Nanoflowers Versus Magnetosomes: Comparison Between Two Promising Candidates for Magnetic Hyperthermia Therapy
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Martín Jefremovas, Elizabeth


Fecha
2021-07Derechos
Attribution 4.0 International
Publicado en
IEEE Access, vol. 9, pp. 99552-99561, 2021
Editorial
Institute of Electrical and Electronics Engineers, Inc.
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Resumen/Abstract
Magnetic Fluid Hyperthermia mediated by iron oxide nanoparticles is one of the most
promising therapies for cancer treatment. Among the different candidates, magnetite and maghemite
nanoparticles have revealed to be some of the most promising candidates due to both their performance and
their biocompatibility. Nonetheless, up to date, the literature comparing the heating ef ciency of magnetite
and maghemite nanoparticles of similar size is scarce. To ll this gap, here we provide a comparison
between commercial Synomag Nano owers (pure maghemite) and bacterial magnetosomes (pure magnetite)
synthesized by the magnetotactic bacterium Magnetospirillum gryphiswaldense of hDi 40 45 nm. Both
types of nanoparticles exhibit a high degree of crystallinity and an excellent degree of chemical purity and
stability. The structural and magnetic properties in both nanoparticle ensembles have been studied by means
of X Ray Diffraction, Transmission Electron Microscopy, X Ray Absorption Spectroscopy, and SQUID
magnetometry. The heating ef ciency has been analyzed in both systems using AC magnetometry at several
eld amplitudes (0 88 mT) and frequencies (130, 300, and 530 kHz).
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