ArticleJAMA network open2023
Genomic Alterations and Tumor Mutation Burden in Merkel Cell Carcinoma.
Article in JAMA network open, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed, 15 citations in OpenAlex.
- Immunological Features of Neuroendocrine Neoplasms and Adrenal Tumors.Cancer medicine · 2026Review
- [Merkel cell carcinoma: current surgical approaches and multidisciplinary treatment].Revista medica del Instituto Mexicano del Seguro Social · 2026Review
- Does Ras/Rho Have Skin in the Game: The Importance of the Isoprenoid Biosynthesis Pathway in Merkel Cell Carcinoma Cell Lines.Cancers · 2026Article
- High tumor mutational burden and PIK3CA mutations correlate with poor Merkel cell carcinoma-specific survival.JCI insight · 2026Article
- Comprehensive Genomic Profiling of Cutaneous Adnexal Carcinomas: A Genomic Landscape Study.Dermatopathology (Basel, Switzerland) · 2026Article
- Genomic Signatures of Poor Prognosis in Merkel Cell Carcinoma: A Single-Institution Prospective Study.Molecular cancer research : MCR · 2025Article
- Understanding Merkel Cell Carcinoma: Pathogenic Signaling, Extracellular Matrix Dynamics, and Novel Treatment Approaches.Cancers · 2025Review
- Advancing Treatment Options for Merkel Cell Carcinoma: A Review of Tumor-Targeted Therapies.International journal of molecular sciences · 2024Review
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- Review
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- The effect of GP-2250 on cultured virus-negative Merkel cell carcinoma cells: preliminary results.Journal of cancer research and clinical oncology · 2023Article
Corrections and comments
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Authors and funding
7 authors at 3 institutions in 1 country.
Funding
Abstract
Importance: Merkel cell carcinoma (MCC) is a rare and highly aggressive cutaneous neuroendocrine carcinoma with increasing incidence. Cytotoxic chemotherapy and checkpoint inhibitors provide treatment options in the metastatic setting; however, there are no approved or standard of care targeted therapy treatment options. Objective: To identify actionable alterations annotated by the OncoKB database therapeutic evidence level in association with tumor mutation burden (TMB). Design, Setting, and Participants: This is a retrospective, cross-sectional study using data from the American Association for Cancer Research Genomics Evidence Neoplasia Information Exchange, a multicenter international cancer consortium database. Patients with MCC were enrolled in participating institutions between 2017 and 2022. Data from version 11.0 of the database were released in January 2022 and analyzed from April to June 2022. Main Outcomes and Measures: The main outcome was the percentage of patients with high TMB and OncoKB level 3B and 4 alterations. Results: A total of 324 tumor samples from 313 patients with MCC (107 women [34.2%]; 287 White patients [91.7%]; 7 Black patients [2.2%]) were cataloged in the database. The median (range) number of alterations was 4.0 (0.0-178.0), with a mean (SD) of 13.6 (21.2) alterations. Oncogenic alterations represented 20.2% of all alterations (862 of 4259 alterations). Tissue originated from primary tumor in 55.0% of patients (172 patients) vs metastasis in 39.6% (124 patients). TMB-high (≥10 mutations per megabase) was present in 26.2% of cases (82 patients). Next-generation sequencing identified 55 patients (17.6%) with a level 3B variation for a Food and Drug Administration-approved drug for use in a biomarker-approved indication or approved drug in another indication. An additional 8.6% of patients (27 patients) had a level 4 variation. Actionable alterations were more common among high TMB cases, with 37 of 82 patients (45.1%) harboring level 3 alterations compared with only 18 of 231 patients (7.8%) with low TMB. The most common level 3B gene variants included PIK3CA (12 patients [3.8%]), BRCA1/2 (13 patients [4.2%]), ATM (7 patients [2.2%]), HRAS (5 patients [1.6%]), and TSC1/2 (6 patients [1.9%]). The most common level 4 variants include PTEN (13 patients [4.1%]), ARID1A (9 patients [2.9%]), NF1 (7 patients [2.2%]), and CDKN2A (7 patients [2.2%]). Copy number alterations and fusions were infrequent. In 61.0% of cases (191 cases), a PanCancer pathway was altered, and 39.9% (125 cases) had alterations in multiple pathways. Commonly altered pathways were RTK-RAS (119 patients [38.0%]), TP53 (103 patients [32.9%]), cell cycle (104 patients [33.2%]), PI3K (99 patients [31.6%]), and NOTCH (93 patients [29.7%]). In addition, oncogenic DNA mismatch repair gene alterations were present in 8.0% of cases (25 patients). Conclusions and Relevance: In this cross-sectional retrospective study of alterations and TMB in MCC, a minority of patients had potentially actionable alterations. These findings support the investigation of targeted therapies as single agent or in combination with immunotherapy or cytotoxic chemotherapy in selected MCC populations.
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