Safety and Synergy of Capmatinib Plus Stereotactic Radiotherapy in MET Exon 14-Mutated Non-Small Cell Lung Cancer: A Case Report. (PubMed, Cureus)
He received capmatinib (800 mg/day) and denosumab, with SBRT to vertebral metastases and later to the primary lung tumor. Temporary suspension of capmatinib during SBRT, along with careful monitoring, optimized tolerability, and outcomes. This case supports the feasibility and potential synergy of precision multimodal therapy in MET-driven oligometastatic NSCLC, highlighting the need for further prospective studies.
Journal • PD(L)-1 Biomarker • IO biomarker
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PD-L1 (Programmed death ligand 1) • MET (MET proto-oncogene, receptor tyrosine kinase) • NKX2-1 (NK2 Homeobox 1)
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MET exon 14 mutation • MET mutation
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Tabrecta (capmatinib) • Prolia (denosumab)
3ms
Study of EGF816 in Combination With Selected Targeted Agents in EGFR-mutant NSCLC (clinicaltrials.gov)
P1, N=105, Active, not recruiting, Novartis Pharmaceuticals | Trial completion date: Mar 2026 --> Oct 2026 | Trial primary completion date: Mar 2026 --> Oct 2026
Trial completion date • Trial primary completion date
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EGFR mutation • EGFR L858R • EGFR exon 19 deletion • EGFR T790M • EGFR exon 20 insertion • EGFR exon 20 mutation
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Mekinist (trametinib) • gefitinib • Kisqali (ribociclib) • Tabrecta (capmatinib) • naporafenib (ERAS-254) • nazartinib (EGF816)
3ms
Real-world adoption of off-label combinations for targeted therapy resistance in non-small cell lung cancer. (PubMed, Clin Transl Oncol)
Off-label combination therapy to treat targeted therapy resistance in advanced NSCLC is feasible in routine clinical practice. Additional real-world evidence is needed to clarify best practices with this emerging approach.
Journal • Real-world evidence
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EML4 (EMAP Like 4)
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EGFR exon 19 deletion • ALK fusion
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gefitinib • Alecensa (alectinib) • Retevmo (selpercatinib) • Tabrecta (capmatinib)
4ms
Cancer-associated fibroblasts confer ALK inhibitor resistance in EML4-ALK-driven lung cancer by concurrent integrin and MET signaling. (PubMed, Sci Signal)
Moreover, the combination of the ALK inhibitor alectinib with the MET inhibitor capmatinib and/or the integrin inhibitor cilengitide was more effective than single-agent treatment in suppressing tumor growth in allografted mice. The findings illustrate a previously unappreciated complex nature of concurrent paracrine and juxtacrine mechanisms of CAF-driven resistance that may inform the development of more effective therapeutic approaches.
Journal
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EML4 (EMAP Like 4)
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ALK fusion
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Alecensa (alectinib) • Tabrecta (capmatinib) • Cilcane (cilengitide)
4ms
MULTISARC: Molecular Profiling of Advanced Soft-tissue Sarcomas (clinicaltrials.gov)
P3, N=603, Active, not recruiting, Institut National de la Santé Et de la Recherche Médicale, France | Trial completion date: Oct 2025 --> Jan 2026
Trial completion date • IO biomarker
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Lynparza (olaparib) • Mekinist (trametinib) • Ibrance (palbociclib) • Tafinlar (dabrafenib) • Imfinzi (durvalumab) • lapatinib • Zykadia (ceritinib) • nilotinib • Lytgobi (futibatinib) • Tabrecta (capmatinib) • Daurismo (glasdegib)
4ms
METalmark: A Study of Amivantamab and Capmatinib Combination Therapy in Unresectable Metastatic Non-small Cell Lung Cancer (clinicaltrials.gov)
P1/2, N=57, Active, not recruiting, Janssen Research & Development, LLC | Trial completion date: May 2028 --> Mar 2027
Trial completion date
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Rybrevant (amivantamab-vmjw) • Tabrecta (capmatinib)
5ms
A Concise Review of the Approved MET TKIs (Savolitinib, Gumarontinib, Vebreltinib, Tepotinib, Capmatinib) in China for MET Exon 14 Splice Site Mutated (METex14+) NSCLC Circa 2025. (PubMed, Lung Cancer (Auckl))
Splice site mutations around or within exon 14 of MET (METex14+) are rare, but are one of the common actionable driver mutations in elderly patients with non-small cell lung cancer (NSCLC). On June 30, 2025, vebreltinib has been approved for NSCLC with MET amplification while combination of savoltinib and osimertinib has been approved for EGFR+ post EGFR TKINSCLC with MET amplification post EGFR TKI based on the SACHI trial (NCT05015608). We discuss the current unmet clinical need (need to develop Type II MET TKI to overcome acquired resistance MET mutations at D1228 and Y1230) and future optimal treatment approaches.
Review • Journal
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MET (MET proto-oncogene, receptor tyrosine kinase)
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MET amplification • MET exon 14 mutation • MET mutation
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Tagrisso (osimertinib) • Orpathys (savolitinib) • Tepmetko (tepotinib) • Tabrecta (capmatinib) • Haiyitan (gumarontinib) • vebreltinib (APL-101)