Scheive Melanie, Yazdani Saeed, Hajrasouliha Amir R
Indiana University School of Medicine, Indianapolis, IN, USA.
Indiana University-Purdue University Indianapolis, Indianapolis, IN, USA.
Ther Adv Ophthalmol. 2021 Mar 22;13:25158414211003381. doi: 10.1177/25158414211003381. eCollection 2021 Jan-Dec.
The clinical application of nanotechnology in medicine is promising for therapeutic, diagnostic, and surgical improvements in the near future. Nanotechnologies in nano-ophthalmology are in the early stages of application in clinical contexts, including ocular drug and gene delivery systems addressing eye disorders, particularly retinopathies. Retinal diseases are challenging to treat as current interventions, such as intravitreal injections, are limited by their invasive nature. This review examines nanotechnological approaches to retinal diseases in a clinical context. Nanotechnology has the potential to transform pharmacological and surgical interventions by overcoming limitations posed by the protective anatomical and physiological barriers that limit access to the retina. Preclinical research in the application of nanoparticles in diagnostics indicates that nanoparticles can enhance existing diagnostic and screening tools to detect diseases earlier and more easily and improve disease progression monitoring precision.
纳米技术在医学中的临床应用有望在不久的将来改善治疗、诊断和手术水平。纳米眼科中的纳米技术正处于临床应用的早期阶段,包括用于治疗眼部疾病,特别是视网膜病变的眼部药物和基因递送系统。视网膜疾病的治疗具有挑战性,因为目前的干预措施,如玻璃体内注射,受到其侵入性的限制。本文综述了纳米技术在临床背景下治疗视网膜疾病的方法。纳米技术有可能通过克服限制进入视网膜的解剖和生理保护屏障所带来的限制,从而改变药物治疗和手术干预方式。纳米颗粒在诊断应用中的临床前研究表明,纳米颗粒可以增强现有的诊断和筛查工具,以便更早、更轻松地检测疾病,并提高疾病进展监测的精度。