PEG比率
乙二醇
化学
眼球后段
药物输送
纳米颗粒
巩膜
分布(数学)
生物医学工程
视网膜
表面改性
生物物理学
治疗效果
曲安奈德
体内分布
材料科学
药理学
IRIS(生物传感器)
新生血管
眼药水
毒品携带者
体内
聚乙二醇
眼科
结膜
作者
Yidan Wei,Renfang Zhu,Yan Xu,Qi Qi,Ye Yuan,Ying Mao,Jinsong Zhang,Jian Guan,Xi Zhang,Shirui Mao
标识
DOI:10.1002/adhm.202503628
摘要
Short residence time and off-target accumulation restrict ocular posterior delivery via topical administration. How to improve posterior drug delivery through non-invasive method is the issue to be addressed. Inspired by the higher posterior delivery efficiency of conjunctival-scleral pathway and hydrophilicity-related tissue preference, the objective is to verify the feasibility of altering posterior tissue distribution via conjunctival-scleral pathway by tuning nanoparticles (NPs) hydrophilicity. Herein, triamcinolone acetonide-loaded NPs with different surface hydrophilicity were prepared by mixing poly(lactide-co-glycolide) and poly(lactide-co-glycolide)-polyethylene glycol (PLGA-PEG) at different ratios. 3.5% and 16.7% PEG NPs displayed 1.5- and 1.8-fold higher sclera Papp than 0% PEG NPs. Furthermore, the higher the surface hydrophilicity, the more NPs in conjunctiva but less in cornea, 3.5% and 16.7% PEG NPs showed 1.4- and 1.8-fold higher choroid-retina distribution than 0% PEG NPs via conjunctival-scleral pathway. The higher posterior delivery was confirmed by enhanced therapeutic efficacy in vascular endothelial growth factor-induced retinal neovascularization rabbit model. After dropped twice daily for 14 days, 3.5% and 16.7% PEG NPs reached comparable therapeutic effect with intravitreal injection. This study demonstrated the significance of NPs surface hydrophilicity in posterior delivery, providing theoretical basis for rational design of NPs for ocular posterior diseases therapy by topical dropping.
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