Stimuli-responsive biomaterials offer a unique advantage over traditional local drug delivery systems in that the drug elution rate can be controllably increased to combat developing symptomology or maintain high local elution levels for disease treatment. In this study, superparamagnetic Fe3O4 nanoparticles and the antibiotic vancomycin were loaded into chitosan microbeads cross-linked with varying lengths of polyethylene glycol dimethacrylate. Beads were characterized using degradation, biocompatibility, and elution studies with successive magnetic stimulations at multiple field strengths and frequencies. Thirty-minute magnetic stimulation induced a temporary increase in daily elution rate of up to 45% that was dependent on field strength...
Over the last few decades, various drug delivery systems (DDS) have been fabricated to overcome limi...
Over the last few decades, various drug delivery systems (DDS) have been fabricated to overcome limi...
Drug Delivery Systems (DDS) are suitable for drug delivery over direct pharmaceutical administration...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In recent years, pharmaceutical research has seen a surge in various smart drug delivery systems (DD...
Over the last few decades, various drug delivery systems (DDS) have been fabricated to overcome limi...
Over the last few decades, various drug delivery systems (DDS) have been fabricated to overcome limi...
Over the last few decades, various drug delivery systems (DDS) have been fabricated to overcome limi...
Drug Delivery Systems (DDS) are suitable for drug delivery over direct pharmaceutical administration...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
Local antibiotic delivery can overcome some of the shortcomings of systemic therapy, such as low loc...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In this paper, we have presented a novel Drug Delivery Substrate (DDS) that that is responsive to ex...
In recent years, pharmaceutical research has seen a surge in various smart drug delivery systems (DD...
Over the last few decades, various drug delivery systems (DDS) have been fabricated to overcome limi...
Over the last few decades, various drug delivery systems (DDS) have been fabricated to overcome limi...
Over the last few decades, various drug delivery systems (DDS) have been fabricated to overcome limi...
Drug Delivery Systems (DDS) are suitable for drug delivery over direct pharmaceutical administration...