Coco Giulia, Buffon Giacinta, Taloni Andrea, Giannaccare Giuseppe
Department of Clinical Sciences and Translational Medicine, University of Rome Tor Vergata, 00133 Rome, Italy.
Department of Ophthalmology, University "Magna Graecia" of Catanzaro, 88100 Catanzaro, Italy.
Nanomaterials (Basel). 2024 Apr 12;14(8):669. doi: 10.3390/nano14080669.
Dry eye disease (DED) incidence is continuously growing, positioning it to become an emergent health issue over the next few years. Several topical treatments are commonly used to treat DED; however, reports indicate that only a minor proportion of drug bioavailability is achieved by the majority of eye drops available on the market. In this context, enhancing drug ability to overcome ocular barriers and prolonging its residence time on the ocular surface represent a new challenge in the field of ocular carrier systems. Therefore, research has focused on the development of multi-functional nanosystems, such as nanoemulsions, liposomes, dendrimers, hydrogels, and other nanosized carriers. These systems are designed to improve topical drug bioavailability and efficacy and, at the same time, require fewer daily administrations, with potentially reduced side effects. This review summarizes the different nanotechnologies developed, their role in DED, and the nanotechnology-based eyedrops currently approved for DED treatment.
干眼症(DED)的发病率持续上升,使其在未来几年成为一个新兴的健康问题。几种局部治疗方法常用于治疗干眼症;然而,报告显示,市面上大多数眼药水的药物生物利用度仅为一小部分。在此背景下,提高药物克服眼部屏障的能力并延长其在眼表的停留时间,成为眼用载体系统领域的一项新挑战。因此,研究集中在多功能纳米系统的开发上,如纳米乳剂、脂质体、树枝状大分子、水凝胶和其他纳米级载体。这些系统旨在提高局部药物的生物利用度和疗效,同时减少每日给药次数,并可能降低副作用。本综述总结了已开发的不同纳米技术、它们在干眼症中的作用,以及目前已获批用于干眼症治疗的基于纳米技术的眼药水。