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There has been a substantial evolution of anti-cancer therapies in the last decade, leading
to improved prognosis and disease-free survival of patients with melanoma. Due to the
number of patients that still develop resistance or to the high systemic toxicity and side
effects, new treatment options are still needed. Regardless of the type of therapeutic
interventions (except surgery), the reactive oxygen species (ROS) are a by-product or
contribute to the action mechanism of many successful therapies. In this context, medical
cold atmospheric plasma (CAP) arises as a promising tool, and studies are important to
prove the effectiveness of this new device.
Since combination therapies are the current standard way to treat melanoma, we explored
candidates to be combined with cold atmospheric plasma, with potential to become a
therapeutic option in the combination. Here, we tested the radiotherapy and clinically safe
mitochondrial inhibitor drugs. In the end of the study, both, ionizing radiation and four
mitochondrial-targeted-drugs showed to be promising candidates for the combination with
CAP. These combinations induced increased cytotoxicity and modulated the immune
system improving the anti-tumor immune response. Mitochondrial damage seems to be
the first stage to induce cellular deficiency and culminate in apoptotic cell death.
Furthermore the release of GM-CSF contribute to a pro inflammatory state and immune
system activation.
This dissertation showed that CAP serves as an excellent tool to boost melanoma cell
death and induce anti-tumor response. In addition, in our proposed therapeutic
combination, the intensity of plasma treatment could be decreased possibly resulting in
less systemic toxicity. Our results serves as model to be studied in other tumor entities.