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Voltage-programmable biofunctionality in MEMS environments using electrodeposition of a reactive polysaccharide

机译:使用电沉积反应性多糖在MEMS环境中进行电压可编程的生物功能

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The amino-polysaccharide chitosan has distinct properties that make it an attractive interface material for the assembly of biomolecules onto microfabricated surfaces. Chitosan has pH-responsive electrostatic and solubility properties that allow it to be deposited and retained on cathode surfaces. Deposition is shown to be spatially controllable at /spl mu/m levels by "templating" the chitosan onto micropatterned gold cathodes. Temporal control of deposition can be achieved depending on when the micropatterned electrodes are polarized. Chitosan also has nucleophilic amine groups that can be easily reacted using standard, amine-specific chemistries. Studies show that the sequence of chitosan deposition and chemical modification is repeatable. Finally, standard chemistries can be exploited to couple biomolecules onto chitosan films that have been "templated" onto the micropatterned gold cathodes. Specifically, we used glutaraldehyde activation to assemble the model protein, green fluorescent protein (GFP) onto a chitosan deposit. These studies demonstrate that chitosan has unique properties that allow it to serve as an interface material for the assembly of biomolecules onto microfabricated surfaces.
机译:氨基多糖壳聚糖具有独特的性能,使其成为将生物分子组装到微细加工表面上的有吸引力的界面材料。壳聚糖具有pH响应静电和溶解性,可将其沉积并保留在阴极表面上。通过将脱乙酰壳多糖“模板化”到微图案化的金阴极上,显示出沉积在/ splμm/ m水平上是可空间控制的。取决于微图案化电极的极化时间,可以实现沉积的时间控制。壳聚糖还具有亲核胺基团,可以使用标准的胺特异性化学物质轻松进行反应。研究表明,壳聚糖沉积和化学修饰的顺序是可重复的。最后,可以利用标准化学方法将生物分子偶联到已“模板化”到微图案化金阴极上的壳聚糖膜上。具体来说,我们使用戊二醛激活将模型蛋白,绿色荧光蛋白(GFP)组装到壳聚糖沉淀上。这些研究表明,壳聚糖具有独特的性能,使其可以用作将生物分子组装到微细加工表面上的界面材料。

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