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内耳局部经圆窗膜药物转运的数学模型

Mathematical modeling for local trans-round window membrane drug transport in the inner ear.

作者信息

Zhang Yue, Su Huanpeng, Wen Lu, Yang Fan, Chen Gang

机构信息

a School of Pharmacy, Guangdong Pharmaceutical University , Guangzhou , China.

出版信息

Drug Deliv. 2016 Oct;23(8):3082-3087. doi: 10.3109/10717544.2016.1149745. Epub 2016 Mar 2.

Abstract

The structure and composition of the round window membrane (RWM) make it a particularly effective pathway for drug delivery to the inner ear. Therefore, predicting the efficiency of RWM transport would provide useful information for enhancing local application. In the present study, a mathematical model was established to achieve this goal. A series of drugs with different physicochemical properties were introduced in the inner ear cavity of guinea pigs via RWM by intratympanic application. The perilymphatic drug concentration (C) data were used to calculate the permeability coefficient (K) of different drugs diffusing through the RWM. The experimental data were fitted using the Matlab software to set up the numerical model based on Fick's diffusion law and the single-compartment model following extravascular administration, which facilitated the prediction of the permeation profiles of different drugs while trans-RWM. In summary, this mathematical model is a contribution toward developing potentially useful RWM administration simulating tools.

摘要

圆窗膜(RWM)的结构和组成使其成为药物输送至内耳的特别有效途径。因此,预测RWM转运效率将为增强局部应用提供有用信息。在本研究中,建立了一个数学模型以实现这一目标。通过鼓膜内给药,将一系列具有不同理化性质的药物经RWM引入豚鼠内耳腔。利用外淋巴液药物浓度(C)数据计算不同药物透过RWM的渗透系数(K)。使用Matlab软件对实验数据进行拟合,基于菲克扩散定律和血管外给药后的单室模型建立数值模型,这有助于预测不同药物经RWM转运时的渗透情况。总之,这个数学模型有助于开发潜在有用的RWM给药模拟工具。

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