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首页> 外文期刊>Lab on a chip >Nanofracture on fused silica microchannel for Donnan exclusion based electrokinetic stacking of biomolecules
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Nanofracture on fused silica microchannel for Donnan exclusion based electrokinetic stacking of biomolecules

机译:熔融石英微通道上的纳米断裂用于基于Donnan排斥的生物分子电动堆叠

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摘要

Due to Donnan exclusion, charged molecules are prohibited from passing through a channel of electrical double layer scale (nanometers), even though the molecules are smaller than the lowest dimension of the channel. To employ this effect for on-chip pre-concentration, an ion channel of nanometer scale has to be introduced. Here we introduced a simple method of generating a fracture (11-250 nm) directly on the commercially available open tubular fused silica capillary, and a chip comprised of the capillary with the nanofracture was prepared. A ring-disk model of the fracture was derived with which the fracture width can be easily characterized online without any damage to the chip, and the result was validated by a scanning electron microscope (SEM). The fractures can be used directly as a nanofluidic Interface exhibiting an obvious ion concentration polarization effect with high current flux. On-chip electrokinetic stacking of SYBR Green I labeled ADNA inside the capillary was successfully demonstrated, and a concentration factor close to the amplification rate of the polymerase chain reaction (PCR) was achieved within 7 min. The chip is inexpensive and easy to prepare in common chemistry and biochemistry laboratories without limitations in expensive microfabrication facilities and sophisticated expertise. More applications of this interface could be found for enhancing the detectability of capillary based microfluidic analytical systems for the analysis of low concentrated charged species.
机译:由于Donnan的排斥,即使分子小于通道的最小尺寸,也禁止带电分子通过双电层标尺(纳米)的通道。为了将这种效应用于芯片上预浓缩,必须引入纳米级的离子通道。在这里,我们介绍了一种直接在市售的开放式管状熔融石英毛细管上直接产生裂缝(11-250 nm)的简单方法,并制备了由具有纳米裂缝的毛细管组成的芯片。推导了断裂的圆盘模型,可以轻松地在线表征断裂宽度而不会损坏切屑,并通过扫描电子显微镜(SEM)验证了结果。裂缝可以直接用作纳米流体界面,在高电流通量下表现出明显的离子浓度极化效应。已成功证明了SYBR Green I标记的ADNA在毛细管内的片上电动堆叠,并且在7分钟内达到了接近聚合酶链反应(PCR)扩增速率的浓缩因子。该芯片价格便宜,易于在普通化学和生物化学实验室中制备,而不受昂贵的微细加工设备和专业知识的限制。可以找到该接口的更多应用,以增强用于分析低浓度带电物质的基于毛细管的微流体分析系统的可检测性。

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