Abstract
Unified theory for gel electrophoresis and gel filtration: The behavior of macromolecules in gel filtration and gel electrophoresis may be predicted from Ogston's model for a random meshwork of fibers. This model has been generalized to apply to nonspherical molecules and to several gel types. The model provides equations for inter-relationships between mobility, partition coefficient, gel concentration, and molecular radius; it gives a non-Gaussian distribution of pore sizes as a function of gel concentration. The theory defines conditions for optimal separation and optimal resolution in gel filtration and gel electrophoresis. The difference in resolving power between the two fractionation methods is accounted for by the fact that gel filtration is a form of partition chromatography.
MeSH Terms
Chromatography, Gel
Chymotrypsin/analysis
Cyclic S-Oxides
Cytochromes/analysis
Electrophoresis
Fibrinogen/analysis
Gels
Hemoglobins/analysis
Macromolecular Substances/analysis
Models, Chemical
Muramidase/analysis
Myoglobin/analysis
Ovalbumin/analysis
Pepsin A/analysis
Phenols
Ribonucleases/analysis
Serum Albumin, Bovine/analysis
Thyroglobulin/analysis
gamma-Globulins/analysis
Chemicals
Cyclic S-Oxides
Cytochromes
Gels
Hemoglobins
Macromolecular Substances
Myoglobin
Phenols
gamma-Globulins
Serum Albumin, Bovine
Fibrinogen
Ovalbumin
Thyroglobulin
Ribonucleases
Muramidase
Chymotrypsin
Pepsin A
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Rodbard D
Chrambach A
References (13)
13 references, click to expand
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