Abstract Polymeric nanoparticles have been investigated as potential delivery systems for therapeutic compounds to address many ailments including eye disease. The stability and spatiotemporal distribution of polymeric nanoparticles in the eye are important regarding the practical applicability and efficacy of the delivery system in treating eye disease. We selected poly(lactic-co-glycolic acid) (PLGA) nanoparticles loaded with lutein, a carotenoid antioxidant associated with eye health, as our model ophthalmic nanodelivery system and evaluated its stability when suspended in various conditions involving temperature and light exposure. We also assessed the ocular biodistribution of the fluorescently labeled nanoparticle vehicle when adminis...
Advantages of polymeric nanoparticles as drug delivery systems include controlled release, enhanced ...
Objective: To develop and characterize a topical ophthalmic formulation containing chitosan-dextran ...
The use of biodegradable polymer microspheres and nanoparticles in topical form or for injection to ...
Polymeric nanoparticles have been investigated as potential delivery systems for therapeutic compoun...
Polymeric nanoparticles have been investigated as potential delivery systems for therapeutic compoun...
Advantages of polymeric nanoparticles as ocular drug delivery systems include controlled release, en...
Introduction. The carotene lutein is found in ocular layers and has powerful antioxidant, anti-infla...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
The main objective of this study was the development and optimization of fluorometholone-loaded PLGA...
The main objective of this study was the development and optimization of fluorometholone-loaded PLGA...
The main objective of this study was the development and optimization of fluorometholone-loaded PLGA...
Advantages of polymeric nanoparticles as drug delivery systems include controlled release, enhanced ...
Objective: To develop and characterize a topical ophthalmic formulation containing chitosan-dextran ...
The use of biodegradable polymer microspheres and nanoparticles in topical form or for injection to ...
Polymeric nanoparticles have been investigated as potential delivery systems for therapeutic compoun...
Polymeric nanoparticles have been investigated as potential delivery systems for therapeutic compoun...
Advantages of polymeric nanoparticles as ocular drug delivery systems include controlled release, en...
Introduction. The carotene lutein is found in ocular layers and has powerful antioxidant, anti-infla...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
Ocular drug delivery has been a major challenge for clinical pharmacologists and biomaterial scienti...
The main objective of this study was the development and optimization of fluorometholone-loaded PLGA...
The main objective of this study was the development and optimization of fluorometholone-loaded PLGA...
The main objective of this study was the development and optimization of fluorometholone-loaded PLGA...
Advantages of polymeric nanoparticles as drug delivery systems include controlled release, enhanced ...
Objective: To develop and characterize a topical ophthalmic formulation containing chitosan-dextran ...
The use of biodegradable polymer microspheres and nanoparticles in topical form or for injection to ...