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Darcy Permeability of Agarose-Glycosaminoglycan Gels Analyzed Using Fiber-Mixture and Donnan Models

机译:使用纤维混合物和Donnan模型分析琼脂糖-糖胺聚糖凝胶的达西渗透率

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摘要

Agarose-glycosaminoglycan (GAG) membranes were synthesized to provide a model system in which the factors controlling the Darcy (or hydraulic) permeability could be assessed in composite gels of biological relevance. The membranes contained a GAG (chondroitin sulfate) that was covalently bound to agarose via terminal amine groups, and the variables examined were GAG concentration and solution ionic strength. The addition of even small amounts of GAG (0.4 vol/vol %) resulted in a twofold reduction in the Darcy permeability of 3 vol/vol % agarose gels. Electrokinetic coupling, caused by the negative charge of the GAG, resulted in an additional twofold reduction in the open-circuit permeability when the ionic strength was decreased from 1 M to 0.01 M. A microstructural hydrodynamic model was developed, based on a mixture of neutral, coarse fibers (agarose fibrils), and fine, charged fibers (GAG chains). Heterogeneity within agarose gels was modeled by assuming that fiber-rich, spherical inclusions were distributed throughout a fiber-poor matrix. That model accurately predicted the Darcy permeability when the ionic strength was high enough to suppress the effects of charge, but underestimated the influence of ionic strength. A more macroscopic approach, based on Donnan equilibria, better captured the reductions in Darcy permeability caused by GAG charge.
机译:琼脂糖-糖胺聚糖(GAG)膜被合成以提供一个模型系统,其中控制达西(或水力)渗透性的因素可以在生物相关的复合凝胶中评估。膜包含通过末端胺基团与琼脂糖共价结合的GAG(硫酸软骨素),检测的变量为GAG浓度和溶液离子强度。甚至加入少量GAG(0.4 vol / vol%)会使3 vol / vol%琼脂糖凝胶的达西渗透率降低两倍。当离子强度从1 M降低到0.01 M时,由GAG的负电荷引起的电动耦合导致开路渗透性额外降低两倍。建立了基于中性混合物的微观结构流体动力学模型,粗纤维(琼脂糖原纤维)和细的带电纤维(GAG链)。琼脂糖凝胶内的异质性是通过假设富含纤维的球形夹杂物分布在整个纤维贫乏的基质中来建模的。当离子强度足够高以抑制电荷影响时,该模型可以准确地预测达西磁导率,但会低估离子强度的影响。一种基于Donnan平衡的更宏观的方法可以更好地捕获由GAG电荷引起的达西渗透率的降低。

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