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The Cell Activation Phenomena in the Cold Atmospheric Plasma Cancer Treatment.


ABSTRACT: Cold Atmospheric Plasma (CAP) is an ionized gas with a near room temperature. CAP is a controllable source for reactive species, neutral particles, electromagnetic field and UV radiation. CAP showed the promising application in cancer treatment through the demonstration in vitro and in vivo. In this study, we first demonstrate the existence of an activation state on the CAP-treated cancer cells, which drastically decreases the threshold of cell vulnerability to the cytotoxicity of the CAP-originated reactive species such as H2O2 and NO2-. The cytotoxicity of CAP treatment is still dependent on the CAP-originated reactive species. The activation state of cancer cells will not cause noticeable cytotoxicity. This activation is an instantaneous process, started even just 2?s after the CAP treatment begins. The noticeable activation on the cancer cells starts 10-20?s during the CAP treatment. In contrast, the de-sensitization of activation takes 5 hours after the CAP treatment. The CAP-based cell activation explains the mechanism by which direct CAP treatment causes a much stronger cytotoxicity over the cancer cells compared with an indirect CAP treatment do, which is a key to understand what the effect of CAP on cancer cells.

SUBMITTER: Yan D 

PROVIDER: S-EPMC6194007 | biostudies-other | 2018 Oct

REPOSITORIES: biostudies-other

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The Cell Activation Phenomena in the Cold Atmospheric Plasma Cancer Treatment.

Yan Dayun D   Xu Wenjun W   Yao Xiaoliang X   Lin Li L   Sherman Jonathan H JH   Keidar Michael M  

Scientific reports 20181018 1


Cold Atmospheric Plasma (CAP) is an ionized gas with a near room temperature. CAP is a controllable source for reactive species, neutral particles, electromagnetic field and UV radiation. CAP showed the promising application in cancer treatment through the demonstration in vitro and in vivo. In this study, we first demonstrate the existence of an activation state on the CAP-treated cancer cells, which drastically decreases the threshold of cell vulnerability to the cytotoxicity of the CAP-origin  ...[more]

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