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眼部疾病的基础、挑战和基于纳米医学的解决方案。

Fundamentals, challenges, and nanomedicine-based solutions for ocular diseases.

机构信息

Department of Biological Sciences and Bioengineering, Indian Institute of Technology Kanpur, Kanpur, India.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2019 Jul;11(4):e1548. doi: 10.1002/wnan.1548. Epub 2018 Dec 3.

Abstract

The eye consists of sensitive, compactly adjoined tissue structures which act as strong physical (static) and physiological (dynamic) barriers that prevent entry of foreign bodies into the eye. Together, these barriers reduce the bioavailability of topically and intraocularly administered medicaments thus demanding frequent drug administration for the treatment of chronic eye diseases. Hence, development of drug delivery systems (DDS) that can be retained in ocular tissues for longer durations can help to reduce the frequency of drug administration, whereas, delivery systems that traverse through ocular barriers may offer higher bioavailability of administered drugs to otherwise inaccessible ocular tissues. These objectives can be partially/fully achieved using nanoparticulate/colloidal DDS. Colloidal DDS, due to their nanodimensions, undergo internalization by cells which enables transport of drugs through ocular barriers. Furthermore, nanoparticles can prolong duration of drug release and can increase residence time of entrapped cargo molecules in ocular tissues. Together, these aspects facilitate a higher bioavailability, prolonged therapeutic effect and reduced frequency of drug administration for the effective treatment of chronic ocular diseases. Hence, nanocarriers have been widely explored for ophthalmic drug delivery applications. In this review, we discuss the anatomy of ocular tissues along with their barrier properties. We then discuss ocular diseases along with the various routes of drug administration and pathways of drug transport in the eye. The next section discusses the influence of physicochemical properties of therapeutic molecules on their ocular distribution and conventional and advanced (nanoparticulate/colloidal DDS) drug formulations that are used for the treatment of ocular diseases. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Neurological Disease Therapeutic Approaches and Drug Discovery > Emerging Technologies Nanotechnology Approaches to Biology > Nanoscale Systems in Biology.

摘要

眼睛由敏感、紧密相连的组织结构组成,这些结构充当强大的物理(静态)和生理(动态)屏障,防止异物进入眼睛。这些屏障共同降低了局部和眼内给予的药物的生物利用度,因此需要频繁给药来治疗慢性眼病。因此,开发可以在眼部组织中保留更长时间的药物传递系统(DDS)可以帮助减少给药频率,而穿越眼部屏障的传递系统可以为其他无法到达的眼部组织提供更高的药物生物利用度。这些目标可以通过使用纳米颗粒/胶体 DDS 部分/完全实现。胶体 DDS 由于其纳米尺寸,会被细胞内化,从而使药物能够穿过眼部屏障。此外,纳米颗粒可以延长药物释放的持续时间,并增加眼部组织中包裹货物分子的停留时间。这些方面共同促进了更高的生物利用度、更长的治疗效果和减少给药频率,从而有效治疗慢性眼部疾病。因此,纳米载体已被广泛探索用于眼部药物递送应用。在这篇综述中,我们讨论了眼部组织的解剖结构及其屏障特性。然后,我们讨论了眼部疾病以及药物在眼部的各种给药途径和药物传输途径。下一节讨论了治疗分子的物理化学性质对其眼部分布的影响,以及用于治疗眼部疾病的常规和先进(纳米颗粒/胶体 DDS)药物制剂。本文属于以下类别: 治疗方法和药物发现 > 用于神经疾病的纳米医学 治疗方法和药物发现 > 新兴技术 纳米技术在生物学中的应用 > 生物学中的纳米尺度系统。

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