Inhibition of microbial growth on chitosan membranes by plasma treatment. 2013

Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
Postgraduate Program in Materials Science and Engineering, Federal University of Rio Grande do Norte, Natal, Brazil.

The use of polymeric medical devices has stimulated the development of new sterilization methods. The traditional techniques rely on ethylene oxide, but there are many questions concerning the carcinogenic properties of the ethylene oxide residues adsorbed on the materials after processing. Another common technique is the gamma irradiation process, but it is costly, its safe operation requires an isolated site, and it also affects the bulk properties of the polymers. The use of gas plasma is an elegant alternative sterilization technique. The plasma promotes efficient inactivation of the microorganisms, minimizes damage to the materials, and presents very little danger for personnel and the environment. In this study we used plasma for microbial inhibition of chitosan membranes. The membranes were treated with oxygen, methane, or argon plasma for different time periods (15, 30, 45, or 60 min). For inhibition of microbial growth with oxygen plasma, the time needed was 60 min. For the methane plasma, samples were successfully treated after 30, 45, and 60 min. For argon plasma, all treatment periods were effective.

UI MeSH Term Description Entries
D008567 Membranes, Artificial Artificially produced membranes, such as semipermeable membranes used in artificial kidney dialysis (RENAL DIALYSIS), monomolecular and bimolecular membranes used as models to simulate biological CELL MEMBRANES. These membranes are also used in the process of GUIDED TISSUE REGENERATION. Artificial Membranes,Artificial Membrane,Membrane, Artificial
D004867 Equipment Design Methods and patterns of fabricating machines and related hardware. Design, Equipment,Device Design,Medical Device Design,Design, Medical Device,Designs, Medical Device,Device Design, Medical,Device Designs, Medical,Medical Device Designs,Design, Device,Designs, Device,Designs, Equipment,Device Designs,Equipment Designs
D013242 Sterilization The destroying of all forms of life, especially microorganisms, by heat, chemical, or other means.
D048271 Chitosan Deacetylated CHITIN, a linear polysaccharide of deacetylated beta-1,4-D-glucosamine. It is used in HYDROGEL and to treat WOUNDS. Poliglusam
D058626 Plasma Gases Ionized gases, consisting of free electrons and ionized atoms or molecules which collectively behave differently than gas, solid, or liquid. Plasma gases are used in biomedical fields in surface modification; biological decontamination; dentistry (e.g., PLASMA ARC DENTAL CURING LIGHTS); and in other treatments (e.g., ARGON PLASMA COAGULATION). Cold Plasma,Non-Thermal Atmospheric Pressure Plasma,Thermal Plasma,Gases, Plasma,Non Thermal Atmospheric Pressure Plasma,Plasma, Cold,Plasma, Thermal

Related Publications

Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
July 2010, International journal of biological macromolecules,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
January 1958, Comptes rendus des seances de la Societe de biologie et de ses filiales,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
October 2008, Antimicrobial agents and chemotherapy,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
January 2007, Ancient science of life,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
November 2020, Membranes,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
November 1975, The Journal of biological chemistry,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
August 1978, Biochimica et biophysica acta,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
August 1991, Biotechnology and bioengineering,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
August 1946, The Journal of biological chemistry,
Marina de Oliveira Cardoso Macêdo, and Haroldo Reis Alves de Macêdo, and Dayanne Lopes Gomes, and Natália de Freitas Daudt, and Hugo Alexandre Oliveira Rocha, and Clodomiro Alves
July 2011, Journal of biomaterials applications,
Copied contents to your clipboard!