Graphene‐Based Antimicrobial Biomedical Surfaces

Антимикробные биомедицинские поверхности на основе графена
Ivan Mijakovic̀, Roland Kádár, Karolina Gąska, Santosh Pandit
2020-11-27

antimicrobial activityantimicrobial biomedical surfacesgraphene derivativesgraphene oxidepolymer nanocomposite coatings
Biomedical application of graphene derivatives have been intensively studied in last decade. With the exceptional structural, thermal, electrical, and mechanical properties, these materials have attracted immense attention of biomedical scientists to utilize graphene derivatives in biomedical devices to improve their performance or to achieve desired functions. Surfaces of graphene derivatives including graphite, graphene, graphene oxide and reduce graphene oxide have been demonstrated to pave an excellent platform for antimicrobial behavior, enhanced biocompatibility, tissue engineering, biosensors and drug delivery. This review focuses on the recent advancement in the research of biomedical devices with the coatings or highly structured polymer nanocomposite surfaces of graphene derivatives for antimicrobial activity and sterile surfaces comprising an entirely new class of antibacterial materials. Overall, we aim to highlight on the potential of these materials, current understanding and knowledge gap in the antimicrobial behavior and biocompatibility to be utilized of their coatings to prevent the cross infections.
1
Graphene derivatives—including graphite, graphene, graphene oxide, and reduced graphene oxide—provide platforms for antimicrobial biomedical surfaces.
2
Graphene-based coatings and structured polymer nanocomposite surfaces can enhance biomedical devices by combining antimicrobial activity with biocompatibility and other desired functions.
3
The review identifies remaining knowledge gaps concerning the mechanisms of antimicrobial behavior and the biocompatibility of graphene-derived coatings.
4
These materials are being developed for sterile surfaces intended to reduce cross-infections in biomedical applications.

Graphene-derivative coatings and highly structured polymer nanocomposite surfaces on biomedical devices

Antimicrobial activity, sterile-surface performance, and biocompatibility for preventing cross-infections

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2020-11-27
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Ivan Mijakovic̀
Roland Kádár
Karolina Gąska
Santosh Pandit
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