Please use this identifier to cite or link to this item: https://hdl.handle.net/10216/103571
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dc.creatorJ. Barros
dc.creatorL. Grenho
dc.creatorC. M. Manuel
dc.creatorC. Ferreira
dc.creatorL. Melo
dc.creatorO. C. Nunes
dc.creatorF. J. Monteiro
dc.creatorFerraz, MP
dc.date.accessioned2022-09-07T23:18:52Z-
dc.date.available2022-09-07T23:18:52Z-
dc.date.issued2014
dc.identifier.issn0885-3282
dc.identifier.othersigarra:104874
dc.identifier.urihttps://hdl.handle.net/10216/103571-
dc.description.abstractNanohydroxyapatite (nanoHA), due to its chemical properties, has appeared as an exceptionally promising bioceramic to be used as bone regeneration material. Staphylococcus epidermidis have emerged as major nosocomial pathogens associated with infections of implanted medical devices. In this work, the purpose was to study the influence of the nanoHA surface characteristics on S. epidermidis RP62A biofilm formation. Therefore, two different initial inoculum concentrations (C-i) were used in order to check if these would affect the biofilm formed on the nanoHA surfaces. Biofilm formation was followed by the enumeration of cultivable cells and by scanning electron microscopy. Surface topography, contact angle, total surface area and porosimetry of the biomaterials were studied and correlated with the biofilm data. The surface of nanoHA sintered at 830celcius (nanoHA830) showed to be more resistant to S. epidermidis attachment and accumulation than that of nanoHA sintered at 1000celcius (nanoHA1000). The biofilm formed on nanoHA830 presented differences in terms of structure, surface coverage and EPS production when compared to the one formed on nanoHA1000 surface. It was observed that topography and surface area of nanoHA surfaces had influence on the bacterial attachment and accumulation. C-i influenced bacteria attachment and accumulation on nanoHA surfaces over time. The choice of the initial inoculum concentration was relevant proving to have an effect on the extent of adherence thus being a critical point for human health if these materials are used in implantable devices. This study showed that the initial inoculum concentration and surface material properties determine the rate of microbial attachment to substrata and consequently are related to biofilm-associated infections in biomaterials.
dc.language.isoeng
dc.relationinfo:eu-repo/grantAgreement/FCT - Fundação para a Ciência e a Tecnologia/Projectos de I&DT em Todos os Domínios Científicos/PTDC/SAU-BMA/111233/2009/NaNOBiofilm - Superfícies de nanohidroxiapatite com caracteristicas antiobacterianas para prevenção de infecção óssea associada a biofilmes/NaNOBiofilm
dc.rightsrestrictedAccess
dc.subjectBiotecnologia ambiental
dc.subjectEnvironmental biotechnology
dc.titleInfluence of nanohydroxyapatite surface properties on Staphylococcus epidermidis biofilm formation
dc.typeArtigo em Revista Científica Internacional
dc.contributor.uportoFaculdade de Engenharia
dc.identifier.doi10.1177/0885328213507300
dc.identifier.authenticusP-009-A1Y
dc.subject.fosCiências da engenharia e tecnologias::Biotecnologia ambiental
dc.subject.fosEngineering and technology::Environmental biotechnology
Appears in Collections:FEUP - Artigo em Revista Científica Internacional

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