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Bubble cell for magnetic bead trapping in capillary electrophoresis

机译:用于毛细管电泳中磁珠捕获的气泡池

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A bubble cell capillary classically used to extend the optical path length for UV–vis detection is employed here to trap magnetic beads. With this system, a large amount of beads can be captured without inducing a strong pressure drop, as it is the case with magnetic beads trapped in a standard capillary, thereby having less effect on the experimental conditions. Using numerical simulations and microscopic visualizations, the capture of beads inside a bubble cell was investigated with two magnet configurations. Pressure-driven and electro-osmotic flow velocities were measured for different amounts of protein-A-coated beads or C18-functionalized beads (RPC-18). Solid-phase extraction of a model antibody on protein-A beads and preconcentration of fluorescein on RPC-18 beads were performed as proof of concept experiments.
机译:传统上使用气泡池毛细管来延长光波长度以进行紫外可见检测,此处用于捕获磁珠。使用该系统,可以捕获大量的珠子,而不会引起强烈的压降,就像在标准毛细管中捕获磁珠的情况一样,因此对实验条件的影响较小。使用数值模拟和微观可视化,使用两个磁体配置研究了气泡单元内珠的捕获。测量了不同量的蛋白A包被的珠子或C18官能化的珠子(RPC-18)的压力驱动和电渗透流速。进行蛋白A磁珠上模型抗体的固相提取和RPC-18磁珠上荧光素的预浓缩作为概念实验的证明。

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