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Enhanced mixing in polyacrylamide gels containing embedded silica nanoparticles as internal electroosmotic pumps

机译:在包含嵌入式二氧化硅纳米颗粒作为内部电渗泵的聚丙烯酰胺凝胶中增强混合

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摘要

Many biosensors, including those based on sensing agents immobilized inside hydrogels, suffer from slow response dynamics due to mass transfer limitations. Here we present an internal pumping strategy to promote convective mixing inside crosslinked polymer gels. This is envisioned as a potential tool to enhance biosensor response dynamics. The method is based on electroosmotic flows driven by non-uniform, oscillating electric fields applied across a polyacrylamide gel that has been doped with charged colloidal silica inclusions. Evidence for enhanced mixing was obtained from florescence recovery after photobleaching (FRAP) measurements with fluorescein tracer dyes dissolved in the gel. Mixing rates in silica-laden gels under the action of the applied electric fields were more than an order of magnitude faster than either diffusion or electrophoretically driven mixing in gels that did not contain silica. The mixing enhancement was due in comparable parts to the electroosmotic pumping and to the increase in gel swelling caused by the presence of the silica inclusions. The latter had the effect of increasing tracer mobility in the silica-laden gels. (c) 2007 Elsevier B.V. All rights reserved.
机译:由于传质限制,许多生物传感器,包括那些基于固定在水凝胶内部的传感剂的生物传感器,响应速度较慢。在这里,我们提出了一种内部泵送策略,以促进对交联聚合物凝胶内部的对流混合。可以预见这是增强生物传感器响应动力学的潜在工具。该方法基于电渗流,该电渗流由施加在掺杂有带电胶体二氧化硅内含物的聚丙烯酰胺凝胶上的不均匀振荡电场驱动。从溶解在凝胶中的荧光素示踪染料进行光漂白(FRAP)测量后的荧光恢复中获得增强混合的证据。在外加电场的作用下,载有二氧化硅的凝胶中的混合速率比不含二氧化硅的凝胶中的扩散或电泳驱动混合快了一个数量级以上。混合的增强在相当的部分是由于电渗泵和由于二氧化硅内含物的存在引起的凝胶溶胀的增加。后者具有增加在装有二氧化硅的凝胶中示踪剂迁移率的作用。 (c)2007 Elsevier B.V.保留所有权利。

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