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Convection-Enhanced Intravitreous Drug Delivery in Human Eye

机译:对流增强人眼玻璃体内给药

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摘要

Two-dimensional computational model has been developed for simulation of convection-assisted drug transport during intravitreal drug delivery for vitrectomized human eye. The convection current in vitreous humor was induced by laser heating. The model drug fluorescein was placed initially in different positions inside the vitreous. The transport of drug, taking the natural convection flow into account, was numerically solved using appropriate conservation equations. For a simulation period of 60min, the convection-assisted diffusion increased the average drug mass fraction in the retinal target region by 5.7 times compared to the pure diffusion model, in case of central depot. Even for low dif-fusivity high molecular weight compounds, the convection in vitreous proved useful in enhancing the transport across vitreous. The study showed that inducing convection in vitreous could be potentially used for drug delivery in eve. Also laser heating could be explored as an option to enhance the delivery of drug to the posterior segment of the eye.
机译:已经开发了二维计算模型,用于模拟玻璃体切开的人眼玻璃体内给药期间对流辅助药物的运输。玻璃体液中的对流是由激光加热引起的。最初将模型药物荧光素放置在玻璃体内的不同位置。考虑到自然对流,利用适当的守恒方程对药物的传输进行了数值求解。在60分钟的模拟时间内,对流辅助扩散在中央贮库的情况下,与纯扩散模型相比,视网膜靶区域的平均药物质量分数增加了5.7倍。即使对于低扩散性的高分子量化合物,玻璃体中的对流也被证明有助于增强跨玻璃体的运输。该研究表明,在玻璃体中诱导对流可潜在用于前夜药物输送。也可以探索激光加热作为增强药物向眼后段的递送的一种选择。

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