Plasma medicine: an introductory review

Плазменная медицина: вводный обзор
G. E. Morfill, Michael G. Kong, Gmw Gerrit Kroesen, Tetyana Nosenko, Tetsuji Shimizu, Jan van Dijk, J. L. Zimmermann
2009-11-26

atmospheric pressure plasmasplasma medicineplasma sterilizationplasma–cell interactionreactive species
This introductory review on plasma health care is intended to provide the interested reader with a summary of the current status of this emerging field, its scope, and its broad interdisciplinary approach, ranging from plasma physics, chemistry and technology, to microbiology, biochemistry, biophysics, medicine and hygiene. Apart from the basic plasma processes and the restrictions and requirements set by international health standards, the review focuses on plasma interaction with prokaryotic cells (bacteria), eukaryotic cells (mammalian cells), cell membranes, DNA etc. In so doing, some of the unfamiliar terminology—an unavoidable by-product of interdisciplinary research—is covered and explained. Plasma health care may provide a fast and efficient new path for effective hospital (and other public buildings) hygiene—helping to prevent and contain diseases that are continuously gaining ground as resistance of pathogens to antibiotics grows. The delivery of medically active 'substances' at the molecular or ionic level is another exciting topic of research through effects on cell walls (permeabilization), cell excitation (paracrine action) and the introduction of reactive species into cell cytoplasm. Electric fields, charging of surfaces, current flows etc can also affect tissue in a controlled way. The field is young and hopes are high. It is fitting to cover the beginnings in New Journal of Physics , since it is the physics (and non-equilibrium chemistry) of room temperature atmospheric pressure plasmas that have made this development of plasma health care possible.
1
Electric fields, surface charging, and current flows can influence tissue in a controlled manner, although the field remains young and developing.
2
Medically active molecules or ions can be delivered through cell-wall permeabilization, cell excitation, and introduction of reactive species into the cytoplasm.
3
Plasma health care is an emerging interdisciplinary field combining plasma physics, chemistry, technology, microbiology, biochemistry, biophysics, medicine, and hygiene.
4
Plasma-based technologies may provide rapid, efficient approaches to hospital and public-building hygiene as antibiotic resistance increases.
5
Room-temperature atmospheric-pressure plasmas enable plasma health-care applications through their physics and nonequilibrium chemistry.
6
The review examines plasma interactions with bacteria, mammalian cells, cell membranes, and DNA, while explaining terminology arising from interdisciplinary research.

Biomedical applications of cold atmospheric plasmas (plasma medicine)

The biological effects and medical applications of plasma interactions, including pathogen inactivation, cell-membrane permeabilization, cell excitation, reactive-species delivery, and controlled tissue modification

Publication Details
Publication Date
2009-11-26
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Authors
G. E. Morfill
Michael G. Kong
Gmw Gerrit Kroesen
Tetyana Nosenko
Tetsuji Shimizu
Jan van Dijk
J. L. Zimmermann
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