Innovative Nanotechnology in Drug Delivery Systems for Advanced Treatment of Posterior Segment Ocular Diseases

Funduscopic diseases, including diabetic retinopathy (DR) and age‐related macular degeneration (AMD), significantly impact global visual health, leading to impaired vision and irreversible blindness. Delivering drugs to the posterior segment of the eye remains a challenge due to the presence of mult...

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Veröffentlicht in:Advanced Science 2024-08, Vol.11 (32), p.e2403399-n/a
Hauptverfasser: Wu, Yue, Li, Xin, Fu, Xueyu, Huang, Xiaomin, Zhang, Shenrong, Zhao, Nan, Ma, Xiaowei, Saiding, Qimanguli, Yang, Mei, Tao, Wei, Zhou, Xingtao, Huang, Jinhai
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Sprache:eng
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Zusammenfassung:Funduscopic diseases, including diabetic retinopathy (DR) and age‐related macular degeneration (AMD), significantly impact global visual health, leading to impaired vision and irreversible blindness. Delivering drugs to the posterior segment of the eye remains a challenge due to the presence of multiple physiological and anatomical barriers. Conventional drug delivery methods often prove ineffective and may cause side effects. Nanomaterials, characterized by their small size, large surface area, tunable properties, and biocompatibility, enhance the permeability, stability, and targeting of drugs. Ocular nanomaterials encompass a wide range, including lipid nanomaterials, polymer nanomaterials, metal nanomaterials, carbon nanomaterials, quantum dot nanomaterials, and so on. These innovative materials, often combined with hydrogels and exosomes, are engineered to address multiple mechanisms, including macrophage polarization, reactive oxygen species (ROS) scavenging, and anti‐vascular endothelial growth factor (VEGF). Compared to conventional modalities, nanomedicines achieve regulated and sustained delivery, reduced administration frequency, prolonged drug action, and minimized side effects. This study delves into the obstacles encountered in drug delivery to the posterior segment and highlights the progress facilitated by nanomedicine. Prospectively, these findings pave the way for next‐generation ocular drug delivery systems and deeper clinical research, aiming to refine treatments, alleviate the burden on patients, and ultimately improve visual health globally. The revolutionary nanotechnology brings hope to posterior segment ocular diseases. This review delves into the challenges of conventional drug delivery and the advantages of diverse nanomaterials in enhancing drug stability, targeting, and permeability by targeting VEGF, ROS, macrophages. Focusing on the latest developments, this paper examines nanomedicine's potential to transform therapeutic approaches and improve global visual health.
ISSN:2198-3844
2198-3844
DOI:10.1002/advs.202403399