Eye Center, the Second Affiliated Hospital, School of Medicine, Zhejiang University, 88 Jiefang Road, Hangzhou, 310009, People's Republic of China.
Zhejiang Provincial Key Lab of Ophthalmology, the Second Affiliated Hospital, School of Medicine, Zhejiang University, 88 Jiefang Road, Hangzhou, 310009, People's Republic of China.
Drug Deliv Transl Res. 2021 Aug;11(4):1352-1375. doi: 10.1007/s13346-021-00966-x. Epub 2021 Apr 11.
Ocular infection induced by bacteria and fungi is a major cause of visual impairment and blindness. Topical administration of antibiotics remains the first-line treatment, as effective eradication of pathogens is the core of the anti-infection strategy. Whereas, eye drops lack efficiency and have relatively low bioavailability. Intraocular injection may cause concurrent ocular damage and secondary infection. In addition, antibiotic-based management can be limited by the low sensitivity to multidrug-resistant bacteria. Nanomedicine is proposed as a prospective, effective, and noninvasive platform to mediate ocular delivery and combat pathogen or even resistant strains. Nanomedicine can not only carry antimicrobial agents to fight against pathogens but also directly active microbicidal capability, killing pathogens. More importantly, by modification, nanomedicine can achieve enhanced residence time and release time on the cornea, and easy penetration through corneal tissues into anterior and posterior segments of the eye, thus improving the therapeutic effect for ocular infection. In this review, several categories of antimicrobial nanomedicine are systematically discussed, where the efficiency and possibility of further embellishment and improvement to adapt to clinical use are also investigated. All in all, novel antimicrobial nanomedicine provides potent and prospective ways to manage severe and refractory ocular infections.
细菌和真菌感染引起的眼部感染是导致视力损害和失明的主要原因。局部应用抗生素仍然是一线治疗方法,因为有效根除病原体是抗感染策略的核心。然而,眼药水的疗效低,生物利用度相对较低。眼内注射可能会导致眼内同时损伤和继发感染。此外,基于抗生素的治疗可能受到对多药耐药菌敏感性低的限制。纳米医学被提出作为一种有前途的、有效的、非侵入性的平台,用于介导眼部递药并对抗病原体甚至耐药株。纳米医学不仅可以携带抗菌剂来对抗病原体,还可以直接发挥杀菌作用,杀死病原体。更重要的是,通过修饰,纳米医学可以在角膜上实现增强的停留时间和释放时间,并容易穿透角膜组织进入眼睛的前节和后节,从而提高眼部感染的治疗效果。在这篇综述中,系统地讨论了几类抗菌纳米医学,还研究了进一步修饰和改进以适应临床应用的效率和可能性。总之,新型抗菌纳米医学为治疗严重和难治性眼部感染提供了有力的、有前景的方法。