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NF‑κB inhibition is associated with OPN/MMP‑9 downregulation in cutaneous melanoma
Claudio Guarneri1, Valentina Bevelacqua2, Jerry Polesel3
1Department of Clinical and Experimental Medicine, Section of Dermatology, University of Messina, I‑98125 Messina, Italy.
Abstract:
The development of cutaneous melanoma is influenced by genetic factors, including BRAF mutations and environmental factors, such as ultraviolet exposure. Its progression has been also associated with the involvement of several tumour microenvironmental molecules. Among these, nuclear factor‑κB (NF‑κB) has been indicated as a key player of osteopontin (OPN) and matrix metalloproteinase‑9 (MMP‑9) activation. However, whether NF‑κB plays a role in the development and progression of melanoma in association with the OPN/MMP‑9 axis according to the BRAFV600E mutation status has not been investigated in detail to date. Thus, in the present study, in order to shed light on this matter, 148 patients with melanoma and 53 healthy donors were recruited for the analysis of OPN, MMP‑9 and NF‑κB. Significantly higher circulating levels of OPN and MMP‑9 were observed in the patients with melanoma when compared to the healthy donors. Similar data were obtained for NF‑κB p65 activity. The OPN levels did not differ significantly between melanomas with or without BRAFV600E mutation. However, as regards NF‑κB and MMP‑9, significant differences were observed between the melanomas with or without BRAFV600E mutation. To determine whether NF‑κB inhibition is associated with a decrease in the levels of OPN and MMP‑9, peripheral blood mononuclear cells from 29 patients with melanoma were treated with the NF‑κB inhibitor, dehydroxymethylepoxyquinomycin (DHMEQ), with or without OPN. As expected, the inhibition of NF‑κB induced a marked decrease in both the OPN and MMP‑9 levels. Furthermore, the decrease in MMP‑9 levels was higher among melanomas harbouring the BRAFV600E mutation. Overall, our data suggest that the activation of MMP‑9 is associated with the BRAFV600E mutation status. Furthermore, such an activation is mediated by NF‑κB, suggesting its role as therapeutic target in patients with melanoma.
Insights
Nuclear factor-κB (NF-κB) activation drives osteopontin (OPN) and matrix metalloproteinase-9 (MMP-9) in melanoma, particularly with BRAFV600E mutations. Inhibiting NF-κB reduces these molecules, suggesting a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Cutaneous melanoma development involves genetic (e.g., BRAF mutations) and environmental factors (e.g., UV exposure).
- Tumor microenvironment molecules, including nuclear factor-κB (NF-κB), osteopontin (OPN), and matrix metalloproteinase-9 (MMP-9), are implicated in melanoma progression.
- The interplay between NF-κB, OPN/MMP-9 axis, and BRAFV600E mutation status in melanoma remains incompletely understood.
Purpose of the Study:
- To investigate the role of NF-κB in melanoma development and progression.
- To analyze the association between the OPN/MMP-9 axis, NF-κB activation, and BRAFV600E mutation status in melanoma patients.
- To evaluate the therapeutic potential of NF-κB inhibition in modulating OPN and MMP-9 levels.
Main Methods:
- Analysis of circulating OPN, MMP-9, and NF-κB p65 activity in 148 melanoma patients and 53 healthy donors.
- Comparison of molecular levels based on BRAFV600E mutation status.
- In vitro treatment of peripheral blood mononuclear cells from melanoma patients with the NF-κB inhibitor dehydroxymethylepoxyquinomycin (DHMEQ).
Main Results:
- Elevated circulating levels of OPN, MMP-9, and NF-κB p65 activity were observed in melanoma patients compared to healthy donors.
- NF-κB and MMP-9 levels differed significantly between melanomas with and without BRAFV600E mutations, while OPN levels did not.
- NF-κB inhibition with DHMEQ markedly decreased OPN and MMP-9 levels, with a more pronounced MMP-9 reduction in BRAFV600E-mutated melanomas.
Conclusions:
- NF-κB activation is a key mediator of OPN and MMP-9 levels in melanoma.
- MMP-9 activation is significantly associated with BRAFV600E mutation status in melanoma.
- Targeting NF-κB represents a potential therapeutic strategy for melanoma patients, especially those with BRAFV600E mutations.
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