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Naslov:Environmentally friendly sterilization and enhancement of cellulose using RF plasma process
Avtorji:ID Eleršič Filipič, Kristina, Institut "Jožef Stefan" (Avtor)
ID Gorjanc, Marija (Avtor)
ID Junkar, Ita, Institut "Jožef Stefan" (Avtor)
Datoteke:URL URL - Izvorni URL, za dostop obiščite https://www.jtsp.eu/jtsp/article/view/43
 
.pdf PDF - Predstavitvena datoteka, prenos (465,49 KB)
MD5: 2931A4BE1C61FF151E3AE9C5685C2FCF
 
Jezik:Angleški jezik
Tipologija:1.01 - Izvirni znanstveni članek
Organizacija:Logo IJS - Institut Jožef Stefan
Povzetek:Cellulose-based materials are widely used in wound care due to their biocompatibility, biodegradability, and fluid-handling capacity. While chemical functionalisation is commonly employed to impart antimicrobial activity, the role of physical surface modification in regulating bacterial adhesion remains less explored. In this study, low-pressure radiofrequency (RF) oxygen plasma was used as a dry and environmentally friendly approach to modify the surface of medical-grade cellulose without altering its bulk properties. Plasma treatment was performed in both glow and afterglow regions, enabling controlled exposure to reactive oxygen species. Surface modification resulted in pronounced nanoscale roughening and fissured topography of cellulose microfibers, as observed by scanning electron microscopy (SEM) and atomic force microscopy (AFM). Plasma-induced oxidation of the cellulose surface, characterised previously by X-ray photoelectron spectroscopy (XPS), accompanied the morphological changes. Bacterial adhesion experiments using a non-pathogenic Escherichia coli model strain revealed significantly enhanced bacterial attachment on plasma-treated cellulose compared to untreated controls, with the strongest effect observed for glow-region treatments. The increased adhesion is attributed to the combined effects of surface roughness amplification and plasma-induced chemical functionalisation, which together increase the effective contact area between bacteria and the substrate. Rather than aiming to inhibit bacterial attachment, this work explores a physico-mechanical design concept in which surface topography is intentionally modified to favour bacterial binding to the dressing material itself. The observed behaviour is interpreted qualitatively using concepts from membrane mechanics as a phenomenological framework, without invoking a quantitative predictive model. While the present study does not assess net bacterial load reduction in wound environments, it establishes a materials-level basis for a “capture-and-remove” hypothesis, whereby preferential bacterial adhesion to a removable dressing could contribute to microbial load management during dressing changes. These findings highlight the potential of plasma surface engineering as a versatile tool for tailoring the biointerface of cellulose-based biomedical materials.
Ključne besede:oxygen plasma
Status publikacije:Objavljeno
Verzija publikacije:Objavljena publikacija
Poslano v recenzijo:06.09.2025
Datum sprejetja članka:27.12.2025
Datum objave:31.12.2025
Založnik:Gruenwald Laboratories
Leto izida:2025
Št. strani:str. 275-282
Številčenje:Vol. 6, iss. 1
PID:20.500.12556/DiRROS-32121 Novo okno
UDK:60
ISSN pri članku:2616-647X
DOI:10.31281/87jpcc23 Novo okno
COBISS.SI-ID:287450883 Novo okno
Avtorske pravice:Copyright (c) 2025 Kristina Eleršič Filipič, Marija Gorjanc, Ita Junkar
Opomba:Nasl. z nasl. zaslona; Opis vira z dne 11. 8. 2026;
Datum objave v DiRROS:27.08.2026
Število ogledov:38
Število prenosov:18
Metapodatki:XML DC-XML DC-RDF
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Gradivo je del revije

Naslov:Journal of technological and space plasmas
Skrajšan naslov:J. technol. space plasmas
Založnik:Gruenwald Laboratories
ISSN:2616-647X
COBISS.SI-ID:48095491 Novo okno

Gradivo je financirano iz projekta

Financer:ARIS - Javna agencija za znanstvenoraziskovalno in inovacijsko dejavnost Republike Slovenije
Številka projekta:P2-0082-2022
Naslov:Tankoplastne strukture in plazemsko inženirstvo površin

Financer:Drugi - Drug financer ali več financerjev
Številka projekta:RSF005
Naslov:Environmentally Friendly Fabrication of Wound Dressings for chronic wounds
Akronim:SugarHeal

Licence

Licenca:CC BY 4.0, Creative Commons Priznanje avtorstva 4.0 Mednarodna
Povezava:http://creativecommons.org/licenses/by/4.0/deed.sl
Opis:To je standardna licenca Creative Commons, ki daje uporabnikom največ možnosti za nadaljnjo uporabo dela, pri čemer morajo navesti avtorja.
Začetek licenciranja:31.12.2025
Vezano na:VoR

Sekundarni jezik

Jezik:Slovenski jezik
Ključne besede:kisikova plazma


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