Department of Chemical Engineering, Stanford University, Stanford, CA 94305, USA.
Biomed Mater. 2011 Oct;6(5):055006. doi: 10.1088/1748-6041/6/5/055006. Epub 2011 Aug 26.
In this study, protein diffusion through swollen hydrogel networks prepared from end-linked poly(ethylene glycol)-diacrylate (PEG-DA) was investigated. Hydrogels were prepared via photopolymerization from PEG-DA macromonomer solutions of two molecular weights, 4600 Da and 8000 Da, with three initial solid contents: 20, 33 and 50 wt/wt% PEG. Diffusion coefficients for myoglobin traveling across the hydrogel membrane were determined for all PEG network compositions. The diffusion coefficient depended on PEG molecular weight and initial solid content, with the slowest diffusion occurring through lower molecular weight, high-solid-content networks (D(gel) = 0.16 ± 0.02 × 10(-8) cm(2) s(-1)) and the fastest diffusion occurring through higher molecular weight, low-solid-content networks (D(gel) = 11.05 ± 0.43 × 10(-8) cm(2) s(-1)). Myoglobin diffusion coefficients increased linearly with the increase of water content within the hydrogels. The permeability of three larger model proteins (horseradish peroxidase, bovine serum albumin and immunoglobulin G) through PEG(8000) hydrogel membranes was also examined, with the observation that globular molecules as large as 10.7 nm in hydrodynamic diameter can diffuse through the PEG network. Protein diffusion coefficients within the PEG hydrogels ranged from one to two orders of magnitude lower than the diffusion coefficients in free water. Network defects were determined to be a significant contributing factor to the observed protein diffusion.
在这项研究中,研究了通过末端连接的聚乙二醇二丙烯酸酯(PEG-DA)制备的溶胀水凝胶网络中蛋白质的扩散。通过光聚合作用从两种分子量为 4600 Da 和 8000 Da 的 PEG-DA 大分子单体溶液制备水凝胶,初始固体含量为 20、33 和 50 wt/wt%PEG。测定了肌红蛋白穿过水凝胶膜的扩散系数,所有 PEG 网络组成都有扩散系数。扩散系数取决于 PEG 分子量和初始固体含量,低分子量、高固含量网络的扩散最慢(D(凝胶)= 0.16 ± 0.02×10(-8)cm(2)s(-1)),而高分子量、低固含量网络的扩散最快(D(凝胶)= 11.05 ± 0.43×10(-8)cm(2)s(-1))。肌红蛋白扩散系数随水凝胶内含水量的增加呈线性增加。还研究了三种较大模型蛋白(辣根过氧化物酶、牛血清白蛋白和免疫球蛋白 G)通过 PEG(8000)水凝胶膜的渗透性,观察到水动力直径达 10.7nm 的球形分子可以扩散通过 PEG 网络。PEG 水凝胶内蛋白质的扩散系数比自由水中的扩散系数低一到两个数量级。网络缺陷被确定为观察到的蛋白质扩散的一个重要因素。