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Self-implantable double-layered micro-drug-reservoirs for efficient and controlled ocular drug delivery.


ABSTRACT: Eye diseases and injuries impose a significant clinical problem worldwide. Safe and effective ocular drug delivery is, however, challenging due to the presence of ocular barriers. Here we report a strategy using an eye patch equipped with an array of detachable microneedles. These microneedles can penetrate the ocular surface tissue, and serve as implanted micro-reservoirs for controlled drug delivery. The biphasic drug release kinetics enabled by the double-layered micro-reservoirs largely enhances therapeutic efficacy. Using corneal neovascularization as the disease model, we show that delivery of an anti-angiogenic monoclonal antibody (DC101) by such eye patch produces ~90% reduction of neovascular area. Furthermore, quick release of an anti-inflammatory compound (diclofenac) followed by a sustained release of DC101 provides synergistic therapeutic outcome. The eye patch application is easy and minimally invasive to ensure good patient compliance. Such intraocular drug delivery strategy promises effective home-based treatment of many eye diseases.

SUBMITTER: Than A 

PROVIDER: S-EPMC6219513 | biostudies-literature | 2018 Nov

REPOSITORIES: biostudies-literature

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Self-implantable double-layered micro-drug-reservoirs for efficient and controlled ocular drug delivery.

Than Aung A   Liu Chenghao C   Chang Hao H   Duong Phan Khanh PK   Cheung Chui Ming Gemmy CMG   Xu Chenjie C   Wang Xiaomeng X   Chen Peng P  

Nature communications 20181106 1


Eye diseases and injuries impose a significant clinical problem worldwide. Safe and effective ocular drug delivery is, however, challenging due to the presence of ocular barriers. Here we report a strategy using an eye patch equipped with an array of detachable microneedles. These microneedles can penetrate the ocular surface tissue, and serve as implanted micro-reservoirs for controlled drug delivery. The biphasic drug release kinetics enabled by the double-layered micro-reservoirs largely enha  ...[more]

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