Defeating antibiotic-resistant bacteria with protein-resistant polyGGE film

Author:

Zhou Shuo12,Di Luca Mariagrazia3,Xu Xun1,Ma Nan14,Jung Friedrich1,Lendlein Andreas124

Affiliation:

1. Institute of Active Polymers and Berlin-Brandenburg Centre for Regenerative Therapies, Helmholtz-Zentrum Hereon, Teltow, Germany

2. Institute of Chemistry, University of Potsdam, Potsdam, Germany

3. Berlin-Brandenburg Centre for Regenerative Therapies, Berlin, Germany

4. Institute of Chemistry and Biochemistry, Freie Universität Berlin, Berlin, Germany

Abstract

Biofouling on medical device surfaces, which is initiated by protein adsorption and adhesion of microbes especially the antibiotic-resistant bacteria, attracts global attention for centuries due to its enduring challenges in healthcare. Here, the antifouling effect of hydrophilic poly(glycerol glycidyl ether) (polyGGE) film is explored in comparison to hemocompatible and protein-resistant control polymers. The chemical and thermomechanical stability of polyGGE in hydrated conditions at body temperature was achieved via adjusting UV curing and KOH quenching time. The polyGGE surface is inert to the plasma protein adsorption and interfered the metabolism conditions, biofilm formation and growth of both Gram negative (Gram–) and antibiotic-resistant Gram positive (Gram+) bacteria. These results indicate the potential application of polyGGE for combating the risk of hospital-acquired infections and preventing drug-resistant superbug spreading.

Publisher

IOS Press

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Hematology,Physiology

Reference38 articles.

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