In this work, thermoresponsive polymer grafted magnetic mesoporous silica nanoparticles were prepared, fully characterized and tested as controlled drug delivery systems. For this purpose, iron oxide nanoparticles coated with mesoporous silica shell were grafted with poly(N-isopropylacrylamide-co-3-(methacryloxypropyl)trimethoxysilane) (PNIPAM-co-MPS). The grafting and polymerization on the as-prepared nanoparticles were performed in one-step procedure. Using this methodology, the polymer was successfully grafted mainly onto the silica surface, leaving the mesopores empty for the drug loading. The prepared hybrid nanoparticles (MMSNP-PNIPAM-co-MPS) showed high magnetization saturation (19.5 emu g−1) and high specific surface area (505 m2 g−...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
In this study we present an innovation in the tumor treatment in vivo mediated by magnetic mesoporou...
MCM-41-like mesoporous silica nanoparticles (MSNs) grafted with a thermoresponsive copolymer of N-is...
Stimuli-responsive devices are novel tools widely studied in the nanomedicine research field. In thi...
In this study, multifunctional nanoparticles containing thermosensitive polymers grafted onto the su...
Novel thermally and magnetically dual-responsive mesoporous silica nanoparticles [magnetic mesoporou...
The treatment of complex diseases such as cancer pathologies requires the simultaneously administrat...
In this study, we present an innovation in the tumor treatment in vivo mediated by magnetic mesoporo...
Efficient and controlled delivery of therapeutics to tumor cells is one of the important issues in c...
This thesis involves synthesis, derivatization and biomedical applications of mesoporous silica nano...
The unique physical properties of the superparamagnetic nanoparticles (SPIONs) have made them candid...
In this research, temperature sensitive microgels with magnetic core for controlled release of 5-flu...
Thermoresponsive P(NIPAM-AA)/Fe3O4/SiO2 microspheres with surface holes serving as carriers were pre...
A novel thermoresponsive snaptop for stimulated cargo release from superparamagnetic iron oxide core...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
In this study we present an innovation in the tumor treatment in vivo mediated by magnetic mesoporou...
MCM-41-like mesoporous silica nanoparticles (MSNs) grafted with a thermoresponsive copolymer of N-is...
Stimuli-responsive devices are novel tools widely studied in the nanomedicine research field. In thi...
In this study, multifunctional nanoparticles containing thermosensitive polymers grafted onto the su...
Novel thermally and magnetically dual-responsive mesoporous silica nanoparticles [magnetic mesoporou...
The treatment of complex diseases such as cancer pathologies requires the simultaneously administrat...
In this study, we present an innovation in the tumor treatment in vivo mediated by magnetic mesoporo...
Efficient and controlled delivery of therapeutics to tumor cells is one of the important issues in c...
This thesis involves synthesis, derivatization and biomedical applications of mesoporous silica nano...
The unique physical properties of the superparamagnetic nanoparticles (SPIONs) have made them candid...
In this research, temperature sensitive microgels with magnetic core for controlled release of 5-flu...
Thermoresponsive P(NIPAM-AA)/Fe3O4/SiO2 microspheres with surface holes serving as carriers were pre...
A novel thermoresponsive snaptop for stimulated cargo release from superparamagnetic iron oxide core...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
In this study we present an innovation in the tumor treatment in vivo mediated by magnetic mesoporou...