Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/74315

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dc.contributor.authorMouro, Cláudiapor
dc.contributor.authorGomes, Ana P.por
dc.contributor.authorAhonen, Merjapor
dc.contributor.authorFangueiro, Raúlpor
dc.contributor.authorGouveia, Isabel C.por
dc.date.accessioned2021-10-12T09:01:24Z-
dc.date.available2021-10-12T09:01:24Z-
dc.date.issued2021-07-09-
dc.identifier.citationMouro, C.; Gomes, A.P.; Ahonen, M.; Fangueiro, R.; Gouveia, I.C. Chelidoniummajus L. Incorporated Emulsion Electrospun PCL/PVA_PEC Nanofibrous Meshes for Antibacterial Wound Dressing Applications. Nanomaterials 2021, 11, 1785. https://doi.org/10.3390/nano11071785por
dc.identifier.urihttps://hdl.handle.net/1822/74315-
dc.description.abstractPresently, there are many different types of wound dressings available on the market. Nonetheless, there is still a great interest to improve the performance and efficiency of these materials. Concerning that, new dressing materials containing natural products, such as medicinal plants that protect the wound from infections but also enhance skin regeneration have been or are being developed. Herein, we used for the first time a needleless emulsion electrospinning technique for incorporating <i>Chelidonium</i><i>majus</i> L. (<i>C. majus</i>), a medicinal plant widely known for its traditional therapeutic properties, in Polycaprolactone (PCL)/Polyvinyl Alcohol (PVA)_Pectin (PEC) nanofibrous meshes. Moreover, the potential use of these electrospun nanofibers as a carrier for <i>C. majus</i> was also explored. The results obtained revealed that the produced PCL/PVA_PEC nanofibrous meshes containing <i>C. majus</i> extract displayed morphological characteristics similar to the natural extracellular matrix of the skin (ECM). Furthermore, the produced meshes showed beneficial properties to support the healing process. Additionally, the <i>C. majus</i>-loaded PCL/PVA_PEC nanofibrous meshes inhibited <i>Staphylococcus aureus</i> (<i>S. aureus</i>) and <i>Pseudomonas aeruginosa</i> (<i>P. aeruginosa</i>) growth, reaching a 3.82 Log reduction, and showed to be useful for controlled release, without causing any cytotoxic effect on the normal human dermal fibroblasts (NHDF) cells. Hence, these findings suggest the promising suitability of this novel wound dressing material for prevention and treatment of bacterial wound infections.por
dc.description.sponsorshipThe authors are also grateful for the funding support given by FibEnTech Research Unit (Project UIDB/00195/2020). Cláudia Mouro acknowledges a PhD fellowship from the Foundation for Science and Technology (FCT) (PD/BD/113550/2015).por
dc.language.isoengpor
dc.publisherMultidisciplinary Digital Publishing Institute (MDPI)por
dc.relationUIDB/00195/2020por
dc.relationPD/BD/113550/2015por
dc.rightsopenAccesspor
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/por
dc.subjectEmulsion electrospinningpor
dc.subjectNeedleless electrospinningpor
dc.subjectNatural compoundspor
dc.subjectC. majuspor
dc.subjectAntimicrobial wound dressingpor
dc.subjectCpor
dc.subjectmajuspor
dc.titleChelidonium majus L. incorporated emulsion electrospun PCL/PVA_PEC nanofibrous meshes for antibacterial wound dressing applicationspor
dc.typearticlepor
dc.peerreviewedyespor
dc.relation.publisherversionhttps://www.mdpi.com/2079-4991/11/7/1785por
oaire.citationStartPage1por
oaire.citationEndPage17por
oaire.citationIssue7por
oaire.citationVolume11por
dc.date.updated2021-07-23T13:27:11Z-
dc.identifier.eissn2079-4991-
dc.identifier.doi10.3390/nano11071785por
dc.subject.wosScience & Technologypor
sdum.journalNanomaterialspor
oaire.versionVoRpor
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