Recent advances in nanocrystal-based technologies applied for ocular drug delivery.

Expert opinion on drug delivery Pub Date : 2024-02-01 Epub Date: 2024-01-30 DOI:10.1080/17425247.2024.2311119
Feiyang Geng, Xingyan Fan, Yu Liu, Weiyue Lu, Gang Wei
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Abstract

Introduction: The intricate physiological barriers of the eye and the limited volume of eye drops impede efficient delivery of poorly water-soluble drugs. In the last decade, nanocrystals have emerged as versatile drug delivery systems in various administration routes from bench to bedside. The unique superiorities of nanocrystals, mainly embodied in high drug-loading capacity, good mucosal adhesion and penetration, and greatly improved drug solubility, reveal a promising prospect for ocular delivery of poorly water-soluble drugs.

Areas covered: This article focuses on the ophthalmic nanocrystal technologies and products that are in the literature, clinical trials, and even on the market. The recent research progress in the preparation, ocular application, and absorption of nanocrystals are highlighted, and the pros and cons of nanocrystals in overcoming the physiological barriers of the eye are also summarized.

Expert opinion: Nanocrystals have demonstrated success as glucocorticoid eye drops in the treatment of anterior segment diseases. However, the thermodynamic stability of nanocrystals remains the major challenge in product development. New technologies for efficiently optimizing stabilizers and sterilization processes are still expected. Strategies to confer more diverse functions via surface modification are also worth exploration to improve the potential of nanocrystals in delivering poorly water-soluble drugs to posterior segment of the eye.

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应用于眼部给药的纳米晶体技术的最新进展。
导言:眼部复杂的生理屏障和眼药水有限的容量阻碍了水溶性差药物的有效输送。近十年来,纳米晶体作为一种多功能给药系统出现在从实验室到病床的各种给药途径中。纳米晶体具有独特的优越性,主要体现在载药量大、粘膜粘附性和渗透性好、药物溶解度大大提高等方面,为眼部给药水溶性差的药物提供了广阔的前景:本文重点介绍文献、临床试验甚至市场上出现的眼科纳米晶体技术和产品。重点介绍了纳米晶体在制备、眼部应用和吸收方面的最新研究进展,并总结了纳米晶体在克服眼部生理障碍方面的利弊:纳米晶体作为糖皮质激素滴眼液在治疗前节疾病方面取得了成功。然而,纳米晶体的热力学稳定性仍是产品开发的主要挑战。有效优化稳定剂和灭菌工艺的新技术仍值得期待。通过表面改性赋予纳米晶体更多不同功能的策略也值得探索,以提高纳米晶体向眼球后段输送水溶性差的药物的潜力。
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