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Research Articles

Cancer-specific cytotoxicity of Ringer’s acetate solution irradiated by cold atmospheric pressure plasma

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Pages 91-104 | Received 27 Dec 2022, Accepted 02 Apr 2023, Published online: 17 Apr 2023

References

  • Toyokuni S, Ikehara Y, Kikkawa F, et al. Plasma medical science. United Kingdom: Academic Press, Elsevier 2018.
  • Metelmann HR, von Woedtke T, Weltmann KD, Eds. Comprehensive clinical plasma medicine: cold physical plasma for medical application. Springer-Verlag Berlin Heidelberg, ed. 1, 2016.
  • Fridman A, Friedman G. Plasma medicine. John Wiley & Sons, Ltd, 2013.
  • Laroussi M, Kong MG, Morfill G, Stolz W, Eds. Plasma medicine applications of low temperature gas plasmas in medicine and biology. Cambridge University Press, 2012.
  • Machala Z, Hensel K, Akishev Y, Eds. Plasma for bio-decontamination, medicine and food security. The Netherlands: Springer, 2012.
  • Toyokuni S. The origin and future of oxidative stress pathology: from the recognition of carcinogenesis as an iron addiction with ferroptosis-resistance to non-thermal plasma therapy. Pathol Int. 2016;66(5):245–259.
  • Tornin J, Mateu-Sanz M, Rodriguez A, et al. Pyruvate plays a main role in the antitumoral selectivity of cold atmospheric plasma in osteosarcoma. Sci Rep. 2019;9(1):10681-1–13.
  • Iwasaki M, Inui H, Matsudaira Y, et al. Nonequilibrium atmospheric pressure plasma with ultrahigh electron density and high performance for glass surface cleaning. Appl. Phys. Lett. 2008;92(8):081503.
  • Tanaka H, Mizuno M, Ishikawa K, et al. Plasma-activated medium selectively kills glioblastoma brain tumor cells by downregulating a survival signaling molecule, AKT kinase. Plasma Med. 2011;1(3-4):265–277.
  • Tanaka H, Mizuno M, Ishikawa K, et al. Cell survival and proliferation signaling pathways are downregulated by plasma-activated medium in glioblastoma brain tumor cells. Plasma Med. 2012;2(4):207–220.
  • Utsumi F, Kajiyama H, Nakamura K, et al. Effect of indirect nonequilibrium atmospheric pressure plasma on anti-proliferative activity against chronic chemo-resistant ovarian cancer cells in vitro and in vivo. PLOS One. 2013;8(12):e81576-1–10.
  • Tanaka H, Ishikawa K, Mizuno M, et al. State of the art in medical applications using non-thermal atmospheric pressure plasma. Rev. Mod. Plasma Phys. 2017;1(1):89.
  • Vandamme M, Robert E, Lerondel S, et al. ROS implication in a new antitumor strategy based on non-thermal plasma. Int J Cancer. 2012;130(9):2185–2194.
  • Graves DB. The emerging role of reactive oxygen and nitrogen species in redox biology and some implications for plasma applications to medicine and biology. J. Phys. D: Appl. Phys. 2012;45(26):263001-1–45.
  • Kurake N, Tanaka H, Ishikawa K, et al. Cell survival of glioblastoma grown in medium containing hydrogen peroxide and/or nitrite, or in plasma-activated medium. Arch Biochem Biophys. 2016;605:102–108.
  • Kurake N, Tanaka H, Ishikawa K, et al. Effects of •OH and •NO radicals in the aqueous phase on H2O2 and NO2− generated in plasma-activated medium. J. Phys. D: Appl. Phys. 2017;50(15):155202.
  • Bauer G, Graves DB. Mechanisms of selective antitumor action of cold atmospheric plasma‐derived reactive oxygen and nitrogen species. Plasma Process Polym. 2016;13(12):1157–1178.
  • Lukes P, Dolezalova E, Sisrova I, et al. Aqueous-phase chemistry and bactericidal effects from an air discharge plasma in contact with water: evidence for the formation of peroxynitrite through a pseudo-second-order post-discharge reaction of H2O2 and HNO2. Plasma Sources Sci. Technol. 2014;23(1):015019-1–15.
  • Norberg SA, Tian W, Johnsen E, et al. Atmospheric pressure plasma jets interacting with liquid covered tissue: touching and not-touching the liquid. J. Phys. D: Appl. Phys. 2014;47(47):475203-1–11.
