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Separation of macromolecules in isotachophoresis systems involving single or multiple counterions
Authors:C Schafer-Nielsen  PJust Svendsen  C Rose
Institution:1. The Protein Laboratory, University of Copenhagen, Sigurdsgade 34, 2200 Copenhagen N, Denmark;2. The Fibiger Laboratory, Ndr. Frihavnsgade 70, 2100 Copenhagen Ø, Denmark
Abstract:The isotachcophoresis principle provides unique opportunities for rational designs of fractionation procedures involving charged molecules. Theoretically any two charged molecules that are soluble under the experimental conditions involved can be physically separated if their electrophoretic net mobilities differ only slightly in the electrophoresis medium used. A theoretical and practical outline is presented that enables the reader to set up this fractionation system and on a rational basis develop fractionation procedures for a given set of charged macromolecules by isotachophoresis with simple and well characterized ampholytes as spacer substances. The planning of preparative experiments in this approach is based on results obtained from rapid analytical screens on a microgram scale. The report includes an appendix containing the theoretical basis for computation of buffer compositions in the isotachophoretic steady state with mono/polyvalent constituents in systems involving one or more counterions and controlled amounts of interferiong ions.
Keywords:isotachophoresis  counterions  amino acids  proteins
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