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Updated: Jan 20, 2026

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Antiproliferative activity of vanadium compounds: effects on the major malignant melanoma molecular pathways
Marina Pisano1, Claudia Arru, Maria Serra
1Istituto di Chimica Biomolecolare (ICB), Consiglio Nazionale delle Ricerche (CNR), Traversa La Crucca 3, 07100 Sassari, Italy. carlamaria.rozzo@cnr.it.
Abstract:
Malignant melanoma (MM) is the most fatal skin cancer, whose incidence has critically increased in the last decades. Recent molecular therapies are giving excellent results in the remission of melanoma but often they induce drug resistance in patients limiting their therapeutic efficacy. The search for new compounds able to overcome drug resistance is therefore essential. Vanadium has recently been cited for its anticancer properties against several tumors, but only a few data regard its effect against MM. In a previous work we demonstrated the anticancer activity of four different vanadium species towards MM cell lines. The inorganic anion vanadate(v) (VN) and the oxidovanadium(iv) complex [VO(dhp)2] (VS2), where dhp is 1,2-dimethyl-3-hydroxy-4(1H)-pyridinonate, showed IC50 values of 4.7 and 2.6 μM, respectively, against the A375 MM cell line, causing apoptosis and cell cycle arrest. Here we demonstrate the involvement of Reactive Oxygen Species (ROS) production in the pro-apoptotic effect of these two V species and evaluate the activation of different cell cycle regulators, to investigate the molecular mechanisms involved in their antitumor activity. We establish that VN and VS2 treatments reduce the phosphorylation of extracellular-signal regulated kinase (ERK) by about 80%, causing the deactivation of the mitogen activated protein kinase (MAPK) pathway in A375 cells. VN and VS2 also induce dephosphorylation of the retinoblastoma protein (Rb) (VN 100% and VS2 90%), together with a pronounced increase of cyclin-dependent kinase inhibitor 1 p21 (p21Cip1) protein expression up to 1800%. Taken together, our results confirm the antitumor properties of vanadium against melanoma cells, highlighting its ability to induce apoptosis through generation of ROS and cell cycle arrest by counteracting MAPK pathway activation and strongly inducing p21Cip1 expression and Rb hypo-phosphorylation.
Insights
Vanadium compounds, vanadate(V) and oxidovanadium(IV) complex, show promise in treating drug-resistant melanoma. These vanadium species induce apoptosis and cell cycle arrest by increasing reactive oxygen species (ROS) and inhibiting key cancer pathways.
Area of Science:
- * Oncology
- * Pharmacology
- * Biochemistry
Background:
- * Malignant melanoma (MM) incidence is rising, with drug resistance limiting current therapies.
- * Vanadium compounds exhibit anticancer properties, but their efficacy against MM requires further investigation.
- * Previous studies showed vanadium species induce apoptosis and cell cycle arrest in MM cell lines.
Purpose of the Study:
- * To investigate the molecular mechanisms behind the antitumor activity of vanadate(V) (VN) and oxidovanadium(IV) complex (VS2) against MM.
- * To elucidate the role of Reactive Oxygen Species (ROS) in the pro-apoptotic effects of VN and VS2.
- * To evaluate the impact of VN and VS2 on cell cycle regulators and signaling pathways.
Main Methods:
- * Treatment of A375 MM cell line with VN and VS2.
- * Measurement of Reactive Oxygen Species (ROS) production.
- * Analysis of extracellular-signal regulated kinase (ERK) phosphorylation and mitogen-activated protein kinase (MAPK) pathway activity.
- * Assessment of retinoblastoma protein (Rb) phosphorylation and p21Cip1 protein expression.
Main Results:
- * VN and VS2 induced significant ROS production, contributing to apoptosis in A375 cells.
- * Both vanadium species markedly reduced ERK phosphorylation, deactivating the MAPK pathway.
- * VN and VS2 treatment led to Rb dephosphorylation and a substantial increase in p21Cip1 expression.
Conclusions:
- * Vanadium compounds VN and VS2 demonstrate significant antitumor activity against melanoma.
- * The mechanism involves ROS generation, MAPK pathway inhibition, and cell cycle arrest induction via p21Cip1 and Rb modulation.
- * Vanadium holds potential for overcoming drug resistance in malignant melanoma treatment.
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