Integration of Isoelectric Focusing with Parallel Sodium Dodecyl Sulfate Gel Electrophoresis for Multidimensional Protein Separations in a Plastic Microfludic Network
- 7 January 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Analytical Chemistry
- Vol. 76 (3) , 742-748
- https://doi.org/10.1021/ac034765b
Abstract
An integrated protein concentration/separation system, combining non-native isoelectric focusing (IEF) with sodium dodecyl sulfate (SDS) gel electrophoresis on a polymer microfluidic chip, is reported. The system provides significant analyte concentration and extremely high resolving power for separated protein mixtures. The ability to introduce and isolate multiple separation media in a plastic microfluidic network is one of two key requirements for achieving multidimensional protein separations. The second requirement lies in the quantitative transfer of focused proteins from the first to second separation dimensions without significant loss in the resolution acquired from the first dimension. Rather than sequentially sampling protein analytes eluted from IEF, focused proteins are electrokinetically transferred into an array of orthogonal microchannels and further resolved by SDS gel electrophoresis in a parallel and high-throughput format. Resolved protein analytes are monitored using noncovalent, environment-sensitive, fluorescent probes such as Sypro Red. In comparison with covalently labeling proteins, the use of Sypro staining during electrophoretic separations not only presents a generic detection approach for the analysis of complex protein mixtures such as cell lysates but also avoids additional introduction of protein microheterogeneity as the result of labeling reaction. A comprehensive 2-D protein separation is completed in less than 10 min with an overall peak capacity of ∼1700 using a chip with planar dimensions of as small as 2 cm × 3 cm. Significant enhancement in the peak capacity can be realized by simply raising the density of microchannels in the array, thereby increasing the number of IEF fractions further analyzed in the size-based separation dimension.Keywords
This publication has 10 references indexed in Scilit:
- Shrinking the LC LandscapeAnalytical Chemistry, 2003
- Content: Electrophoresis 21/2002Electrophoresis, 2002
- Microfabricated 384-Lane Capillary Array Electrophoresis Bioanalyzer for Ultrahigh-Throughput Genetic AnalysisAnalytical Chemistry, 2002
- Two-Dimensional Electrochromatography/Capillary Electrophoresis on a MicrochipAnalytical Chemistry, 2001
- Protein Sizing on a MicrochipAnalytical Chemistry, 2001
- A Microfabricated Fluidic Device for Performing Two-Dimensional Liquid-Phase SeparationsAnalytical Chemistry, 2000
- Automated Ultra-Thin-Layer SDS Gel Electrophoresis of Proteins Using Noncovalent Fluorescent LabelingAnalytical Chemistry, 2000
- Planar quartz chips with submicron channels for two-dimensional capillary electrophoresis applicationsJournal of Micromechanics and Microengineering, 1998
- Resolution power of two‐dimensional electrophoresis and identification of proteins from gelsElectrophoresis, 1996
- Ultra-fast high-performance capillary sodium dodecyl sulfate gel electrophoresis of proteinsJournal of Chromatography A, 1994