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Biological functionalization and surface micropatterning of polyacrylamide hydrogels

机译:聚丙烯酰胺水凝胶的生物学功能化和表面微图案化

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Hydrogels are useful for linking proteins to solid surfaces because their hydrophilic nature and porous structure help them to maintain these labile molecules in the native functional state. We have developed a method for creating surface-patterned, biofunctionalized hydrogels on glass or silicon, using polyacrylamide and the disulfide-containing polyacrylamide crosslinker, bis(acryloyl)cystamine. Treatment with a reducing agent created reactive sulfhydryl (-SH) groups throughout these hydrogels that were readily conjugated to iodoacetyl biotin and streptavidin (SA). Immobilization efficiency was approximately 1-2% of the total potential binding capacity of the hydrogel. Porosity of the hydrogel was not a limiting factor for SA immobilization, as determined using fluorescence confocal microscopy. Rather, steric hindrance due to the binding of SA decreased the effective porosity near the surface of the hydrogel, restricting access to the rest of the gel. Using microcontact printing, we indirectly patterned SA on the surface of the hydrogel, generating well-resolved feature sizes of 2 mu m in width. Through repeated rounds of microcontact printing, multiple, adjacent protein patterns were generated on the surface of the hydrogel. Biotinylated immune complexes and lipid vesicles readily bound to SA-functionalized hydrogels, demonstrating the feasibility of using this hydrogel system to generate complex biofunctionalized surfaces. (c) 2006 Elsevier Ltd. All rights reserved.
机译:水凝胶可用于将蛋白质连接到固体表面,因为它们的亲水性和多孔结构有助于它们将这些不稳定分子保持在天然功能状态。我们已经开发了一种使用聚丙烯酰胺和含二硫键的聚丙烯酰胺交联剂双(丙烯酰基)胱胺在玻璃或硅上制作表面图案化的生物功能化水凝胶的方法。在整个这些水凝胶中,用还原剂进行处理可形成反应性巯基(-SH),这些基团易于与碘乙酰生物素和链霉亲和素(SA)偶联。固定效率约为水凝胶总潜在结合能力的1-2%。如使用荧光共聚焦显微镜所确定的,水凝胶的孔隙度不是SA固定化的限制因素。而是,由于SA的结合而引起的位阻降低了水凝胶表面附近的有效孔隙率,限制了进入凝胶的其余部分。使用微接触印刷,我们在水凝胶的表面上间接形成了SA图案,产生了分辨率很好的宽度为2微米的特征尺寸。通过反复的微接触印刷轮,在水凝胶的表面上产生了多个相邻的蛋白质图案。生物素化的免疫复合物和脂质囊泡很容易与SA功能化的水凝胶结合,证明了使用这种水凝胶系统生成复杂的生物功能化表面的可行性。 (c)2006 Elsevier Ltd.保留所有权利。

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