Cai Ruijun, Zhang Ling, Chi Hao
Department of Pharmacy, The People's Hospital of Jiuquan, Jiuquan, Gansu, China.
Qingdao Municipal Hospital, University of Health and Rehabilitation Sciences, Qingdao, China.
Front Bioeng Biotechnol. 2023 Aug 4;11:1246974. doi: 10.3389/fbioe.2023.1246974. eCollection 2023.
The eye, being one of the most intricate organs in the human body, hosts numerous anatomical barriers and clearance mechanisms. This highlights the importance of devising a secure and efficacious ocular medication delivery system. Over the past several decades, advancements have been made in the development of a nano-delivery platform based on polymeric micelles. These advancements encompass diverse innovations such as poloxamer, chitosan, hydrogel-encapsulated micelles, and contact lenses embedded with micelles. Such technological evolutions allow for sustained medication retention and facilitate enhanced permeation within the eye, thereby standing as the avant-garde in ocular medication technology. This review provides a comprehensive consolidation of ocular medications predicated on polymer nanomicelles from 2014 to 2023. Additionally, it explores the challenges they pose in clinical applications, a discussion intended to aid the design of future clinical research concerning ocular medication delivery formulations.
眼睛作为人体最复杂的器官之一,拥有众多解剖学屏障和清除机制。这凸显了设计一个安全有效的眼部药物递送系统的重要性。在过去几十年里,基于聚合物胶束的纳米递送平台取得了进展。这些进展包括多种创新,如泊洛沙姆、壳聚糖、水凝胶包裹的胶束以及嵌入胶束的隐形眼镜。此类技术进步可实现药物的持续留存,并促进药物在眼内的渗透增强,从而成为眼部药物技术的前沿。本综述全面整合了2014年至2023年基于聚合物纳米胶束的眼部药物。此外,还探讨了它们在临床应用中面临的挑战,这一讨论旨在辅助未来关于眼部药物递送制剂的临床研究设计。