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dc.contributor.authorAssis, Marcelo de
dc.contributor.authorSoares da Silva, Jussara
dc.contributor.authorOttaiano Gonçalves, Mariana
dc.contributor.authorde Almeida Rodolpho, Joice Margareth
dc.contributor.authorDias de Lima Fragelli, Bruna
dc.contributor.authorCorte, Ana Beatriz Pereira
dc.contributor.authorRibeiro , Lara Kelly
dc.contributor.authorDaldin Teodoro, Marcio
dc.contributor.authorde Freitas Anibal, Fernanda
dc.contributor.authorde Sousa, Cristina Paiva
dc.contributor.authorOliveira, Osvaldo N.
dc.contributor.authorAndres, Juan
dc.contributor.authorLongo, Elson
dc.date.accessioned2022-10-05T07:51:58Z
dc.date.available2022-10-05T07:51:58Z
dc.date.issued2022-10
dc.identifier.citationAssis M, da Silva JS, Gonçalves MO, de Almeida Rodolpho JM, de Lima Fragelli BD, Corte ABP, Ribeiro LK, Teodoro MD, de Freitas Anibal F, de Sousa CP, Oliveira ON Jr, Andrés J, Longo E. Bactericidal activity of Ag4V2O7/β-AgVO3 heterostructures against antibiotic-resistant Klebsiella pneumoniae. Biomater Adv., 141 (2022). doi: 10.1016/j.bioadv.2022.213097ca_CA
dc.identifier.issn2772-9508
dc.identifier.urihttp://hdl.handle.net/10234/200173
dc.description.abstractAlthough Ag-based materials are efficient against antibiotic-resistant bacteria, their high toxicity to living organisms represents a major challenge for obtaining useful products. In this work, we report the bactericidal activity of Ag4V2O7/β-AgVO3 heterostructures, which proved to be effective against Klebsiella pneumoniae (ATCC 1706, a standard strain; A54970, a multidrug-resistant carbapenemase (KPC)-producing strain; A34057, a multidrug-resistant strain capable of producing extended spectrum beta-lactamases (ESBL); and a community-isolated strain, A58240) at minimum inhibitory concentrations (MIC) as low as 62.5 μg/mL. This activity is higher than that reported for the individual silver vanadates (Ag4V2O7 or β-AgVO3) owing to the synergistic interactions between both semiconductors. However, the most efficient heterostructure was found to be toxic to mouse 3 T3 fibroblasts and to L. sativa and C. sativus seeds, as indicated by MTT ((4,5 - dimethylthiazol -2yl) 2,5 -diphenylbromide), neutral red assays and germination index measurements. The antimicrobial, phytotoxic and cytotoxic activities were all associated with an efficient generation of reactive oxygen species (ROS) in the heterostructure, especially radical dotOH and radical dotO2− radicals. The ROS production by Ag4V2O7/β-AgVO3 heterostructures was measured through photodegradation studies with Rhodamine B. While the bactericidal activity of the heterostructures is promising, especially when compared to Ag-based materials, their use in practical applications will require encapsulation either to avoid leaching or to mitigate their toxicity to humans, animals and plants.ca_CA
dc.description.sponsorShipFunding for open access charge: CRUE-Universitat Jaume I
dc.format.extent12 p.ca_CA
dc.format.mimetypeapplication/pdfca_CA
dc.language.isoengca_CA
dc.publisherElsevierca_CA
dc.relationAproximaciones racionales para el diseño de nuevos materiales mediante la combinación de teoría y experimentoca_CA
dc.relation.isPartOfBiomaterials Advances, 2022, vol. 141ca_CA
dc.rightsAttribution 4.0 Internacional
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectAg4V2O7ca_CA
dc.subjectβ-AgVO3ca_CA
dc.subjectsemiconductor heterostructuresca_CA
dc.subjectantimicrobial activityca_CA
dc.subjectcytotoxicityca_CA
dc.subjectphytotoxicityca_CA
dc.titleBactericidal activity of Ag4V2O7/β-AgVO3 heterostructures against antibiotic-resistant Klebsiella pneumoniaeca_CA
dc.typeinfo:eu-repo/semantics/articleca_CA
dc.identifier.doihttps://doi.org/10.1016/j.bioadv.2022.213097
dc.rights.accessRightsinfo:eu-repo/semantics/openAccessca_CA
dc.relation.publisherVersionhttps://www.sciencedirect.com/science/article/pii/S2772950822003740ca_CA
dc.description.sponsorshipJ.A. acknowledges the Universitat Jaume I (project UJI-B2019-30) and the Ministerio de Ciencia, Innovación y Universidades (Spain) (project PGC2018094417-B-I00) for financially supporting this research. M.A. was supported by the Margarita Salas postdoctoral contract MGS/2021/21 (UP2021-021) financed by the European Union-NextGenerationEU. F.F.A. and J.M.A.R. were sponsored by PETROBRAS (Project No. 2017/00010-7). The authors would also like to thank the financial aid from the Fundação de Amparo à Pesquisa do Estado de São Paulo – FAPESP (2013/07296-2, 2016/13423-5, 2018/22214-6), the Financiadora de Estudos e Projetos – FINEP, the Coordenação de Aperfeiçoamento de Pessoal de Nível Superior – CAPES (Financial Code 001) and the Conselho Nacional de Desenvolvimento Científico e Tecnológico – CNPq (Grant no.141964/2018-9).
project.funder.identifierhttp://dx.doi.org/10.13039/501100011033ca_CA
project.funder.nameUniversitat Jaume Ica_CA
project.funder.nameMinisterio de Ciencia, Innovación y Universidadesca_CA
project.funder.nameEuropean Union-Next Generationca_CA
project.funder.namePETROBRASca_CA
project.funder.nameFundação de Amparo à Pesquisa do Estado de São Paulo – FAPESPca_CA
project.funder.nameConselho Nacional de Desenvolvimento Científico e Tecnológico – CNPqca_CA
oaire.awardNumberUJI-B2019-30ca_CA
oaire.awardNumberMICIU/ICTI2017-2020/ PGC2018-094417-B-I00ca_CA
oaire.awardNumberUP2021-021ca_CA
oaire.awardNumber2017/00010-7ca_CA
oaire.awardNumber2013/07296-2ca_CA
oaire.awardNumber2016/13423-5ca_CA
oaire.awardNumber2018/22214-6ca_CA
oaire.awardNumber141964/2018-9ca_CA


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Attribution 4.0 Internacional
Excepto si se señala otra cosa, la licencia del ítem se describe como: Attribution 4.0 Internacional