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Utilize este identificador para citar ou criar um link para este item: http://acervodigital.unesp.br/handle/11449/130261
Título: 
Magnetically drivable nano-bio-conjugate mimicking free curcumin redox behavior
Autor(es): 
Instituição: 
  • University of Padova
  • Universidade Estadual Paulista (UNESP)
  • Palacky University
Resumo: 
Curcumin possesses wide-ranging anti-inflammatory and anti-cancer properties and its biological activity can be correlated to its potent antioxidant capacity. Novel maghemite (gamma-Fe3O4) nanoparticles, characterized by a diameter of about 10 nm and possessing peculiar colloidal properties and surface interactions, called Surface Active Maghemite Nanoparticles (SAMN), were superficially modified with curcumin by simple incubation, due to the presence of under-coordinated Fe(III) atoms on nanoparticle surface. The resulting curcumin-modified SAMNs (SAMN@curcumin) were characterized by transmission electron microscopy (TEM), FTIR, Mossbauer, EPR and UV-Vis spectroscopy. The redox properties of bound curcumin were tested by electrochemistry. Finally, SAMN@curcumin was studied in the presence of different electroactive substances, namely hydroquinone, NADH and ferrocyanide, in order to assess its electrochemical behavior. Moreover, SAMN@curcumin was electrochemically tested in the presence of one of the most diffuse reactive oxygen specie, such as hydrogen peroxide, demonstrating its stability. SAMN@curcumin in which curcumin is firmly bound, but still retaining its redox features represents a feasible adduct: a magnetically drivable nano-bio-conjugate mimicking free Curcumin redox behavior. The proposed nanostructured material could be exploited as magnetic drivable curcumin vehicle for biomedical applications.
Data de publicação: 
1-Jan-2014
Citação: 
Nanocon 2013, 5th International Conference. Slezska: Tanger Ltd, p. 654-658, 2014.
Duração: 
654-658
Publicador: 
Tanger Ltd
Palavras-chaves: 
  • Curcumin
  • Maghemite nanoparticles
  • Nanomaterial electrocatalysis
  • Hydrogen peroxide
  • NADH oxidation
Fonte: 
http://konsys-t.tanger.cz/files/proceedings/14/reports/2319.pdf
Endereço permanente: 
Direitos de acesso: 
Acesso restrito
Tipo: 
outro
Fonte completa:
http://repositorio.unesp.br/handle/11449/130261
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