This study describes an innovative strategy to develop advanced multifunctional materials, by embedding magnetic nanoparticles in biodegradable poly(l-lactide) (PLLA) nanospheres. The morphology, size distribution and composition of the nanocomposite particles were investigated by several techniques, demonstrating the successful incorporation of the magnetic nanoparticles into monodisperse polymer nanospheres with average diameter of 130 nm. The effect of the encapsulation on the magnetic behaviour was evaluated by magnetometry techniques and the hyperthermic properties of PLLA embedded nanoparticles were investigated. This study suggested that the combination of the hydrophilic, biocompatible polyvinyl alcohol (PVA), used as surfactant, wi...
Biodegradable polymers are extremely versatile materials that can be used in many drug delivery appl...
Biodegradable polymers are extremely versatile materials that can be used in many drug delivery appl...
In this article, a novel superparamagnetic polymer is introduced for the use in magnetic particle im...
In this study, the biocompatible magnetic fluid was encapsulated in biodegradable polymer PLGA (poly...
In the category of biopolymers, polylactide or polylactic acid (PLA) is one of the most promising ca...
In the category of biopolymers, polylactide or polylactic acid (PLA) is one of the most promising ca...
In the category of biopolymers, polylactide or polylactic acid (PLA) is one of the most promising ca...
In the category of biopolymers, polylactide or polylactic acid (PLA) is one of the most promising ca...
In this study, magnetic polymeric nanoparticles were prepared use in for targeted drug delivery. Fir...
The goal of this thesis is to incorporate magnetic nanoparticles into nanogel systems to offer targe...
Magnetic nanoparticles have been proposed as interesting tools for biomedical purposes. One of their...
In this thesis, the research activity, focused on two investigations topics, both addressed to the p...
The project completed at the Wichita State University Department of Mechanical Engineering. Presente...
Poly(glycolide-co-lactide) (PLGA) nanospheres containing magnetic materials have been extensively st...
A magnetic target drug delivery system consisting of biodegradable polymeric microspheres (poly D, L...
Biodegradable polymers are extremely versatile materials that can be used in many drug delivery appl...
Biodegradable polymers are extremely versatile materials that can be used in many drug delivery appl...
In this article, a novel superparamagnetic polymer is introduced for the use in magnetic particle im...
In this study, the biocompatible magnetic fluid was encapsulated in biodegradable polymer PLGA (poly...
In the category of biopolymers, polylactide or polylactic acid (PLA) is one of the most promising ca...
In the category of biopolymers, polylactide or polylactic acid (PLA) is one of the most promising ca...
In the category of biopolymers, polylactide or polylactic acid (PLA) is one of the most promising ca...
In the category of biopolymers, polylactide or polylactic acid (PLA) is one of the most promising ca...
In this study, magnetic polymeric nanoparticles were prepared use in for targeted drug delivery. Fir...
The goal of this thesis is to incorporate magnetic nanoparticles into nanogel systems to offer targe...
Magnetic nanoparticles have been proposed as interesting tools for biomedical purposes. One of their...
In this thesis, the research activity, focused on two investigations topics, both addressed to the p...
The project completed at the Wichita State University Department of Mechanical Engineering. Presente...
Poly(glycolide-co-lactide) (PLGA) nanospheres containing magnetic materials have been extensively st...
A magnetic target drug delivery system consisting of biodegradable polymeric microspheres (poly D, L...
Biodegradable polymers are extremely versatile materials that can be used in many drug delivery appl...
Biodegradable polymers are extremely versatile materials that can be used in many drug delivery appl...
In this article, a novel superparamagnetic polymer is introduced for the use in magnetic particle im...