Nanosized particles of iron oxide (NPIO) has been applied extensively as contrast medium for magnetic resonance imaging (MRI). Recently, micrometer sized particles of iron oxide (MPIO) has also been demonstrated the feasibility for cell labeling to monitor immune response. In this study, we compared the cellular labeling efficiencies of these two kinds of magnetic particles. The NPIO exhibit stronger saturation magnetization and produce more MRI signal change. On the contrary, MPIO revealed better particle uptake ability than NPIO in incubated cells. Microscopically, both MPIO and NPIO were located in the cytoplasm but not in the cell nucleus. On MRI examination, MPIO labeled cells showed more pronounced signal change compared to NPIO label...
Iron oxide particles (SPIO and USPIO) are widely used for MRI-based cell labeling and tracking becau...
Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of st...
Cellular imaging is a rapidly growing field as novel tracers and imaging techniques are developed. M...
[[abstract]]Nanosized particles of iron oxide (NPIO) has been applied extensively as contrast medium...
Superparamagnetic iron-oxide particles (SPIO) are used in different ways as contrast agents for magn...
There is rapidly increasing interest in the use of MRI to track cell migration in intact animals. Cu...
Paramagnetic and superparamagnetic substances are used to trace stem cell in living organisms under ...
Superparamagnetic iron oxide nanoparticles (SPIO-PAA), ultrasmall iron oxide nanoparticles (USPIO-PA...
Magnetic particle imaging (MPI) is an emerging imaging modality that specifically detects superparam...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of st...
Superparamagnetic iron-oxide particles (SPIO) are used in different ways as contrast agents for magn...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
Iron oxide particles (SPIO and USPIO) are widely used for MRI-based cell labeling and tracking becau...
Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of st...
Cellular imaging is a rapidly growing field as novel tracers and imaging techniques are developed. M...
[[abstract]]Nanosized particles of iron oxide (NPIO) has been applied extensively as contrast medium...
Superparamagnetic iron-oxide particles (SPIO) are used in different ways as contrast agents for magn...
There is rapidly increasing interest in the use of MRI to track cell migration in intact animals. Cu...
Paramagnetic and superparamagnetic substances are used to trace stem cell in living organisms under ...
Superparamagnetic iron oxide nanoparticles (SPIO-PAA), ultrasmall iron oxide nanoparticles (USPIO-PA...
Magnetic particle imaging (MPI) is an emerging imaging modality that specifically detects superparam...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of st...
Superparamagnetic iron-oxide particles (SPIO) are used in different ways as contrast agents for magn...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
Iron oxide particles (SPIO and USPIO) are widely used for MRI-based cell labeling and tracking becau...
Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of st...
Cellular imaging is a rapidly growing field as novel tracers and imaging techniques are developed. M...