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Hydrodynamic chromatography: packed columns, multiple detectors, and microcapillaries

机译:流体动力学色谱:填充柱,多个检测器和微毛细管

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摘要

Hydrodynamic chromatography (HDC) is a liquid chromatographic technique that separates analytes on the basis of their size in solution. Separation can be conducted either in an open tube or in a column packed with inert, nonporous beads. In HDC, larger analytes elute first and smaller ones later, due to preferential sampling of the streamlines of flow in the open tube or in the interstitial medium of the packed column. Because of the low shear rates experienced in HDC, coupled with the wealth of information obtained when employing a multiplicity of detection methods, the technique has experienced a resurgence in recent years in both the particle sizing and macromolecular arenas, where it can provide information on the mutual interdependence of molar mass, size, shape, and compactness. Additionally, microcapillary HDC is also gaining popularity amongst the bioanalytical community, who have employed the technique, inter alia, to separate DNA fragments over a base pair range spanning four orders in magnitude. Here, examples from the literature are used to show how HDC has been applied in each of the aforementioned areas, explaining the information that can be obtained from various detector combinations, and opining on the future of the technique.
机译:流体动力学色谱法(HDC)是一种液相色谱技术,可根据分析物在溶液中的大小对其进行分离。分离可以在敞口管中或在装有惰性无孔珠的柱中进行。在HDC中,由于对开放管或填充柱间隙介质中流线的优先采样,较大的分析物首先洗脱,然后洗脱较小的分析物。由于HDC经历的低剪切速率,再加上使用多种检测方法获得的大量信息,因此该技术近年来在粒子筛分和大分子领域都得到了复兴,可以在此提供有关分子筛的信息。摩尔质量,大小,形状和紧密度相互依赖。另外,微毛细管HDC也在生物分析界中越来越流行,他们已经采用了该技术,尤其是在跨越四个数量级的碱基对范围内分离DNA片段。在这里,使用文献中的示例来说明如何将HDC应用到上述每个区域中,解释可以从各种检测器组合中获取的信息,并展望该技术的未来。

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