School of Optometry and Vision Science, University of New South Wales (UNSW) , Sydney , Australia.
Curr Eye Res. 2019 Oct;44(10):1037-1046. doi: 10.1080/02713683.2019.1660793. Epub 2019 Sep 3.
: The aim of the current review was to summarize the current applications, the latest advances and importantly, highlight research gaps in the use of quantum dots in the eye. Quantum dots are nanoscale semiconductor crystals with characteristic size and tunable optical properties, which deliver bright and stable fluorescence suitable for bioimaging and labelling. : A systematic search was conducted following the PRISMA guidelines. This review systematically searched published data to summarize the characteristics and applications of quantum dots in ophthalmology. Two hundred and eighty published articles were initially selected for this review following searches using the criteria quantum dots AND nanoparticles AND ophthalmology in the databases PubMed, MEDLINE, Scopus, Embase and Web of Science. : After duplicates were removed, a total of 22 eligible articles were included for the review. Quantum dots potentially provide a range of diagnostic and therapeutic applications in ophthalmology. Quantum dots offer visible and near-infrared emission, which is highly desirable for bioimaging, due to reduced light scattering and low tissue absorption. Their applications include bioimaging, labelling of cells and tissues, delivery of genes or drugs and as antimicrobial composites. : Quantum dots have been used in ophthalmology for bioimaging, electrical stimulation and tracking of gene/stems cells, and ocular lymphatics. However, there is no detailed description of their desirable characteristics for use in ophthalmology, and there is limited information about their cytotoxicity to ocular cells and tissues.
总结当前量子点在眼部的应用、最新进展,并重点阐明其研究空白。量子点是纳米级半导体晶体,具有特征尺寸和可调光学特性,可提供适合生物成像和标记的明亮、稳定荧光。
按照 PRISMA 指南进行系统检索。本综述系统检索了已发表的数据,总结了量子点在眼科学中的特性和应用。通过在 PubMed、MEDLINE、Scopus、Embase 和 Web of Science 数据库中使用“quantum dots AND nanoparticles AND ophthalmology”这一标准进行检索,初步筛选出 280 篇相关文章。
经去除重复后,共有 22 篇符合条件的文章纳入本综述。量子点在眼科学中具有广泛的诊断和治疗应用潜力。量子点具有可见光和近红外发射特性,光散射和组织吸收低,非常适合生物成像。其应用包括生物成像、细胞和组织标记、基因或药物递送以及作为抗菌复合材料。
量子点已应用于眼科学的生物成像、电刺激和追踪基因/干细胞以及眼部淋巴管。然而,目前尚缺乏其在眼科学中应用的理想特性的详细描述,且有关其对眼部细胞和组织的细胞毒性的信息有限。