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Electrophoretic mobility measurement by laser Doppler velocimetry and capillary electrophoresis of micrometric fluorescent polystyrene beads

机译:激光多普勒测速和毛细管电泳测微荧光聚苯乙烯珠的电泳迁移率

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Many studies have been made and techniques developed to measure the mobility of particles and molecules by laser Doppler velocimetry and capillary electrophoresis. We propose here to evaluate and compare these two measurement techniques for their ability to characterize various fluorescent polystyrene beads as a function of the buffer pH. The repeatability of electrophoretic mobility determination by the two techniques in buffer at different pHs (neutral to alkaline) was first examined and compared. The accuracy of the determination was then evaluated. A wide range of beads which varied in their size (diameters ranging from 270 to 1000 nm), surface functional groups (NH2, COOH, and neutral), and the presence or absence of surfactants or incorporated dye molecules were investigated in order to perform a comprehensive study. The results indicated that apart from large amino beads (with a diameter over 800 nm), capillary electrophoresis generally gave better or similar relative standard deviations for most polystyrene beads, which could be attributed to a stronger adsorption of these beads onto the silica capillary surface in CE. Beads with neutral pH were more difficult to measure accurately with both methods. We also concluded that capillary electrophoresis measurements are not accurate for amino beads in the pH range of this study. However, both methods were capable of distinguishing polystyrene beads with different sizes or surface groups. We found that dye molecules introduced in beads did not alter their electrophoretic mobility values. Taken together, the data and discussion provide a guide to choose the right technique to characterize any given set of functional particles precisely and with the highest accuracy...
机译:已经进行了许多研究并且开发了通过激光多普勒测速仪和毛细管电泳来测量颗粒和分子的迁移率的技术。我们在这里建议评估和比较这两种测量技术的能力,以表征各种荧光聚苯乙烯珠作为缓冲液pH的函数。首先检查并比较了两种技术在不同pH(中性至碱性)中在缓冲液中测定电泳迁移率的可重复性。然后评估确定的准确性。为了进行分离,研究了各种珠子的大小(直径范围从270至1000 nm),表面官能团(NH2,COOH和中性)以及表面活性剂或染料分子的存在与否变化。综合研究。结果表明,除了较大的氨基小珠(直径超过800 nm)以外,毛细管电泳通常对大多数聚苯乙烯小珠具有较好或相似的相对标准偏差,这可能是由于这些小珠更牢固地吸附在硅胶毛细管表面上。 CE。两种方法都很难准确测量具有中性pH的珠子。我们还得出结论,在这项研究的pH范围内,毛细管电泳测量的氨基珠不准确。但是,两种方法都能够区分具有不同尺寸或表面基团的聚苯乙烯珠。我们发现引入珠中的染料分子不会改变其电泳迁移率值。总而言之,数据和讨论为选择正确的技术提供了指导,以正确,最准确地表征任何给定的功能粒子集。

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