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High-Throughput Cell and Particle Characterization Using Isodielectric Separation

机译:使用等电分离进行高通量细胞和颗粒表征

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Separations can be broadly categorized as preparative, where the objective is to extract purified quantities of a sample from a complex mixture, or analytic, where the goal is to determine and quantify the contents of the original mixture. Here we demonstrate the application of a new microfluidic separation method, isodielectric separation (IDS), to a range of analytic separations involving cells and particles spanning several orders of magnitude in volume and electrical conductivity. In IDS, cells are dielectrophoretically concentrated to the region along an electrical conductivity gradient where their polarizability vanishes; by measuring this position--the isodielectric point (IDP)--as operating conditions such as the frequency and voltage of the applied electric field are varied, we are able to sort cells or particles with distinct IDPs while simultaneously characterizing their electrical properties. We apply this technique to measure the electrical properties of polystyrene microspheres, viable and nonviable cells of the budding yeast Saccharomyces cerevisiae, and murine pro B cells, including how these electrical properties vary with the electrical conductivity of the surrounding solvent.
机译:分离可大致分为制备型,目的是从复杂的混合物中提取纯化量的样品,或分析性,目的是确定和量化原始混合物的含量。在这里,我们演示了一种新的微流分离方法(等电分离(IDS))在一系列涉及体积和电导率跨越几个数量级的细胞和颗粒的分析分离中的应用。在IDS中,细胞沿电导率梯度介电浓缩到该区域,极化率消失。通过测量该位置-等电点(IDP)-随着工作条件(例如所施加电场的频率和电压)的变化,我们能够对具有不同IDP的细胞或颗粒进行分类,同时表征其电性能。我们应用这项技术来测量聚苯乙烯微球,萌芽酵母酿酒酵母中的活细胞和非活细胞以及鼠pro B细胞的电性能,包括这些电性能如何随周围溶剂的电导率而变化。

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