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Diffusion-Based Design of Multi-Layered Ophthalmic Lenses for Controlled Drug Release

机译:基于扩散的多层眼药水控释药物设计

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摘要

The study of ocular drug delivery systems has been one of the most covered topics in drug delivery research. One potential drug carrier solution is the use of materials that are already commercially available in ophthalmic lenses for the correction of refractive errors. In this study, we present a diffusion-based mathematical model in which the parameters can be adjusted based on experimental results obtained under controlled conditions. The model allows for the design of multi-layered therapeutic ophthalmic lenses for controlled drug delivery. We show that the proper combination of materials with adequate drug diffusion coefficients, thicknesses and interfacial transport characteristics allows for the control of the delivery of drugs from multi-layered ophthalmic lenses, such that drug bursts can be minimized, and the release time can be maximized. As far as we know, this combination of a mathematical modelling approach with experimental validation of non-constant activity source lamellar structures, made of layers of different materials, accounting for the interface resistance to the drug diffusion, is a novel approach to the design of drug loaded multi-layered contact lenses.
机译:眼部药物输送系统的研究一直是药物输送研究中涵盖最多的主题之一。一种潜在的药物载体解决方案是使用眼科镜片中已经市售的材料来校正屈光不正。在这项研究中,我们提出了一种基于扩散的数学模型,其中可以基于在受控条件下获得的实验结果来调整参数。该模型允许设计用于控制药物输送的多层治疗眼科镜片。我们表明,具有足够的药物扩散系数,厚度和界面传输特性的材料的适当组合可以控制从多层眼科镜片递送药物,从而可以最大程度地减少药物爆发,并可以最大程度地延长释放时间。据我们所知,这种数学建模方法与非恒定活性源层状结构(由不同材料制成的层)的实验验证相结合,说明了对药物扩散的界面阻力,是一种新颖的设计方法。载药多层隐形眼镜。

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