Multifunctional poly(glycidyl methacrylate) (PGMA) microspheres containing magnetic, fluorescent, and cancer cell-specific moieties were prepared in four steps: (i) preparation of parent PGMA microspheres by dispersion polymerization and their reaction with ethylenediamine to obtain amino groups, (ii) precipitation of iron ions (Fe2+ and Fe3+) to form Fe3O4 nanoparticles within the microspheres, (iii) consecutive reactions of folic acid with the amino groups on PGMA, and (iv) incorporation of fluorescein isothiocyanate into the microspheres. The microspheres were superparamagnetic, highly monodispersive, intensively fluorescent, and capable of recognizing and binding cancer cells that overexpress folic acid receptors. It was demonstrated th...
Functionalized alkynyl polyvinyl alcohol magnetic microspheres (PVA MMs) were developed for the spec...
Narrowly dispersed amino-functionalised polystyrene microspheres, with a range of diameters, were su...
The highly selective and efficient capture of heterogeneous types of phosphopeptides is critical for...
Novel magnetic-antimicrobial-fluorescent multifunctional hybrid microspheres with well-defined nanos...
Non-porous superparamagnetic polymer microspheres with epoxy groups were prepared by dispersion poly...
Highly magnetic and monodisperse microspheres were prepared for use in microfluidic immunomagnetic ...
Non-porous superparamagnetic polymer microspheres with epoxy groups were prepared by dispersion poly...
A novel and effective protocol for the preparation of superparamagnetic immunomicrospheres has been ...
The promising potential of magnetic polymer microspheres in various biomedical applications has been...
Magnetic microsphere comprises a magnetically responsive metal or metal oxide core surrounded by a p...
[[abstract]]Polymeric microspheres containing a magnetic core have been used in cancer therapy for b...
The recognition and isolation of specific mammalian cells by the biocompatible polymer coated super-...
With the aim to develop and characterize a functionalized highly magnetic polymer carrier of microme...
We report the successful fabrication of the various types of water soluble PEGylated magnetic comple...
Targeted nanocarriers could reach new levels of drug delivery, bringing new tools for personalized m...
Functionalized alkynyl polyvinyl alcohol magnetic microspheres (PVA MMs) were developed for the spec...
Narrowly dispersed amino-functionalised polystyrene microspheres, with a range of diameters, were su...
The highly selective and efficient capture of heterogeneous types of phosphopeptides is critical for...
Novel magnetic-antimicrobial-fluorescent multifunctional hybrid microspheres with well-defined nanos...
Non-porous superparamagnetic polymer microspheres with epoxy groups were prepared by dispersion poly...
Highly magnetic and monodisperse microspheres were prepared for use in microfluidic immunomagnetic ...
Non-porous superparamagnetic polymer microspheres with epoxy groups were prepared by dispersion poly...
A novel and effective protocol for the preparation of superparamagnetic immunomicrospheres has been ...
The promising potential of magnetic polymer microspheres in various biomedical applications has been...
Magnetic microsphere comprises a magnetically responsive metal or metal oxide core surrounded by a p...
[[abstract]]Polymeric microspheres containing a magnetic core have been used in cancer therapy for b...
The recognition and isolation of specific mammalian cells by the biocompatible polymer coated super-...
With the aim to develop and characterize a functionalized highly magnetic polymer carrier of microme...
We report the successful fabrication of the various types of water soluble PEGylated magnetic comple...
Targeted nanocarriers could reach new levels of drug delivery, bringing new tools for personalized m...
Functionalized alkynyl polyvinyl alcohol magnetic microspheres (PVA MMs) were developed for the spec...
Narrowly dispersed amino-functionalised polystyrene microspheres, with a range of diameters, were su...
The highly selective and efficient capture of heterogeneous types of phosphopeptides is critical for...