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Electrophoretic Concentration of Proteins at Laser-Patterned Nanoporous Membranes in Microchips

机译:芯片中激光模式化的纳米多孔膜上蛋白质的电泳浓度

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摘要

Laser-patterning of nanoporous membranes at the junction of a cross channel in a microchip is used to integrate protein concentration with an electrokinetic injection scheme.Upon application of voltage,linear electro-phoretic concentration of charged proteins is achieved at the membrane surface because buffer ions can easily pass through the membrane while proteins larger than the molecular weight cutoff of the membrane (>5700) are retained.Simple buffer systems can be used,and the concentration results constitute outward evidence that the uniformity of buffer ion concentration is maintained throughout the process.Local and spatially averaged concentration are increased by 4 and 2 orders of magnitude,respectively,upon injection with moderate voltages (70-150 V) and concentration times (100 s).The degree of concentration is limited only by the solubility limit of the proteins.The porous polymer membrane can be used repeatedly as long as care is taken to avoid protein precipitation.
机译:在微芯片中交叉通道的交界处对纳米多孔膜进行激光图案化,以将蛋白质浓度与电动注入方案整合在一起。施加电压后,由于缓冲离子的作用,在膜表面可实现带电蛋白质的线性电泳浓缩可以轻松地通过膜,同时保留大于膜分子量截留值(> 5700)的蛋白质。可以使用简单的缓冲系统,浓缩结果构成了外部证据,表明在整个过程中缓冲离子的浓度保持均匀在中等电压(70-150 V)和浓度时间(100 s)注入时,局部和空间平均浓度分别增加4和2个数量级。浓度的程度仅受溶剂溶解度极限的限制只要小心避免蛋白质沉淀,多孔聚合物膜可以重复使用。

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