叶黄素
黄斑变性
脉络膜新生血管
癌症研究
医学
活性氧
药理学
新生血管
病变
氧化应激
治疗效果
材料科学
视网膜
血管内皮生长因子
玻璃体内给药
眼科
血管生成
氧化损伤
变性(医学)
角膜新生血管
失明
视网膜
脉络膜
生长因子
病态的
作者
Yong Li,Fan Xiao,Ziwei Liu,Yin Zhang,Jinshi Yu,Yiquan Chen,Hongxian Pan,Ning Xu,Feiyin Sheng,Haijie Han,Qiuli Fu,Shu Zhang,Jing Gao,Wei Tao,Ke Yao,Na Kong
摘要
Age-related macular degeneration (AMD) is the leading cause of irreversible blindness among the elderly, driven by oxidative stress, chronic inflammation, and pathological choroidal neovascularization (CNV). Although intravitreal anti-vascular endothelial growth factor (VEGF) therapies remain the current clinical standard, their invasive nature and requirement for long-term repeated injections present substantial risks and patient burden, underscoring an urgent need for noninvasive therapeutic alternatives. Here, we develop a noninvasive, cornea-penetrating nanodrug based on chitosan-modified lipid-polymer hybrid nanoparticles (LPNPs) for co-delivery of lutein and VEGF-silencing siRNA (Chi@Lu/si NPs) to treat AMD. The structurally stabilized nanoparticles overcome the intrinsic instability of siRNA and the poor solubility of lutein, while the chitosan coating confers strong mucoadhesion and transient modulation of epithelial tight junctions, enabling a 3.3-fold enhancement in trans-epithelial transport across the ocular surface. Once delivered to the posterior segment, lutein effectively scavenges excessive reactive oxygen species and suppresses inflammatory cascades, whereas siRNA-VEGF achieves precise VEGF gene silencing, collectively interrupting the pathological cycle driving CNV progression. In a laser-induced CNV mouse model, topical administration of Chi@Lu/si NPs twice daily exerted potent inhibitory effects on neovascularization, with therapeutic efficacy comparable to that of intravitreal bevacizumab, reducing CNV lesion thickness to 58.9% of pre-treatment levels while maintaining excellent ocular biocompatibility.
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