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Fast Electrophoretic Separation Optimization Using Gradient Micro Free-Flow Electrophoresis

机译:梯度微自由流电泳快速电泳分离优化

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摘要

The continuous nature of micro free-flow electrophoresis (μ-FFE) was used to monitor the effect of a gradient of buffer conditions on the separation. This unique application has great potential for fast optimization of separation conditions and estimation of equilibrium constants. COMSOL was used to model pressure profiles in the development of a new μ-FFE design that allowed even application of a buffer gradient across the separation channel. The new design was fabricated in an all glass device using our previously published multiple-depth etch method (Fonslow, B. R.; Barocas, V. H.; Bowser, M. T. Anal. Chem. 2006, 78, 5369–5374, ). Fluorescein solutions were used to characterize the applied gradients in the separation channel. Linear gradients were observed when buffer conditions were varied over a period of 5–10 min. The effect of a gradient of 0–50 mM hydroxypropyl-β-cyclodextrin (HP-β-CD) on the separation of a group of 4-fluoro-7-nitro-2,1,3-benzoxadiazole (NBD-F) labeled primary amines was monitored as a proof of concept experiment. Direct comparisons to capillary electrophoresis (CE) separations performed under the same conditions were made. Gradient μ-FFE recorded 60 separations during a 5 min gradient allowing nearly complete coverage across a range of HP-β-CD concentrations. In comparison, 4 h were required to assess 15 sets of conditions across the same range of HP-β-CD concentrations using CE. Qualitatively, μ-FFE separations were predictive of the migration order and spacing of peaks in CE electropherograms measured under the same conditions. Data were fit to equations describing 1:1 analyte–additive binding to allow a more quantitative comparison between gradient μ-FFE and CE.
机译:微自由流电泳(μ-FFE)的连续性质用于监测缓冲液条件梯度对分离的影响。这种独特的应用具有快速优化分离条件和估算平衡常数的巨大潜力。在新的μ-FFE设计的开发中,COMSOL被用来对压力分布进行建模,该设计允许在整个分离通道上均匀施加缓冲液梯度。使用我们以前发布的多深度蚀刻方法(Fonslow,BR; Barocas,VH; Bowser,MT Anal。Chem。2006,78,5369-5374, )在全玻璃设备中制造新设计。 )。荧光素溶液用于表征分离通道中的梯度。当缓冲液条件在5-10分钟内变化时,观察到线性梯度。 0–50 mM羟丙基-β-环糊精(HP-β-CD)梯度对一组标记的4-氟-7-硝基-2,1,3-苯并恶二唑(NBD-F)的分离的影响监测伯胺作为概念验证实验。直接比较了在相同条件下进行的毛细管电泳(CE)分离。梯度μ-FFE在5分钟的梯度内记录了60次分离,几乎涵盖了所有HP-β-CD浓度范围。相比之下,需要4小时才能使用CE在相同的HP-β-CD浓度范围内评估15组条件。定性地,μ-FFE分离可预测在相同条件下测得的CE电泳图中的迁移顺序和峰间距。数据与描述1:1分析物-加成键的方程式拟合,从而可以更定量地比较梯度μ-FFE和CE。

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  • 年(卷),期 -1(80),9
  • 年度 -1
  • 页码 3182–3189
  • 总页数 17
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