Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, Massachusetts 02138, USA.
ACS Appl Mater Interfaces. 2009 Aug;1(8):1807-12. doi: 10.1021/am900340m.
The use of delivery templates makes it possible to fabricate shaped, millimeter-thick heterogeneously patterned films of ionotropic hydrogels. These structures include two-dimensional (2-D) patterns of a polymer cross-linked by different ions (e.g., alginic acid cross-linked with Ca2+ and Fe3+) and patterns of step gradients in the concentration of a single cross-linking ion. The delivery templates consist of stacked sheets of chromatography paper patterned with hydrophobic barriers (waterproof tape, transparency film, or toner deposited by a color laser printer). Each layer of paper serves as a reservoir for a different solution of cross-linking ions, while the hydrophobic barriers prevent solutions on adjacent sheets from mixing. Holes cut through the sheets expose different solutions of cross-linking ions to the surface of the templates. Films with shaped regions of hydrogels cross-linked by paramagnetic ions can be oriented with a bar magnet. Variations in the concentrations of cations used to cross-link the gel can control the mechanical properties of the film: for single alginate films composed of areas cross-linked with different concentrations of Fe3+, the regions cross-linked with high concentrations of Fe3+ are more rigid than regions cross-linked with low concentrations of Fe3+. The heterogeneous hydrogel films can be used to culture bacteria in various 2-D designs. The pattern of toxic and nontoxic ions used to cross-link the polymer determines the pattern of viable colonies of Escherichia coli within the film.
使用输送模板可以制造形状复杂、厚度为毫米级的离子凝胶异质图案薄膜。这些结构包括通过不同离子交联的聚合物的二维(2-D)图案(例如,用 Ca2+ 和 Fe3+交联的藻酸)和单交联离子浓度的阶跃梯度图案。输送模板由堆叠的带有疏水屏障(防水胶带、透明膜或彩色激光打印机沉积的碳粉)的色谱纸组成。每张纸的一层都作为不同交联离子溶液的储层,而疏水屏障防止相邻纸张上的溶液混合。通过纸张切割的孔将不同的交联离子溶液暴露在模板的表面。用顺磁离子交联的具有形状区域的水凝胶膜可以用条形磁铁定向。用于交联凝胶的阳离子浓度的变化可以控制膜的机械性能:对于由用不同浓度 Fe3+交联的区域组成的单个藻酸盐膜,用高浓度 Fe3+交联的区域比用低浓度 Fe3+交联的区域更硬。异质水凝胶膜可用于以各种 2-D 设计培养细菌。用于交联聚合物的有毒和无毒离子的图案决定了膜内大肠杆菌存活菌落的图案。