New folate-conjugated superparamagnetic maghemite nanoparticles have been synthesized for the intracellular hyperthermia treatment of solid tumors. These ultradispersed nanosystems have been characterized for their physicochemical properties and tumor cell targeting ability, facilitated by surface modification with folic acid. Preliminary experiments of nanoparticles heating under the influence of an alternating magnetic field at 108 kHz have been also performed. The nanoparticle size, surface charge, and colloidal stability have been assessed in various conditions of ionic strength and pH. The ability of these folate “decorated” maghemite nanoparticles to recognize the folate receptor has been investigated both by surface plasmon resonanc...
Contrast agents have been widely used in medicine to enhance contrast in magnetic resonance imaging ...
Background. The chemotherapeutic treatment of cancer suffers from poor specificity for targeting the...
Nanomaterials are intensively researched both from the fundamental aspect due to new properties at t...
To design a potent agent for positron emission tomography/magnetic resonance imaging (PET/MRI) imagi...
Dual targeted drug delivery systems represent a potential platform for developing efficient vector t...
The purpose of the study was to develop tumor specific, water dispersible superparamagnetic iron oxi...
The controlled release and targeted delivery of drug to tumour sites using magnetic nanoparticles (M...
Superparamagnetic magnetite nanoparticles were synthetized and capped by a SiO2 shell in order to av...
Engineering of a physiologically compatible, stable and targetable SPIONs-CA-FA formulation was repo...
The development of more sensitive diagnostic tools allowing an early-stage and highly efficient medi...
Highly hydrophilic, uniform, superparamagnetic and nontoxic maltotrionic acid (MA)-coated magnetite ...
Polyacrylic acid functionalized Fe3O4 nanoparticles (PAA-MNPs) of average size of 10 nm are prepared...
In recent years, the intrinsic magnetic properties of magnetic nanoparticles (MNPs) have made them o...
[[abstract]]Carbon encapsulated iron oxide nanoparticles (CEIO-NPs) prepared by carbon arc method we...
Cancer is one of the diseases with most deaths worldwide, around 8.2 million annually. For this reas...
Contrast agents have been widely used in medicine to enhance contrast in magnetic resonance imaging ...
Background. The chemotherapeutic treatment of cancer suffers from poor specificity for targeting the...
Nanomaterials are intensively researched both from the fundamental aspect due to new properties at t...
To design a potent agent for positron emission tomography/magnetic resonance imaging (PET/MRI) imagi...
Dual targeted drug delivery systems represent a potential platform for developing efficient vector t...
The purpose of the study was to develop tumor specific, water dispersible superparamagnetic iron oxi...
The controlled release and targeted delivery of drug to tumour sites using magnetic nanoparticles (M...
Superparamagnetic magnetite nanoparticles were synthetized and capped by a SiO2 shell in order to av...
Engineering of a physiologically compatible, stable and targetable SPIONs-CA-FA formulation was repo...
The development of more sensitive diagnostic tools allowing an early-stage and highly efficient medi...
Highly hydrophilic, uniform, superparamagnetic and nontoxic maltotrionic acid (MA)-coated magnetite ...
Polyacrylic acid functionalized Fe3O4 nanoparticles (PAA-MNPs) of average size of 10 nm are prepared...
In recent years, the intrinsic magnetic properties of magnetic nanoparticles (MNPs) have made them o...
[[abstract]]Carbon encapsulated iron oxide nanoparticles (CEIO-NPs) prepared by carbon arc method we...
Cancer is one of the diseases with most deaths worldwide, around 8.2 million annually. For this reas...
Contrast agents have been widely used in medicine to enhance contrast in magnetic resonance imaging ...
Background. The chemotherapeutic treatment of cancer suffers from poor specificity for targeting the...
Nanomaterials are intensively researched both from the fundamental aspect due to new properties at t...