Related Experiment Video
Updated: Jun 25, 2025

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
Ibrutinib Modulates Proliferation, Migration, Mitochondrial Homeostasis, and Apoptosis in Melanoma Cells
Fernanda Vitelli Lins1,2, Elizabete Cristina Iseke Bispo1, Naomí Souza Rodrigues1
1Laboratório de Hematologia e Células-Tronco, Faculdade de Ciências da Saúde, Universidade de Brasília, Brasília 70910-900, DF, Brazil.
Abstract:
Ibrutinib, a tyrosine kinase inhibitor with a broad spectrum of action, has been successfully explored to treat hematological and solid cancers. Herein, we investigated the anti-cancer effect of Ibrutinib on melanoma cell lines. Cytotoxicity was evaluated using the MTT assay. Apoptosis, mitochondrial membrane potential, reactive oxygen species (ROS) production, cell proliferation, and cell cycle stages were determined by flow cytometry. LDH release and Caspase 3/7 activity were determined by colorimetric and luminescent assays, respectively. Cell migration was evaluated by wound scratch assay. Gene expression was determined by real-time PCR. Gene Ontology (GO) enrichment analysis of melanoma clinical samples was performed using the Database for Annotation, Visualization and Integrated Discovery (DAVID). MTT assays showed that Ibrutinib is toxic for MeWo, SK-MEL-28, and WM164 cells. The annexin V/PI staining, Caspase 3/7 activity, and LDH release in MeWo cells revealed that apoptosis is the primary mechanism of death caused by Ibrutinib. Corroborating such observation, we identified that Ibrutinib treatment impairs the mitochondrial membrane potential of such cells and significantly increases the transcriptional levels of the pro-apoptotic factors ATM, HRK, BAX, BAK, CASP3, and CASP8. Furthermore, Ibrutinib showed antimetastatic potential by inhibiting the migration of MeWo cells. Finally, we performed a functional enrichment analysis and identified that the differential expression of Ibrutinib-target molecules is associated with enrichment of apoptosis and necrosis pathways in melanoma samples. Taken together, our results clearly suggest that Ibrutinib can be successfully explored as an effective therapeutic approach for melanomas.
Insights
Ibrutinib effectively kills melanoma cells by inducing apoptosis and impairing mitochondrial function. This tyrosine kinase inhibitor also demonstrates antimetastatic potential, suggesting its promise as a melanoma therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Ibrutinib is a tyrosine kinase inhibitor used for various cancers.
- Melanoma remains a significant health concern requiring novel therapeutic strategies.
Purpose of the Study:
- To investigate the anti-cancer effects of Ibrutinib on melanoma cell lines.
- To elucidate the mechanisms underlying Ibrutinib's action in melanoma.
- To assess Ibrutinib's antimetastatic potential in melanoma.
Main Methods:
- Cytotoxicity assessed via MTT assay.
- Apoptosis, mitochondrial potential, ROS, proliferation, and cell cycle analyzed by flow cytometry.
- Gene expression, LDH release, Caspase 3/7 activity, and cell migration evaluated using real-time PCR, colorimetric/luminescent assays, and wound scratch assays, respectively.
Main Results:
- Ibrutinib exhibited cytotoxicity against MeWo, SK-MEL-28, and WM164 melanoma cells.
- Apoptosis, evidenced by Annexin V/PI staining, increased Caspase 3/7 activity, and LDH release, was the primary cell death mechanism.
- Ibrutinib treatment reduced mitochondrial membrane potential and upregulated pro-apoptotic genes (ATM, HRK, BAX, BAK, CASP3, CASP8).
- Ibrutinib inhibited melanoma cell migration, indicating antimetastatic effects.
- Gene Ontology analysis linked Ibrutinib targets to apoptosis and necrosis pathways in melanoma samples.
Conclusions:
- Ibrutinib induces apoptosis and impairs mitochondrial function in melanoma cells.
- Ibrutinib possesses antimetastatic properties relevant to melanoma treatment.
- Ibrutinib shows significant therapeutic potential for melanoma treatment.
Related Concept Videos
The Intrinsic Apoptotic Pathway
Targeted Cancer Therapies
There are several types of targeted therapies against...
Inhibition of Cdk Activity
The Retinoblastoma Gene
The first-ever tumor suppressor gene called Rb was identified in retinoblastoma - a rare eye tumor in children. In inherited forms of the disease, a child inherits one defective copy of the Rb gene, which predisposes them to retinoblastoma. However,...
Intracellular Signaling Affects Focal Adhesions
Some...
Combination Therapies and Personalized Medicine
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...

