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Combined Experimental Approach and Finite Element Modeling of Small Molecule Transport Through Joint Synovium to Measure Effective Diffusivity

机译:通过联合臂环测量小分子输送的组合实验方法和有限元模型测量有效扩散性

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Trans-synovial solute transport plays a critical role in the clearance of intra-articularly (IA) delivered drugs. In this study, we present a computational finite element model (FEM) of solute transport through the synovium validated by experiments on synovial explants. Unsteady diffusion of urea, a small uncharged molecule, was measured through devitalized porcine and human synovium using custom-built diffusion chambers. A multiphasic computational model was constructed and optimized with the experimental data to extract effective diffusivity for urea within the synovium. A monotonic decrease in urea concentration was observed in the donor bath over time, with an effective diffusivity found to be an order of magnitude lower in synovium versus that measured in free solution. Parametric studies incorporating an intimal cell layer with varying thickness and varying effective diffusivities were performed, revealing a dependence of drug clearance kinetics on both parameters. The findings of this study indicate that the synovial matrix impedes urea solute transport out of the joint with little retention of the solute in the matrix.
机译:Trans-Sweovial Solute Transurance在递送药物的内术(IA)的清除中起着关键作用。在这项研究中,我们通过在滑膜外外科植体的实验验证的Synovium来介绍溶质转运的计算有限元模型(FEM)。使用定制的扩散室通过可生长的猪和人的滑杆测量尿素的不稳定扩散。用实验数据构建和优化多相计算模型,以提取舌内尿素的有效扩散性。在供体浴中观察到尿素浓度的单调减少随时间的推移,发现有效的扩散率,其在游离溶液中测量的Synovium与Synovium的数量级。进行包含具有不同厚度和变化有效扩散性的内膜细胞层的参数研究,揭示了药物清除动力学对两个参数的依赖性。该研究的发现表明,滑膜基质将尿素溶质输送从基质中溶于溶质较少。

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