Iron oxide nanoparticles have attracted a great deal of research interest in recent years for magnetic hyperthermia therapy owing to their biocompatibility and superior thermal conversion efficiency. Magnetoferritin is a type of biomimetic superparamagnetic iron oxide nanoparticle in a ferritin cage with good monodispersity, biocompatibility, and natural hydrophilicity. However, the magnetic hyperthermic efficiency of this kind of nanoparticle is limited by the small size of the mineral core as well as its low synthesis temperature. Here, we synthesized a novel magnetoferritin particle by using a recombinant ferritin from the hyperthermophilic archaeon Pyrococcus furiosus as a template with high iron atom loading of 9517 under a designated ...
<p>The present study examines the heating efficiency of a combination of manganese or cobalt ferrite...
Many important biomedical applications, such as cell imaging and remote manipulation, can be achieve...
Research has garnered a great interest in utilization of superparamagnetic iron oxide nanoparticles ...
Iron oxide nanoparticles mineralized within the internal cavity of Ferritin protein cage are extreme...
Magnetic nanoparticles, MNPs, mineralized within a human ferritin protein cage, HFt, can represent a...
The use of magnetic nanoparticles in hyperthermia, that is, heating induced by alternating magnetic ...
The use of magnetic nanoparticles in hyperthermia, that is, heating induced by alternating magnetic ...
Ferritin is a spherical iron storage protein composed of 24 subunits and an iron core. Using biomime...
This paper describes the preparation and obtained magnetic properties of large single domain iron ox...
Magnetic and superparamagnetic colloids represent a versatile platform for the design of functional ...
The clinical translation of magnetic hyperthermia (MH) needs magnetic nanoparticles (MNPs) with enha...
This paper describes the preparation and obtained magnetic properties of large single domain iron ox...
Biologically targeted magnetic hyperthermia (MH) is a promising cancer therapeutic that is both non-...
The paper presents detailed experimental study of synthesis and characterization a bioinorganic magn...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
<p>The present study examines the heating efficiency of a combination of manganese or cobalt ferrite...
Many important biomedical applications, such as cell imaging and remote manipulation, can be achieve...
Research has garnered a great interest in utilization of superparamagnetic iron oxide nanoparticles ...
Iron oxide nanoparticles mineralized within the internal cavity of Ferritin protein cage are extreme...
Magnetic nanoparticles, MNPs, mineralized within a human ferritin protein cage, HFt, can represent a...
The use of magnetic nanoparticles in hyperthermia, that is, heating induced by alternating magnetic ...
The use of magnetic nanoparticles in hyperthermia, that is, heating induced by alternating magnetic ...
Ferritin is a spherical iron storage protein composed of 24 subunits and an iron core. Using biomime...
This paper describes the preparation and obtained magnetic properties of large single domain iron ox...
Magnetic and superparamagnetic colloids represent a versatile platform for the design of functional ...
The clinical translation of magnetic hyperthermia (MH) needs magnetic nanoparticles (MNPs) with enha...
This paper describes the preparation and obtained magnetic properties of large single domain iron ox...
Biologically targeted magnetic hyperthermia (MH) is a promising cancer therapeutic that is both non-...
The paper presents detailed experimental study of synthesis and characterization a bioinorganic magn...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
<p>The present study examines the heating efficiency of a combination of manganese or cobalt ferrite...
Many important biomedical applications, such as cell imaging and remote manipulation, can be achieve...
Research has garnered a great interest in utilization of superparamagnetic iron oxide nanoparticles ...