Literature DB >> 30069761

Vemurafenib.

Claus Garbe1, Thomas K Eigentler2.   

Abstract

The activating BRAF mutation V600E and related mutations in this codon are most important for the activation of the RAS/RAF/MEK/ERK mitogen-activated protein kinase (MAPK) signalling pathway in melanoma. BRAF V600E mutations have been detected in ~40% of melanoma patients and BRAF V600K mutations in ~5% of melanoma patients. Activation of the MAPK pathway results in continuous stimulation of cell proliferation and inhibits programmed cell death. Vemurafenib (PLX4032) was developed as a low-molecular-weight molecule for the inhibition of the mutated serine-threonine kinase BRAF, and it selectively binds to the ATP-binding site of BRAF V600E kinase and inhibits its activity. The biochemical affinity of vemurafenib for mutated BRAF translates to potent inhibition of ERK phosphorylation and of cell proliferation exclusively in BRAF-mutant cell lines. In animal model experiments, it was demonstrated that vemurafenib achieved tumour regressions in cells harbouring the BRAF V600E mutation. The clinical trials with vemurafenib in unresectable metastatic melanoma in phases I, II and III for patients harbouring BRAF V600E mutations demonstrated all unexpected high objective response rates ranging between 50 and 80%. Median progression-free survival was prolonged from 2 months with dacarbazine to 7 months with vemurafenib, and median overall survival was, respectively, prolonged from 9 to 14 months. A major problem remains in the development of resistance to vemurafenib treatment after several months in the majority of patients, and multiple resistance mechanisms have already been described. Under vemurafenib treatment, about 25% of patients developed cutaneous squamous cell carcinomas of the keratoacanthoma type with low invasive potential and without the occurrence of metastasis. The overall tolerability of the drug was quite good, and many patients remained on treatment for long times. As other solid tumours like papillary thyroid cancer, colorectal cancer, non-small-cell lung cancer and ovarian cancer likewise harbour BRAF mutation, vemurafenib is also tested in these entities. In future, combinations of vemurafenib with other kinase inhibitors and with immunotherapies will improve its therapeutic potential.

Entities:  

Keywords:  BRAF inhibitor; BRAF mutation; Melanoma; Vemurafenib

Mesh:

Substances:

Year:  2018        PMID: 30069761     DOI: 10.1007/978-3-319-91442-8_6

Source DB:  PubMed          Journal:  Recent Results Cancer Res        ISSN: 0080-0015


  12 in total

1.  Nuclear interaction of Arp2/3 complex and BRAFV600E promotes aggressive behavior and vemurafenib resistance of thyroid cancer.

Authors:  Mourad Zerfaoui; Koji Tsumagari; Eman Toraih; Youssef Errami; Emmanuelle Ruiz; Mohammed Sohail M Elaasar; Moroz Krzysztof; Andrew B Sholl; Sameh Magdeldin; Mohamed Soudy; Zakaria Y Abd Elmageed; A Hamid Boulares; Emad Kandil
Journal:  Am J Cancer Res       Date:  2022-07-15       Impact factor: 5.942

2.  Validation of a Liquid Biopsy Protocol for Canine BRAFV595E Variant Detection in Dog Urine and Its Evaluation as a Diagnostic Test Complementary to Cytology.

Authors:  Fabio Gentilini; Christopher J Palgrave; Michal Neta; Raimondo Tornago; Tommaso Furlanello; Jennifer S McKay; Federico Sacchini; Maria E Turba
Journal:  Front Vet Sci       Date:  2022-05-31

3.  Molecular Mechanisms of Hepatoblastoma.

Authors:  Yi Zhang; Antonio Solinas; Stefano Cairo; Matthias Evert; Xin Chen; Diego F Calvisi
Journal:  Semin Liver Dis       Date:  2021-01-20       Impact factor: 6.115

4.  FAM129B-dependent activation of NRF2 promotes an invasive phenotype in BRAF mutant melanoma cells.

Authors:  Cody J Schmidlin; Wang Tian; Matthew Dodson; Eli Chapman; Donna D Zhang
Journal:  Mol Carcinog       Date:  2021-03-08       Impact factor: 4.784

5.  Involvement of HMGB1 in vemurafenib resistance in thyroid cancer cells harboring BRAF (V600E) mutation by regulating excessive autophagy.

Authors:  Xin Huang; Yang Xiao; Lin Run; Liping Wang; Xiting Nong; Nan Li
Journal:  Endocrine       Date:  2020-07-14       Impact factor: 3.633

6.  Synergistic inhibition of MEK and reciprocal feedback networks for targeted intervention in malignancy.

Authors:  Yanan Li; Qingrong Dong; Yukun Cui
Journal:  Cancer Biol Med       Date:  2019-08       Impact factor: 4.248

7.  RNA sequencing data of Vemurafenib-resistant melanoma cells and parental cells.

Authors:  Kun Zhao; Yanrong Lu; Younan Chen; Jingqiu Cheng; Wengeng Zhang
Journal:  Data Brief       Date:  2020-04-22

8.  Response to Vemurafenib in Metastatic Triple-Negative Breast Cancer Harbouring a BRAF V600E Mutation: A Case Report and Electronically Captured Patient-Reported Outcome.

Authors:  Magdalena Pircher; Thomas Winder; Andreas Trojan
Journal:  Case Rep Oncol       Date:  2021-03-29

Review 9.  The Role of Altered Mitochondrial Metabolism in Thyroid Cancer Development and Mitochondria-Targeted Thyroid Cancer Treatment.

Authors:  Siarhei A Dabravolski; Nikita G Nikiforov; Alexander D Zhuravlev; Nikolay A Orekhov; Liudmila M Mikhaleva; Alexander N Orekhov
Journal:  Int J Mol Sci       Date:  2021-12-31       Impact factor: 5.923

Review 10.  The Use of Inhibitors of Tyrosine Kinase in Paediatric Haemato-Oncology-When and Why?

Authors:  Agnieszka Kaczmarska; Patrycja Śliwa; Monika Lejman; Joanna Zawitkowska
Journal:  Int J Mol Sci       Date:  2021-11-08       Impact factor: 5.923

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