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Hydrogel plug for independent sample and buffer handling in continuous microchip capillary electrophoresis

机译:用于独立样品和缓冲器处理的水凝胶插头在连续微芯片毛细管电泳中处理

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In microchip capillary electrophoresis most frequently electrokinetic sample injection is utilized, which does not allow pressure driven sample handling and is sensitive for pressure drops due to different reservoir levels. For efficient field tests a multitude of samples have to be processed with the least amount of external equipment. We present the use of a hydrogel plug to separate the sample from clean buffer to enable independent sample change and buffer refreshment. In-situ polymerization of the gel does away with complex membrane fabrication techniques. The sample is electrokinetically injected through the gel and subsequently separated by a voltage between the second gel inlet and the buffer outlet. By blocking of disturbing flows by the gel barrier a well-defined ion plug is obtained. After each experiment, the sample and the separation channel can be flushed independently, allowing for a continuous operation mode in order to process multiple samples.
机译:在微芯片毛细管电泳中,利用最常见的电动样品喷射,其不允许压力驱动的样品处理,并且由于储层水平的压力下降而敏感。对于有效的现场测试,必须用最少的外部设备处理多种样品。我们介绍了水凝胶插头将样品从清洁缓冲液分离,以实现独立的样品变化和缓冲茶点。凝胶的原位聚合与复合膜制造技术一起使用。样品通过凝胶电动喷射并随后通过第二凝胶入口和缓冲出口之间的电压分离。通过堵塞凝胶屏障的干扰流动,获得明确的离子塞。在每个实验之后,可以独立地冲洗样品和分离通道,允许连续操作模式以处理多个样品。

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