Effectiveness of an ocular adhesive polyhedral oligomeric silsesquioxane hybrid thermo-responsive FK506 hydrogel in a murine model of dry eye

生物相容性 倍半硅氧烷 药物输送 溶解度 共聚物 材料科学 胶粘剂 PEG比率 生物医学工程 润湿 化学工程 纳米技术 化学 复合材料 聚合物 医学 有机化学 财务 图层(电子) 冶金 经济 工程类
作者
Yi Han,Lu Jiang,Huihui Shi,Chenfang Xu,Minting Liu,Qingjian Li,Lan Zheng,Hong Chi,Mingyue Wang,Zuguo Liu,Ming You,Xian Jun Loh,Yun‐Long Wu,Yupeng Liu,Cheng Li
出处
期刊:Bioactive Materials [Elsevier BV]
卷期号:9: 77-91 被引量:48
标识
DOI:10.1016/j.bioactmat.2021.07.027
摘要

Dry eye is a common ocular disease that results in discomfort and impaired vision, impacting an individual's quality of life. A great number of drugs administered in eye drops to treat dry eye are poorly soluble in water and are rapidly eliminated from the ocular surface, which limits their therapeutic effects. Therefore, it is imperative to design a novel drug delivery system that not only improves the water solubility of the drug but also prolongs its retention time on the ocular surface. Herein, we develop a copolymer from mono-functional POSS, PEG, and PPG (MPOSS-PEG-PPG, MPEP) that exhibits temperature-sensitive sol-gel transition behavior. This thermo-responsive hydrogel improves the water solubility of FK506 and simultaneously provides a mucoadhesive, long-acting ocular delivery system. In addition, the FK506-loaded POSS hydrogel possesses good biocompatibility and significantly improves adhesion to the ocular surface. In comparison with other FK506 formulations and the PEG-PPG-FK506 (F127-FK506) hydrogel, this novel MPOSS-PEG-PPG-FK506 (MPEP-FK506) hydrogel is a more effective treatment of dry eye in the murine dry eye model. Therefore, delivery of FK506 in this POSS hydrogel has the potential to prolong drug retention time on the ocular surface, which will improve its therapeutic efficacy in the management of dry eye.
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