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Nonthermal Plasma Induces Apoptosis in ATC Cells: Involvement of JNK and p38 MAPK-Dependent ROS
Authors:Sei Young Lee  Sung Un Kang  Kang Il Kim  Sam Kang  Yoo Seob Shin  Jae Won Chang  Sang Sik Yang  Keunho Lee  Jong-Soo Lee  Eunpyo Moon  Chul-Ho Kim
Affiliation:1.Department of Otolaryngology-Head and Neck Surgery, Chung-Ang University College of Medicine, Seoul, Korea.;2.Department of Otolaryngology, School of Medicine, Ajou University, Suwon, Korea.;3.Department of Electrical and Computer Engineering, Ajou University, Suwon, Korea.;4.PSM America Inc., Colorado Springs, CO, USA.;5.Department of Molecular Science and Technology and Life Science, Ajou University, Suwon, Korea.
Abstract:

Purpose

To determine the effects of nonthermal plasma (NTP) induced by helium (He) alone or He plus oxygen (O2) on the generation of reactive oxygen species (ROS) and cell death in anaplastic thyroid cancer cells.

Materials and Methods

NTP was generated in He alone or He plus O2 blowing through a nozzle by applying a high alternating current voltage to the discharge electrodes. Optical emission spectroscopy was used to identify various excited plasma species. The apoptotic effect of NTP on the anaplastic thyroid cancer cell lines, such as HTH83, U-HTH 7, and SW1763, was verified with annexin V/propidium staining and TUNEL assay. ROS formation after NTP treatment was identified with fluorescence-activated cell sorting with DCFDA staining. The mitogen-activated protein kinase pathways and caspase cascade were investigated to evaluate the molecular mechanism involved and cellular targets of plasma.

Results

NTP induced significant apoptosis in all three cancer cell lines. The plasma using He and O2 generated more O2-related species, and increased apoptosis and intracellular ROS formation compared with the plasma using He alone. NTP treatment of SW1763 increased the expression of phosphor-JNK, phosphor-p38, and caspase-3, but not phosphor-ERK. Apoptosis of SW1763 as well as expressions of elevated phosphor-JNK, phosphor-p38, and caspase-3 induced by NTP were effectively inhibited by intracellular ROS scavengers.

Conclusion

NTP using He plus O2 induced significant apoptosis in anaplastic cancer cell lines through intracellular ROS formation. This may represent a new promising treatment modality for this highly lethal disease.
Keywords:Nonthermal plasma   ROS   anaplastic thyroid cancer   apoptosis   helium   oxygen
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