INVESTIGADORES
ALVAREZ Mariana
artículos
Título:
Hybrid nanomaterials based on gum Arabic and magnetite for hyperthermia treatments
Autor/es:
MARÍA FERNANDA HORST; DIEGO CORAL; MARCELA FERNÁNDEZ VAN RAAP; MARIANA ALVAREZ; VERÓNICA LASSALLE
Revista:
MATERIALS SCIENCE & ENGINEERING. C, BIOMIMETIC MATERIALS, SENSORS AND SYSTEMS
Editorial:
ELSEVIER SCIENCE BV
Referencias:
Lugar: Amsterdam; Año: 2017 vol. 74 p. 443 - 450
ISSN:
0928-4931
Resumen:
In this study, one?step co-precipitation method was conveniently adapted to obtain novel nanomaterials based on GumArabic and magnetite. Two synthesis procedureswere evaluated: one employing the solid biopolymer in the co-precipitation media; a second using an aqueous solution of the polysaccharide. An exhaustive characterization of both formulations was performed using several specific techniques. The obtained data confirmed the successful incorporation of the gum Arabic on the magnetic core. Values of hydrodynamic diameters, measuredby dynamic light scattering, in aqueous dispersions were about 70?80 nm, while sizes lower than 20 nm were registered by TEM microscopy. Surface charge of gumArabic coated magnetic nanoparticleswas significantly different from the corresponding to raw materials (magnetite and GA). This fact confirmed the formation of hybrid nanosystems with novel and specific properties.The potential utility of these materials was tested regarding to magnetic hyperthermia therapy under radiofrequency fields. Magnetocalorimetric measurements were performed in a wide range of field amplitude and frequency.Specific absorption rate of 218 W/gFe was determined at field frequency of 260 kHz and amplitude of 52 kA/m. These results demonstrate their viability to be applied in tumor ablation treatments. Using the linear response theory and restricting field parameters to the accepted biomedical window, maximum useful value of 74 w/gFe is predicted at 417 kHz and 12 kA/m.