Advanced Nanotechnology‐Driven Innovations for Corneal Neovascularization Therapy: Smart Drug Delivery and Enhanced Treatment Strategies

药物输送 材料科学 纳米技术 角膜新生血管 黄斑变性 新生血管 纳米医学 医学 眼科 癌症研究 血管生成 纳米颗粒
作者
Xiaomin Huang,Yue Wu,Kexin Li,Wenqian Xing,Nan Zhao,Zhongxing Chen,Wei Tao,Xingtao Zhou,Mei Yang,Jinhai Huang
出处
期刊:Advanced Materials [Wiley]
卷期号:37 (43): e2508726-e2508726 被引量:1
标识
DOI:10.1002/adma.202508726
摘要

Abstract Corneal neovascularization (CoNV) is a major global contributor to visual impairment, significantly affecting patients' vision and overall quality of life. Traditional treatment modalities often prove inadequate, constrained by limited bioavailability, and their extended use may result in serious complications, including secondary infections, glaucoma, and cataracts. However, recent progress in nanomaterials has led to promising therapeutic approaches for CoNV therapy. These nanomaterials, serving as carriers for anti‐vascular endothelial growth factor (anti‐VEGF) drugs or corticosteroids, exhibit remarkable capabilities in efficient penetration, adhesion, targeted drug delivery, and controlled release. Furthermore, they demonstrate independent inhibitory effects on neovascularization, thereby paving the way for a comprehensive treatment strategy that encompasses both the microenvironment and molecular pathways. This review offers a systematic classification of innovative drug delivery systems specifically tailored for the cornea. It provides an overview of effective strategies and compiles the latest advancements in cutting‐edge nanotherapy technologies for CoNV. By delving into the intricacies of ocular barriers and neovascularization mechanisms, this review elucidates crucial biological factors and regulatory pathways, highlights the prevalent challenges in ophthalmic medicine, and underscores the significant potential of nanomaterials in revolutionizing CoNV treatment. This in‐depth analysis establishes a scientific foundation for precision medicine and clinical transformation in the field of CoNV.
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