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Pulsating Bead-Based Assay

机译:基于脉冲珠的分析

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In recent years, there has been a growing interest in using porous microbeads such as agarose beads as solid supports to bind target molecules from complex fluid samples. Porous beads have large surface area to volume ratios and high receptor concentrations, and they facilitate relatively high sensitivity detection and multiplexing. Unfortunately, to take full advantage of the porous beads' attributes, long incubation times are needed due to the relatively slow mass transfer of target molecules from the exterior solution into the beads' interior. To accelerate the mass transfer process, we propose a novel assay in which functionalized porous beads are periodically compressed and expanded. Preliminary experiments were carried out to compare the performance of the pulsating beads with that of conventional, nonpulsating beads. These experiments indicate that the pulsating beads significantly accelerate binding rates with minimal increase in nonspecific binding. Thus, pulsing has the potential of significantly reducing assay time.
机译:近年来,人们越来越关注使用多孔微珠(例如琼脂糖珠)作为固体载体来结合复杂流体样品中的目标分子。多孔珠的表面积与体积之比大,受体浓度高,它们有助于相对较高的灵敏度检测和多路复用。不幸的是,由于目标分子从外部溶液到珠子内部的转移相对较慢,因此要充分利用多孔珠子的特性,需要较长的孵育时间。为了加速传质过程,我们提出了一种新颖的测定方法,其中功能化的多孔珠被定期压缩和扩展。进行了初步实验,以比较脉动珠和常规非脉动珠的性能。这些实验表明,搏动的珠子以非特异性结合的最小增加显着加速了结合速率。因此,脉冲具有显着减少测定时间的潜力。

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