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Using plasma-mediated covalent functionalization of rhamnolipids on polydimethylsiloxane towards the antimicrobial improvement of catheter surfaces

datacite.subject.fosEngenharia e Tecnologia::Biotecnologia Industrial
datacite.subject.sdg04:Educação de Qualidade
datacite.subject.sdg09:Indústria, Inovação e Infraestruturas
dc.contributor.authorDardouri, Maïssa
dc.contributor.authorBettencourt, Ana
dc.contributor.authorMartin, Victor
dc.contributor.authorCarvalho, Filomena A.
dc.contributor.authorSantos, Catarina
dc.date.accessioned2026-09-07T08:56:23Z
dc.date.available2026-09-07T08:56:23Z
dc.date.issued2022
dc.description.abstractControlling bacterial biofilm formation on silicone-based bloodstream catheters is of great concern to prevent relatedinfections. Inthis study, rhamnolipids(RLs),glycolipid biosurfactants,specifically a RLs mixture andthepurifieddi-RL (RhaRhaC10:0C10:0) were covalently bonded to silicone with the intention of reaching long-lasting antibiofilm surfaces. RLs mixture and di-RL wereidentified by an UHPLC-MSmethodthat also allowed the confirmation of compound isolation by automated flash chromatography. Silicone surfaces underwent air-plasma treatment, inducing reactive oxygenradicals able to promote theRLs grafting that was confirmed by contactangle,FTIR-ATR andAFMmeasurements. The antibiofilm activity towards different Gram positive strains was evaluated by colony forming units (CFU) count and confocal laser microscopy. In addition, protein adsorption and biocompatibility were also investigated. RLs were successfully grafted onto silicone and RLs mixture and RhaRhaC10C10:0 functionalized specimens reduced the biofilm formation over 2.3 log units against methicillin sensitive Staphylococcus aureus. Additionally, a decrease of 1 log unit was observed against methicillin resistant S. aureus and S. epidermidis. Functionalized samples showed cytocompatibility towards human dermal fibroblasts, hemocompatibility and no vascular irritation potential. The results mentioned above revealed a synergy between the antimicrobial and the anti-adhesive properties of RLs, making these compounds good candidates for the improvement of the medical devices antibiofilm properties.eng
dc.identifier.citationMaïssa Dardouri et al. (2022).Using plasma-mediated covalent functionalization of rhamnolipids on polydimethylsiloxane towards the antimicrobial improvement of catheter surfaces, Biomaterials Advances, Volume 134, 2022, 112563, ISSN 2772-9508, https://doi.org/10.1016/j.msec.2021.112563
dc.identifier.doihttps://doi.org/10.1016/j.msec.2021.112563
dc.identifier.issn2772-9508
dc.identifier.urihttp://hdl.handle.net/10400.21/23043
dc.language.isoeng
dc.peerreviewedn/a
dc.publisherElsevier
dc.relation.hasversionhttps://www.sciencedirect.com/science/article/pii/S0928493121007037?via%3Dihub
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/4.0/
dc.subjectSilicone
dc.subjectGlycolipid biosurfactants
dc.subjectRhamnolipids
dc.subjectMedical devices
dc.subjectAntibiofilm
dc.subjectStaphylococcus aureus
dc.subjectStaphylococcus epidermidis
dc.titleUsing plasma-mediated covalent functionalization of rhamnolipids on polydimethylsiloxane towards the antimicrobial improvement of catheter surfacespor
dc.typeresearch report
dspace.entity.typePublication
oaire.citation.titleBiomaterials Advances
oaire.citation.volume134
oaire.versionhttp://purl.org/coar/version/c_970fb48d4fbd8a85

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