Tagging recognition group(s) on superparamagnetic iron oxide is known to aid localization (imaging), stimulation and separation of biological entities using magnetic resonance imaging (MRI) and magnetic agitation/separation (MAS) techniques. Despite the wide applicability of iron oxide nanoparticle in T2-weighted MRI and MAS, the quality of image and safe manipulation of exceptionally delicate neural cells in a live brain are currently the key challenges. Here, we demonstrate the engineered manganese oxide clusters-iron oxide core-shell nanoparticle as a MR dual-modal contrast agent (DMCA) for the applications in neural stem cells imaging and magnetic manipulation in live rodent. As a result, using this engineered nanoparticle and associate...
Mesoporous silica-coated hollow manganese oxide (HIVInO@ mSiO(2)) nanoparticles were developed as a ...
Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of st...
Stem cells have tremendous applications in the field of regenerative medicine and tissue engineering...
Tagging recognition group(s) on superparamagnetic iron oxide is known to aid localization (imaging),...
Tagging recognition group(s) on superparamagnetic iron oxide is known to aid localization (imaging),...
Despite a variety of T1-T2 dual-modal contrast agents (DMCAs) reported for magnetic resonance imagin...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Background: Magnetic resonance imaging is the ideal modality for non-invasive in vivo cell tracking ...
The controlled size and surface treatment of magnetic nanoparticles (NPs) make one-stage combination...
Magnetic resonance imaging (MRI) is a noninvasive imaging technique that helps clinicians not only t...
Mesoporous silica-coated hollow manganese oxide (HMnO@mSiO<sub>2</sub>) nanoparticles were developed...
Neural stem cells (NSCs) have a high therapeutic potential for patients with neurological disease/in...
Stem cell tracking in cellular therapy and regenerative medicine is an urgent need, superparamagneti...
Objective: The label and detection of cells injected into target tissues is an area of focus for res...
[[abstract]]Background: Regenerative medicine field is still lagging due to the lack of adequate kno...
Mesoporous silica-coated hollow manganese oxide (HIVInO@ mSiO(2)) nanoparticles were developed as a ...
Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of st...
Stem cells have tremendous applications in the field of regenerative medicine and tissue engineering...
Tagging recognition group(s) on superparamagnetic iron oxide is known to aid localization (imaging),...
Tagging recognition group(s) on superparamagnetic iron oxide is known to aid localization (imaging),...
Despite a variety of T1-T2 dual-modal contrast agents (DMCAs) reported for magnetic resonance imagin...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Background: Magnetic resonance imaging is the ideal modality for non-invasive in vivo cell tracking ...
The controlled size and surface treatment of magnetic nanoparticles (NPs) make one-stage combination...
Magnetic resonance imaging (MRI) is a noninvasive imaging technique that helps clinicians not only t...
Mesoporous silica-coated hollow manganese oxide (HMnO@mSiO<sub>2</sub>) nanoparticles were developed...
Neural stem cells (NSCs) have a high therapeutic potential for patients with neurological disease/in...
Stem cell tracking in cellular therapy and regenerative medicine is an urgent need, superparamagneti...
Objective: The label and detection of cells injected into target tissues is an area of focus for res...
[[abstract]]Background: Regenerative medicine field is still lagging due to the lack of adequate kno...
Mesoporous silica-coated hollow manganese oxide (HIVInO@ mSiO(2)) nanoparticles were developed as a ...
Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of st...
Stem cells have tremendous applications in the field of regenerative medicine and tissue engineering...