Kaur Geetika, Bisen Shivantika, Singh Nikhlesh K
Biophys Rev (Melville). 2024 Nov 5;5(4):041305. doi: 10.1063/5.0214899. eCollection 2024 Dec.
Nanotechnology has demonstrated tremendous promise in the realm of ocular illnesses, with applications for disease detection and therapeutic interventions. The nanoscale features of nanoparticles enable their precise interactions with retinal tissues, allowing for more efficient and effective treatments. Because biological organs are compatible with diverse nanomaterials, such as nanoparticles, nanowires, nanoscaffolds, and hybrid nanostructures, their usage in biomedical applications, particularly in retinal illnesses, has increased. The use of nanotechnology in medicine is advancing rapidly, and recent advances in nanomedicine-based diagnosis and therapy techniques may provide considerable benefits in addressing the primary causes of blindness related to retinal illnesses. The current state, prospects, and challenges of nanotechnology in monitoring nanostructures or cells in the eye and their application to regenerative ophthalmology have been discussed and thoroughly reviewed. In this review, we build on our previously published review article in 2021, where we discussed the impact of nano-biomaterials in retinal regeneration. However, in this review, we extended our focus to incorporate and discuss the application of nano-biomaterials on all retinal diseases, with a highlight on nanomedicine-based diagnostic and therapeutic research studies.
纳米技术在眼部疾病领域已展现出巨大潜力,可用于疾病检测和治疗干预。纳米颗粒的纳米级特性使其能够与视网膜组织进行精确相互作用,从而实现更高效的治疗。由于生物器官与多种纳米材料(如纳米颗粒、纳米线、纳米支架和混合纳米结构)具有兼容性,它们在生物医学应用中的使用,尤其是在视网膜疾病中的使用有所增加。纳米技术在医学领域正迅速发展,基于纳米医学的诊断和治疗技术的最新进展可能会为解决与视网膜疾病相关的失明主要原因带来显著益处。本文已对纳米技术在眼部监测纳米结构或细胞方面的现状、前景和挑战及其在再生眼科中的应用进行了讨论和全面综述。在本综述中,我们以2021年发表的综述文章为基础,在那篇文章中我们讨论了纳米生物材料对视网膜再生的影响。然而,在本综述中,我们将重点扩展到纳入并讨论纳米生物材料在所有视网膜疾病中的应用,特别强调基于纳米医学的诊断和治疗研究。