Plasma Processes and Polymers · 2015 · 77 citations · 81 references
EngineeringGlow DischargeNsp DbdBiomedical EngineeringNanomedicineReaction Chemistry GeneratedElectric FieldNsp Electric FieldPulse PowerRadiation OncologyBiophysicsNanotechnologyMelanomaTumor TargetingTumor MicroenvironmentCold Atmospheric PlasmaTumor EradicationGas Discharge PlasmaMedicine
Melanoma is one of the most aggressive metastatic cancers with resistance to radiation and most chemotherapy agents. This study highlights an alternative treatment for melanoma based on nanosecond pulsed dielectric barrier discharge (nsP DBD). We show that a single nsP DBD treatment, directly applied to a 5 mm orthotopic mouse melanoma tumor, completely eradicates it 66% ( n = 6; p ≤ 0.05) of the time. It was determined that reactive oxygen and nitrogen species produced by nsP DBD are the main cause of tumor eradication, while nsP electric field and heat generated by the discharge are not sufficient to kill the tumor. However, we do not discount that potential synergy between each plasma generated component (temperature, electric field and reactive species) can enhance the killing efficacy.
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Gregory Fridman, Gary Friedman, Alexànder Gutsol et al. · Plasma Processes and Polymers · 2008 · 2K citations
INTERNATIONALCOLLABORATIVEHYPERT, C. A. Vernon, J. W. Hand et al. · International Journal of Radiation Oncology*Biology*Physics · 1996 · 718 citations · Full text
Mitf regulation of Dia1 controls melanoma proliferation and invasiveness
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