Corona protein impacts on alternating current biosusceptometry signal and circulation times of differently coated MnFe2O4nanoparticles

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Autor(es): dc.contributorUniversidade Estadual Paulista (UNESP)-
Autor(es): dc.contributorCNRS-
Autor(es): dc.contributorUniversidade Federal de Goiás (UFG)-
Autor(es): dc.creatorProspero, Andre Gonçalves-
Autor(es): dc.creatorBuranello, Lais Pereira-
Autor(es): dc.creatorFernandes, Carlos Ah-
Autor(es): dc.creatorDos Santos, Lucilene Delazari-
Autor(es): dc.creatorSoares, Guilherme-
Autor(es): dc.creatorC Rossini, Bruno-
Autor(es): dc.creatorZufelato, Nícholas-
Autor(es): dc.creatorBakuzis, Andris Figueiroa-
Autor(es): dc.creatorDe Mattos Fontes, Marcos R-
Autor(es): dc.creatorDe Arruda Miranda, José R-
Data de aceite: dc.date.accessioned2025-08-21T15:39:23Z-
Data de disponibilização: dc.date.available2025-08-21T15:39:23Z-
Data de envio: dc.date.issued2022-04-29-
Data de envio: dc.date.issued2022-04-29-
Data de envio: dc.date.issued2021-10-01-
Fonte completa do material: dc.identifierhttp://dx.doi.org/10.2217/nnm-2021-0195-
Fonte completa do material: dc.identifierhttp://hdl.handle.net/11449/229666-
Fonte: dc.identifier.urihttp://educapes.capes.gov.br/handle/11449/229666-
Descrição: dc.descriptionBackground: We evaluated the impacts of corona protein (CP) formation on the alternating current biosusceptometry (ACB) signal intensity and in vivo circulation times of three differently coated magnetic nanoparticles (MNP): bare, citrate-coated and bovine serum albumin-coated MNPs. Methods: We employed the ACB system, gel electrophoresis and mass spectrometry analysis. Results: Higher CP formation led to a greater reduction in the in vitro ACB signal intensity and circulation time. We found fewer proteins forming the CP for the bovine serum albumin-coated MNPs, which presented the highest circulation time in vivo among the MNPs studied. Conclusion: These data showed better biocompatibility, stability and magnetic signal uniformity in biological media for bovine serum albumin-coated MNPs than for citrate-coated MNPs and bare MNPs.-
Descrição: dc.descriptionDepartment of Biophysics and Pharmacology São Paulo State University, São Paulo-
Descrição: dc.descriptionMuseum National d'Histoire Naturelle Institut de Minéralogie Physique des Matériaux et Cosmochimie IMPMC Sorbonne Université UMR 7590 CNRS-
Descrição: dc.descriptionGraduate Program in Tropical Diseases Botucatu Medical School (FMB) São Paulo State University (UNESP), São Paulo-
Descrição: dc.descriptionBiotechnology Institute São Paulo State University, São Paulo-
Descrição: dc.descriptionInstitute of Physics and CNanoMed Federal University of Goiás-
Descrição: dc.descriptionDepartment of Biophysics and Pharmacology São Paulo State University, São Paulo-
Descrição: dc.descriptionGraduate Program in Tropical Diseases Botucatu Medical School (FMB) São Paulo State University (UNESP), São Paulo-
Descrição: dc.descriptionBiotechnology Institute São Paulo State University, São Paulo-
Formato: dc.format2189-2206-
Idioma: dc.languageen-
Relação: dc.relationNanomedicine-
???dc.source???: dc.sourceScopus-
Palavras-chave: dc.subjectalternating current biosusceptometry-
Palavras-chave: dc.subjectbiomedical engineering-
Palavras-chave: dc.subjectcorona protein-
Palavras-chave: dc.subjectmagnetic nanoparticles-
Palavras-chave: dc.subjectmass spectrometry-
Título: dc.titleCorona protein impacts on alternating current biosusceptometry signal and circulation times of differently coated MnFe2O4nanoparticles-
Tipo de arquivo: dc.typelivro digital-
Aparece nas coleções:Repositório Institucional - Unesp

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