Targeted delivery and controlled release of drugs has been considered to be an important therapeutic approach since it could allow a better treatment efficiency and less side effects. In this research, magnetite Fe3O4 nanoparticles were successfully synthesized via the coprecipitation method and then loaded in alginate beads with berberine as a drug model for drug release application. Various factors such as pH values of the suspended environment and surface modifications of the drug carrier could be exploited to adjust the amount of drug release. More importantly, the amount of drug release could be effectively controlled by an on-off switching operation of a static magnetic field
The use of polymeric carriers containing dispersed magnetic nanocrystalline particles has attracted ...
[[abstract]]Hyperthermia is one of the promising treatments for cancer therapy. However, the develop...
The use of polymeric carriers containing dispersed magnetic nanocrystailline particles has attracted...
The aim of this paper is to develop highly magnetized, biodegradable and biocompatible, polymeric na...
Cancer is a leading cause of death worldwide and side effects on cancer patients from conventional c...
Given the demanding use of controlled drug delivery systems, our attention was focused on developing...
Scientists are searching potential solutions for cancer treatments as well as ways to avoid the side...
Oral presentation given at the Scientific Workshop "Biomedical, Health and Bio-related Applications ...
New magnetic bio-hybrid matrices for potential application in drug delivery are developed from the a...
Stimuli-responsive polymeric systems have been widely used for various drug delivery and tissue engi...
Herein, we designed chitosan–coated Fe3O4 nanocomposites for the control release of drugs by an alte...
P(DEGMA-co-OEGMA-b-[TMSPMA-co-VBA])@silica@magnetite polymer–nanoparticle composites have been devel...
Herein, we designed chitosan–coated Fe3O4 nanocomposites for the control release of drugs by an alte...
Porous structures made up of Fe3O4 nanoparticles were used to adsorb methyl blue in water. Controlle...
Considerable attention is given to drug delivery technology that efficiently delivers appropriate le...
The use of polymeric carriers containing dispersed magnetic nanocrystalline particles has attracted ...
[[abstract]]Hyperthermia is one of the promising treatments for cancer therapy. However, the develop...
The use of polymeric carriers containing dispersed magnetic nanocrystailline particles has attracted...
The aim of this paper is to develop highly magnetized, biodegradable and biocompatible, polymeric na...
Cancer is a leading cause of death worldwide and side effects on cancer patients from conventional c...
Given the demanding use of controlled drug delivery systems, our attention was focused on developing...
Scientists are searching potential solutions for cancer treatments as well as ways to avoid the side...
Oral presentation given at the Scientific Workshop "Biomedical, Health and Bio-related Applications ...
New magnetic bio-hybrid matrices for potential application in drug delivery are developed from the a...
Stimuli-responsive polymeric systems have been widely used for various drug delivery and tissue engi...
Herein, we designed chitosan–coated Fe3O4 nanocomposites for the control release of drugs by an alte...
P(DEGMA-co-OEGMA-b-[TMSPMA-co-VBA])@silica@magnetite polymer–nanoparticle composites have been devel...
Herein, we designed chitosan–coated Fe3O4 nanocomposites for the control release of drugs by an alte...
Porous structures made up of Fe3O4 nanoparticles were used to adsorb methyl blue in water. Controlle...
Considerable attention is given to drug delivery technology that efficiently delivers appropriate le...
The use of polymeric carriers containing dispersed magnetic nanocrystalline particles has attracted ...
[[abstract]]Hyperthermia is one of the promising treatments for cancer therapy. However, the develop...
The use of polymeric carriers containing dispersed magnetic nanocrystailline particles has attracted...