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Updated: May 22, 2026

Analysis of Lymph Node Volume by Ultra-High-Frequency Ultrasound Imaging in the Braf/Pten Genetically Engineered Mouse Model of Melanoma
Published on: September 8, 2021
Atypical melanocytic proliferations and new primary melanomas in patients with advanced melanoma undergoing selective
Lisa Zimmer1, Uwe Hillen, Elisabeth Livingstone
1University Hospital Essen, Hufelandstr. 55, Essen, Germany.
Purpose:
Selective inhibition of mutant BRAF by using class I RAF inhibitors in patients with metastatic melanoma has resulted in impressive clinical activity. However, there is also evidence that RAF inhibitors might induce carcinogenesis or promote tumor progression via stimulation of MAPK signaling in RAF wild-type cells. We analyzed melanocytic lesions arising under class I RAF inhibitor treatment for dignity, specific genetic mutations, or expression of signal transduction molecules.
Patients And Methods:
In all, 22 cutaneous melanocytic lesions that had either developed or considerably changed in morphology in 19 patients undergoing treatment with selective BRAF inhibitors for BRAF-mutant metastatic melanoma at seven international melanoma centers within clinical trials in 2010 and 2011 were analyzed for mutations in BRAF and NRAS genes and immunohistologically assessed for expression of various signal transduction molecules in comparison with 22 common nevi of 21 patients with no history of BRAF inhibitor treatment.
Results:
Twelve newly detected primary melanomas were confirmed in 11 patients within 27 weeks of selective BRAF blockade. In addition, 10 nevi developed of which nine were dysplastic. All melanocytic lesions were BRAF wild type. Explorations revealed that expression of cyclin D1 and pAKT was increased in newly developed primary melanomas compared with nevi (P = .01 and P = .03, respectively). There was no NRAS mutation in common nevi, but BRAF mutations were frequent.
Conclusion:
Malignant melanocytic tumors might develop with increased frequency in patients treated with selective BRAF inhibitors supporting a mechanism of BRAF therapy-induced growth and tumorigenesis. Careful surveillance of melanocytic lesions in patients receiving class I RAF inhibitors seems warranted.
Insights
Selective BRAF inhibitors may increase the risk of developing new melanomas and dysplastic nevi. Close monitoring of skin lesions is recommended for patients undergoing this melanoma treatment.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Class I RAF inhibitors show clinical activity against metastatic melanoma.
- Concerns exist regarding RAF inhibitor-induced carcinogenesis and tumor promotion in BRAF wild-type cells via MAPK signaling.
- Analysis of melanocytic lesions under RAF inhibitor treatment is crucial.
Purpose of the Study:
- To investigate the potential for RAF inhibitor-induced carcinogenesis in melanocytic lesions.
- To analyze the dignity, genetic mutations, and signal transduction molecules in lesions arising during RAF inhibitor therapy.
- To compare these lesions with common nevi in untreated patients.
Main Methods:
- Analysis of 22 cutaneous melanocytic lesions from 19 patients treated with selective BRAF inhibitors.
- Assessment of BRAF and NRAS gene mutations and immunohistological expression of signal transduction molecules.
- Comparison with 22 common nevi from 21 control patients.
Main Results:
- Twelve new primary melanomas and 10 nevi (9 dysplastic) developed in patients under BRAF inhibitor treatment.
- All newly developed melanocytic lesions were BRAF wild type.
- Increased expression of cyclin D1 and pAKT was observed in new melanomas compared to nevi.
Conclusions:
- Malignant melanomas may develop more frequently in patients treated with selective BRAF inhibitors.
- BRAF therapy may promote tumor growth and tumorigenesis through a specific mechanism.
- Vigilant surveillance of melanocytic lesions in patients on RAF inhibitors is essential.
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