  • Uchida G, Nakajima A, Ito T, et al. Effects of nonthermal plasma jet irradiation on the selective production of H2O2 and NO2− in liquid water. J Appl Phys. 2016;120(20):203302-1–9.
  • Jiang L, Zheng H, Lyu Q, et al. Lysosomal nitric oxide determines transition from autophagy to ferroptosis after exposure to plasma-activated Ringer′s lactate. Redox Biol. 2021;43:101989-1–12.
  • Tanaka H, Maeda S, Nakamura K, et al. Plasma‐activated Ringer’s lactate solution inhibits the cellular respiratory system in HeLa cells. Plasma Process Polym. 2021;18(10):e2100056-1–11.
  • Tanaka H, Hosoi Y, Ishikawa K, et al. Low temperature plasma irradiation products of sodium lactate that induce cell death on U251SP glioblastoma cells were identified. Sci Rep. 2021;11(1):18488.
  • Sardella EM, Mola G, Gristina R, et al. A synergistic effect of reactive oxygen and nitrogen species in plasma activated liquid media triggers astrocyte wound healing. IJMS. 2020;21(9):3343-1–14.
  • Nakamura K, Yoshikawa N, Yoshihara M, et al. Adjusted multiple gases in the plasma flow induce differential antitumor potentials of plasma-activated solutions. Plasma Process Polym. 2020;17(10):1900259-1–14.
  • Kim JH, Lee JM, Ryu KS, et al. Consolidation hyperthermic intraperitoneal chemotherapy using paclitaxel in patients with epithelial ovarian cancer. J Surg Oncol. 2010;101(2):149–155.
  • Abu-Elhasan AM, Abdellah MS, Hamed HO. Safety and efficacy of postoperative continuous intra-peritoneal wash with lactated Ringer′s for minimizing post-myomectomy pelvic adhesions: a pilot clinical trial. Eur J Obstet Gynecol Reprod Biol. 2014;183:78–82.
  • Matsuda Y, Sakurai T, Iino M, et al. Comparative study on the effects of acetated Ringer′s solution, lactated Ringer′s solution, Ringer′s solution, and 5% glucose-acetated Ringer′s solution on canine hemorrhagic shock. J Anesth. 1994;8(3):326–333.
  • Liu Y, Ishikawa K, Miron C, et al. Hydrogen peroxide in lactate solutions irradiated by non-equilibrium atmospheric pressure plasma. Plasma Sources Sci. Technol. 2021;30(4):04LT03-1–7.
  • Ito D, Iwata N, Ishikawa K, et al. Cytotoxicity of plasma-irradiated lactate solution produced under atmospheric airtight conditions and generation of the methyl amino group. Appl. Phys. Express. 2022;15(5):056001.
  • Iseki S, Nakamura K, Hayashi M, et al. Selective killing of ovarian cancer cells through induction of apoptosis by nonequilibrium atmospheric pressure plasma. Appl. Phys. Lett. 2012;100(11):113702–113701 – 4.
  • Schafer HJ. Topics in current chemistry. In Electrochemistry IV., Berlin Heidelberg GmbH: Springer-Verlag 1990. 152:91–151.
  • Bachmann T, Rychlik M. Synthesis of [13C3]-B6 vitamers labelled at three consecutive positions starting from [13C3]-propionic acid. Molecules. 2018;23(9):2117.
  • Maeda I, Takehara M, Togo K, et al. The synthetic intermediate of pyridoxine. I. A novel synthesis of 5-Alkoxy-2-carboxy-4-methyloxazole. BCSJ. 1969;42(5):1435–1437.
  • Tazuya K, Azumi C, Yamada K, et al. Synthesis of [15N]-, [2’-13C]-, [6-13C]- and [5’-2H2]pyridoxines. Vitamins. 1995;69:167–173.
  • Balyakina MV, Gunar VI, Yakovleva NL. Synthesis of pyridoxamine and its 5′-phosphate ester. Kimiko Farm Zh. 1980;14:79–81.
  • Kinugawa T, Enami S, Yabushita A, et al. Conversion of gaseous nitrogen dioxide to nitrate and nitrite on aqueous surfactants. Phys Chem Chem Phys. 2011;13(11):5144–5149.
  • Burke JD, Kerridge DH. Reactions between sodium carboxylic acid salts and molten sodium nitrate and sodium nitrite. J Inorg Nucl Chem. 1975;37(3):751–756.
  • Greene TW, Wuts PGM. Protective groups in organic synthesis., 4th ed.; New York, NY, :Wiley Interscience:, 2007. 223–238.

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