Amination-mediated nano eye-drops with enhanced corneal permeability and effective burst release for acute glaucoma treatment - ScienceDirect

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Last updated 11 novembro 2024
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Recent achievements in nano-based technologies for ocular disease diagnosis and treatment, review and update, Journal of Nanobiotechnology
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
β-blocker eye drops affect ocular surface through β2 adrenoceptor of corneal limbal stem cells, BMC Ophthalmology
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Hydrogel eye drops as a non-invasive drug carrier for topical enhanced Adalimumab permeation and highly efficient uveitis treatment - ScienceDirect
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Carbohydrate polymer-based bioadhesive formulations and their potentials for the treatment of ocular diseases: A review - ScienceDirect
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Hydroxypropyl methacrylamide-based copolymeric nanoparticles loaded with moxifloxacin as a mucoadhesive, cornea-penetrating nanomedicine eye drop with enhanced therapeutic benefits in bacterial keratitis - ScienceDirect
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Nanotechnology for Medical and Surgical Glaucoma Therapy—A Review
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Self-assembled chitosan-sodium usnate drug delivery nanosystems: Synthesis, characterization, stability studies, in vitro cytotoxicity and in vivo biocompatibility against 143 B cells - ScienceDirect
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Molecules, Free Full-Text
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
High-tech eye drop research targets corneal damage
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
PDF) Effect of bone marrow mesenchymal stem cells-derived exosomes on diabetes-induced retinal injury: Implication of Wnt/ b-catenin signaling pathway
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Nano-based eye drop: Topical and noninvasive therapy for ocular diseases - ScienceDirect
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Biology, Free Full-Text
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Nanomedicines for the treatment of glaucoma: Current status and future perspectives - ScienceDirect
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Carbohydrate polymer-based bioadhesive formulations and their potentials for the treatment of ocular diseases: A review - ScienceDirect
Amination-mediated nano eye-drops with enhanced corneal permeability and  effective burst release for acute glaucoma treatment - ScienceDirect
Lipid-based nanocarriers challenging the ocular biological barriers: Current paradigm and future perspectives - ScienceDirect

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