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Rapid two-dimensional characterisation of proteins in solution

机译:溶液中蛋白质的快速二维表征

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Microfluidic platforms provide an excellent basis for working with heterogeneous samples and separating biomolecular components at high throughput, with high recovery rates and by using only very small sample volumes. To date, several micron scale platforms with preparative capabilities have been demonstrated. Here we describe and demonstrate a microfluidic device that brings preparative and analytical operations together onto a single chip and thereby allows the acquisition of multidimensional information. We achieve this objective by using a free-flow electrophoretic separation approach that directs fractions of sample into an on-chip analysis unit, where the fractions are characterised through a microfluidic diffusional sizing process. This combined approach therefore allows simultaneously quantifying the sizes and the charges of components in heterogenous mixtures. We illustrate the power of the platform by describing the size distribution of a mixture comprising components which are close in size and cannot be identified as individual components using state-of-the-art solution sizing techniques on their own. Furthermore, we show that the platform can be used for two-dimensional fingerprinting of heterogeneous protein mixtures within tens of seconds, opening up a possibility to obtain multiparameter data on biomolecular systems on a minute timescale.
机译:微流体平台为使用异质样品提供优异的基础,并在高通量下分离生物分子组分,具有高回收率,并仅使用非常小的样品体积。迄今为止,已经证明了具有制备能力的几种微米级平台。在这里,我们描述并展示了一种微流体装置,其将制剂和分析操作聚集在一起,从而允许获取多维信息。我们通过使用自由流动电泳分离方法来实现这一目标,将样品的分数指向片上分析单元,其中馏分通过微流体扩散尺寸方法进行了表征。因此,这种组合方法允许同时量化异构混合物中组分的尺寸和电荷。我们通过描述包含靠近尺寸的组件的混合物的尺寸分布,并且不能使用最先进的解决方案尺寸尺寸的单独部件来识别它们自己的尺寸来说明平台的功率。此外,我们表明该平台可用于几十秒内的异质蛋白质混合物的二维指纹识别,开辟了在一分钟的时间内测量的生物分子系统上获得多次数计数据的可能性。

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