Chmelik Josef
Institute of Analytical Chemistry, Veverí, Brno, Czech Republic.
Proteomics. 2007 Aug;7(16):2719-28. doi: 10.1002/pmic.200700113.
Field-flow fractionation (FFF) represents a group of elution separation methods where external force fields act perpendicularly on analytes in a carrier liquid flows with nonuniform velocity profiles. It is an elution separation method that enables to separate analytes in relatively short times and collect fractions for further characterization or for investigation of their properties. Other advantages of FFF are small consumption of samples and gentle experimental conditions. These make FFF uniquely qualified for separation and purification of biological samples. The most promising are applications of different variants of flow FFF utilizing a cross flow through membrane channel walls to separate proteins. The separation is based on differences in protein diffusion coefficients, which allows calculating the size of macromolecules. Other FFF techniques (e.g., electrical, isoelectric, and sedimentation FFF) were also used for separation of biomolecules. FFF appears to be not only promising rapid technique for protein separation but it offers some other advantages in sample preparation, especially, focusing (hyperlayer) FFF techniques that enable preparation of homogeneous fractions of cells. Selected applications of FFF to protein analysis are described and future trends in application of FFF to proteomics are discussed.
场流分级(FFF)是一类洗脱分离方法,在外力场垂直作用于分析物时,载液以非均匀速度分布流动。它是一种洗脱分离方法,能够在相对较短的时间内分离分析物,并收集馏分以进行进一步表征或研究其性质。FFF的其他优点是样品消耗少且实验条件温和。这些使得FFF特别适合用于生物样品的分离和纯化。最有前景的是利用穿过膜通道壁的错流来分离蛋白质的不同变体的流动FFF的应用。分离基于蛋白质扩散系数的差异,这使得能够计算大分子的大小。其他FFF技术(例如,电、等电和沉降FFF)也用于生物分子的分离。FFF似乎不仅是一种有前景的蛋白质快速分离技术,而且在样品制备方面还具有一些其他优点,特别是聚焦(超层)FFF技术,能够制备细胞的均匀馏分。本文描述了FFF在蛋白质分析中的选定应用,并讨论了FFF在蛋白质组学应用中的未来趋势。