Plieva Fatima M, Karlsson Malin, Aguilar Maria-Rosa, Gomez David, Mikhalovsky Sergey, Galaev' Igor Yu
Department of Biotechnology, Center for Chemistry and Chemical Engineering, Lund University, PO Box 124, SE-22100 Lund, Sweden.
Department of Food Technology, Center for Chemistry and Chemical Engineering, Lund University, PO Box 124, SE-22100 Lund, Sweden.
Soft Matter. 2005 Sep 26;1(4):303-309. doi: 10.1039/b510010k.
Pore size and thickness of pore walls in macroporous polyacrylamide gels, so-called cryogels (pAAm-cryogels), were controlled by varying the content of monomers in the initial reaction mixture and the cross-linker used. The thickness of pore walls in pAAm-cryogels increased with increasing concentration of monomers in the initial reaction mixture. Pore volume in the supermacroporous pAAm-cryogels was in the range of 70-93% and decreased with increasing concentration of monomers in the reaction feed. The porous structure of the pAAm-cryogels was visualized using environmental scanning electron microscopy (ESEM) that allowed monitoring of the dehydration process in pAAm-cryogels. The accessibility of ligands covalently coupled to the polymer backbone for low molecular weight target, Cu() ions, and high molecular weight target, the protein lysozyme, was assessed for pAAm-cryogels produced from feeds with different monomer concentration. The amount of bound Cu() ions increased linearly with increasing monomer concentration in the reaction feed, suggesting that all ligands are equally accessible for small targets. On the contrary, lysozyme binding demonstrated a clear maximum at monomer concentration about 18% suggesting that only ligands present at the surface of pore walls are accessible for high molecular weight targets.
大孔聚丙烯酰胺凝胶(即所谓的冷冻凝胶,pAAm - 冷冻凝胶)的孔径和孔壁厚度可通过改变初始反应混合物中单体的含量以及所使用的交联剂来控制。pAAm - 冷冻凝胶的孔壁厚度随着初始反应混合物中单体浓度的增加而增加。超大孔pAAm - 冷冻凝胶的孔体积在70 - 93%的范围内,并且随着反应进料中单体浓度的增加而减小。使用环境扫描电子显微镜(ESEM)观察了pAAm - 冷冻凝胶的多孔结构,该显微镜能够监测pAAm - 冷冻凝胶中的脱水过程。对于由不同单体浓度进料制备的pAAm - 冷冻凝胶,评估了共价偶联到聚合物主链上的配体对低分子量靶标Cu(Ⅱ)离子和高分子量靶标溶菌酶的可及性。反应进料中结合的Cu(Ⅱ)离子量随着单体浓度的增加而线性增加,这表明所有配体对小靶标具有同等的可及性。相反,溶菌酶结合在单体浓度约为18%时表现出明显的最大值,这表明只有存在于孔壁表面的配体对高分子量靶标是可及的。