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Anti-bacterially pre-treated polyethylene by discharge plasma

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Języki publikacji
EN
Abstrakty
EN
Polyethylene (PE) is one of the most widely used polymers in many industrial applications, which one of very important is biomedical application. The increase its resistance to infections can be achieved by PE surface treatment by substances containing antibacterial groups such as triclosan and chlorhexidine. This work has examined the impact of selected antibacterial substances immobilized on low density polyethylene via poly acrylic acid grafted on LDPE by low temperature barrier discharge plasma. This polymeric surface treatment led to inhibition Escherichia coli and Staphylococcus aureus adhesion.
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Twórcy
autor
  • Polymer Institute SAS, Dúbravská cesta 9, 845 41 Bratislava, Slovakia
autor
  • Polymer Institute, Slovak Academy of Sciences, Slovakia
autor
  • Institute of Applied Research, Tomas Bata University in Zlín, Czech Republic
  • Department of Furniture and Wood Products, Technical University in Zvolen, Slovakia
  • VIPO, Gen. Svobodu 1069/4, Partizánske, Slovakia
autor
  • Polymer Institute, Slovak Academy of Sciences, Slovakia
autor
  • Polymer Institute, Slovak Academy of Sciences, Slovakia
Bibliografia
  • 1.ASADINEZHAD A, NOVÁK I, LEHOCKÝ M, BÍLEK F, VESEL A, JUNKAR I. et al. Polysaccharides Coatings on Medical-Grade PVC: A Probe into Surface Characteristics and the Extent of Bacterial Adhesion, Molecules, 15 (2010), pp. 1007–1027.
  • 2.ASADINEZHAD A, NOVÁK I, LEHOCKÝ M, SEDLAŘÍK V, VESEL A, JUNKAR I et al. A Physicochemical Approach to Render Antibacterial Surfaces on Plasma-Treated Medical-Grade PVC: Irgasan Coating, Plasma Processes and Polymers, 7 (2010), pp. 504–514.
  • 3.BAZAKA K, JACOB MV, CRAWFORD RJ, IVANOVA EP, Plasma-assisted surface modification of organic biopolymers to prevent bacterial attachment, Acta Biomaterialia, 7 (2011) (2011), pp. 2015–2028.
  • 4.CAREY FA, SUNDBERG RJ, Advanced Organic Chemistry, Part B: Reactions and Synthesis (5th ed.)Springer, New York (2007) (Chapter 1).
  • 5.ČERNÁK M, RÁHEĽ J, KOVÁČIK D, ŠIMOR M, BRABLEC A, SLAVÍČEK P, Generation of thin surface plasma layers for atmospheric-pressure surface treatments, Contributions to Plasma Physics, 44 (2004), pp. 492–495.
  • 6.ČERNÁK M, ČERNÁKOVÁ L’, HUDEC I, KOVÁČIK D, ZAHORANOVÁ A, Diffuse Coplanar Surface Barrier Discharge and its applications for in-line processing of low-added-value materials. European Physical Journal Applied Physics, 47 (2009) 22806-22806-6.
  • 7.ELSABEE MZ, ABDOU ES, NAGY KSA, EWEIS M, Surface modification of polypropylene films by chitosan and chitosan/pectin multilayer, Carbohydrate Polymers, 71 (2008), pp. 187–195.
  • 8.JOHN PI, Plasma Sciences and the Creation of Wealth, Tata McGraw-Hill, New Delhi (2005) (Chapter 3).
  • 9.KENAWY ER, WORLEY SD, BROUGHTON R, The chemistry and applications of antimicrobial polymers: A state-of-the-art review. Biomacromolecules, 8 (2007), pp. 1359–1384.
Typ dokumentu
Bibliografia
Identyfikator YADDA
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