脂质体
纳米载体
药物输送
生物利用度
医学
药品管理局
药理学
患者依从性
剂型
药品
玻璃体内给药
全身给药
纳米技术
眼科
材料科学
生物技术
生物
体内
视网膜
急诊医学
作者
Huan Tang,XIAOHONG LI,Lin Jin,Jicheng Dong,Yang Li,Chunmei Li,Lijun Zhang,Fang Cheng
出处
期刊:Biointerphases
[American Institute of Physics]
日期:2025-01-01
卷期号:20 (1)
摘要
The special structure of eyes and the existence of various physiological barriers make ocular drug delivery one of the most difficult problems in the pharmaceutical field. Considering the problems of patient compliance, local administration remains the preferred method of drug administration in the anterior part of eyes. However, local administration suffers from poor bioavailability, need for frequent administration, and systemic toxicity. Administration in the posterior part of the eye is more difficult, and intravitreal injection is often used. But intravitreal injection faces the problems of poor patient compliance and likely side effects after multiple injections. The development of nanocarrier technology provides an effective way to solve these problems. Among them, liposomes, as the most widely used carrier in clinical application, have the characteristics of amphiphilic nanostructure, easy surface modification, extended release time, good biocompatibility, etc. The liposomes are expected to overcome obstacles and effectively deliver drugs to the target site to improve ocular drug bioavailability. This review summarized the various controllable properties of liposomes for ocular delivery as well as the application and research progress of liposomes in various ocular diseases. In addition, we summarized the physiological barriers and routes of administration contained in eyes, as well as the prospects of liposomes in the treatment of ocular diseases.
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