论文标题
粒子扩散率和无均匀水凝胶系统中的颗粒扩散率和时间分辨的渗透率
Particle Diffusivity and Free-Energy Profiles in Inhomogeneous Hydrogel Systems from Time-Resolved Penetration Profiles
论文作者
论文摘要
提出了一种同时确定渗透到不均匀水凝胶系统的颗粒的扩散率和自由能特征的合并实验/理论方法。作为唯一的输入,需要从标记的示踪剂颗粒的荧光强度数据中进行任意归一化的浓度曲线,以用于不同的穿透时间。该方法应用于不同尺寸的葡聚糖分子,这些葡萄糖分子渗透到具有不同长度的聚乙二醇(PEG)链的水凝胶中,这些长度与超支多甘油(HPG)枢纽共价交联。提取的葡萄糖大体扩散与分别获得的荧光相关光谱数据非常吻合。葡聚糖扩散率和水凝胶内部的自由能的缩放定律被确定为葡聚糖质量的函数。包括Dextran以及PEG接头的灵活性在内的弹性自由体积模型描述了排斥性的Dextran-Hydreclel相互作用的自由能,即定量性的,量词,此外,还表明水凝胶网状尺寸分布相当宽,粒子穿透性较大,颗粒渗透由大型水凝胶孔主导。颗粒渗透到水凝胶中是针对空间颗粒 - 凝胶相互作用,因此建议由弹性尺寸过滤机制控制,该机制涉及水凝胶孔径分布的尾部。
A combined experimental/theoretical method to simultaneously determine diffusivity and free-energy profiles of particles that penetrate into inhomogeneous hydrogel systems is presented. As the only input, arbitrarily normalized concentration profiles from fluorescence intensity data of labeled tracer particles for different penetration times are needed. The method is applied to dextran molecules of varying size which penetrate into hydrogels of polyethylene-glycol (PEG) chains with different lengths that are covalently cross-linked by hyperbranched polyglycerol (hPG) hubs. Extracted dextran bulk diffusivities agree well with fluorescence correlation spectroscopy data obtained separately. Scaling laws for dextran diffusivities and free energies inside the hydrogel are identified as a function of the dextran mass. An elastic free-volume model that includes dextran as well as PEG linker flexibility describes the repulsive dextran-hydrogel interaction free energy, which is of steric origin, quantitatively and furthermore suggests that the hydrogel mesh-size distribution is rather broad and particle penetration is dominated by large hydrogel pores. Particle penetration into hydrogels is for steric particle-hydrogel interactions thus suggested to be governed by an elastic size-filtering mechanism that involves the tail of the hydrogel pore-size distribution.