Ceramic ferrites can be used to cancer-treatment. Heating of certain organs or tissue up to temperature between 42oC and 45oC preferentially for cancer therapy is called hyperthermia. We synthesized ferrites with various compositions in the system Co1-xNixFe2O4 as hyperthermic thermoseed in cancer-treatment and evaluated their effects on the necrosis of cancer cells under alternating magnetic field in vivo as well as in vitro. When a CoFe2O4 was placed into 0.2 ml distilled water, the greatest temperature change in this study, Δ T=29.3oC, was observed. More than half of the carcinoma cells were dead after exposure to alternating magnetic field using CoFe2O4, while normal cells were survived more than 60%. The injection of this ferrite parti...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
Nanomagnetic particles have great potential in the biomedical applications like MRI contrast enhance...
Magnetic nanoparticles, MNPs, mineralized within a human ferritin protein cage, HFt, can represent a...
The purpose of this study was to investigate the cell necrosis by the hysteric heating of Co1-xNixFe...
High iron-containing silicate glasses were prepared using a conventional melting and quenching proce...
In this study, lauric acid-coated, superparamagnetic, nanoparticle-based magnetic fluids of differen...
<p>The present study examines the heating efficiency of a combination of manganese or cobalt ferrite...
Magnetic nanoparticles offer some attractive possibilities in biomedicine because it has the special...
Among the different cancer treatments that are currently used, hyperthermia has a promising potentia...
Superparamagnetic as well as fine ferrimagnetic particles such as Fe3O4, have been extensively used ...
Nanoparticle-based magnetic hyperthermia is a well-known thermal therapy platform studied to treat s...
Nanoparticle-based magnetic hyperthermia is a well-known thermal therapy platform studied to treat s...
For hyperthermia to be used under clinical conditions for cancer therapeutics the temperature regula...
In this paper, we present a theoretical study on the maximum specific loss power in the admissible b...
For hyperthermia to be used under clinical conditions for cancer therapeutics the temperature regula...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
Nanomagnetic particles have great potential in the biomedical applications like MRI contrast enhance...
Magnetic nanoparticles, MNPs, mineralized within a human ferritin protein cage, HFt, can represent a...
The purpose of this study was to investigate the cell necrosis by the hysteric heating of Co1-xNixFe...
High iron-containing silicate glasses were prepared using a conventional melting and quenching proce...
In this study, lauric acid-coated, superparamagnetic, nanoparticle-based magnetic fluids of differen...
<p>The present study examines the heating efficiency of a combination of manganese or cobalt ferrite...
Magnetic nanoparticles offer some attractive possibilities in biomedicine because it has the special...
Among the different cancer treatments that are currently used, hyperthermia has a promising potentia...
Superparamagnetic as well as fine ferrimagnetic particles such as Fe3O4, have been extensively used ...
Nanoparticle-based magnetic hyperthermia is a well-known thermal therapy platform studied to treat s...
Nanoparticle-based magnetic hyperthermia is a well-known thermal therapy platform studied to treat s...
For hyperthermia to be used under clinical conditions for cancer therapeutics the temperature regula...
In this paper, we present a theoretical study on the maximum specific loss power in the admissible b...
For hyperthermia to be used under clinical conditions for cancer therapeutics the temperature regula...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
Nanomagnetic particles have great potential in the biomedical applications like MRI contrast enhance...
Magnetic nanoparticles, MNPs, mineralized within a human ferritin protein cage, HFt, can represent a...