Mechanisms of Plasma Medicine: Coupling Plasma Physics, Biochemistry, and Biology

作者: David B. Graves

DOI: 10.1109/TRPMS.2017.2710880

关键词:

摘要: Low temperature plasma (LTP) has emerged in the last decade as a novel and promising therapy for wound skin decontamination, promotion of healing, cancer remission, control wound-resident multidrug resistant bacteria, dental cosmetic applications, among others. Progress been rapid developing clinically useful devices many studies are underway worldwide. Mechanisms therapeutics beginning to be understood but much remains explored. This review focuses on mechanisms coupling physics chemistry LTPs medically relevant biochemistry biology.

参考文章(90)
Y. Yang, P.K. Qi, Z.L. Yang, N. Huang, Nitric oxide based strategies for applications of biomedical devices Biosurface and Biotribology. ,vol. 1, pp. 177- 201 ,(2015) , 10.1016/J.BSBT.2015.08.003
Jon O. Lundberg, Eddie Weitzberg, Mark T. Gladwin, The nitrate–nitrite–nitric oxide pathway in physiology and therapeutics Nature Reviews Drug Discovery. ,vol. 7, pp. 156- 167 ,(2008) , 10.1038/NRD2466
Matthias Zenker, Argon plasma coagulation GMS Krankenhaushygiene Interdisziplinar. ,vol. 3, ,(2008)
David B. Graves, Reactive Species from Cold Atmospheric Plasma: Implications for Cancer Therapy Plasma Processes and Polymers. ,vol. 11, pp. 1120- 1127 ,(2014) , 10.1002/PPAP.201400068
Abraham Lin, Natalie Chernets, Justine Han, Yordano Alicea, Danil Dobrynin, Gregory Fridman, Theresa A. Freeman, Alexander Fridman, Vandana Miller, Non-Equilibrium Dielectric Barrier Discharge Treatment of Mesenchymal Stem Cells: Charges and Reactive Oxygen Species Play the Major Role in Cell Death Plasma Processes and Polymers. ,vol. 12, pp. 1117- 1127 ,(2015) , 10.1002/PPAP.201400232
Kristian Wende, Paul Williams, Joe Dalluge, Wouter Van Gaens, Hamada Aboubakr, John Bischof, Thomas von Woedtke, Sagar M. Goyal, Klaus-Dieter Weltmann, Annemie Bogaerts, Kai Masur, Peter J. Bruggeman, Identification of the biologically active liquid chemistry induced by a nonthermal atmospheric pressure plasma jet. Biointerphases. ,vol. 10, pp. 029518- ,(2015) , 10.1116/1.4919710
G. Isbary, J. Heinlin, T. Shimizu, J.L. Zimmermann, G. Morfill, H.-U. Schmidt, R. Monetti, B. Steffes, W. Bunk, Y. Li, T. Klaempfl, S. Karrer, M. Landthaler, W. Stolz, Successful and safe use of 2 min cold atmospheric argon plasma in chronic wounds: results of a randomized controlled trial. British Journal of Dermatology. ,vol. 167, pp. 404- 410 ,(2012) , 10.1111/J.1365-2133.2012.10923.X
Matthew J. Pavlovich, Yukinori Sakiyama, Douglas S. Clark, David B. Graves, Antimicrobial Synergy Between Ambient‐Gas Plasma and UVA Treatment of Aqueous Solution Plasma Processes and Polymers. ,vol. 10, pp. 1051- 1060 ,(2013) , 10.1002/PPAP.201300065
E. Robert, T. Darny, S. Dozias, S. Iseni, J. M. Pouvesle, New insights on the propagation of pulsed atmospheric plasma streams: From single jet to multi jet arrays Physics of Plasmas. ,vol. 22, pp. 122007- ,(2015) , 10.1063/1.4934655
Chiara Gorrini, Isaac S. Harris, Tak W. Mak, Modulation of oxidative stress as an anticancer strategy. Nature Reviews Drug Discovery. ,vol. 12, pp. 931- 947 ,(2013) , 10.1038/NRD4002