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Electrophoretic mobility of cells in a vertical Ficoll gradiantThe upward migration of living cells and test particles under the influence of a constant electric field in a low conductivity Ficoll gradient occurs at nearly constant velocity. Viscosity and neutral polymer concentration affect migration rate. Decreasing viscosity speeds up the particle migration, decreasing neutral polymer (Ficoll) concentration, slows particle migration, since electrophoretic mobility increases approximately linearly with neutral polymer concentration. Neutral polymers interact with the cell surface to effectively raise its zeta potential. An analytic function was developed from the known dependence of these physical variables on migration distance; the analysis expresses migration velocity as an explicit function of position in the density gradient. It predicts an almost linear increase in velocity of about 12 to 16% over the working region of the gradient. It was numerically integrated and correctly predicts cell migration distance vs time curves without the use of any fitted parameters. The resulting migration curves follow the expected slowly varying exponential form that closely resembles a straight line. The ability to determine standard electrophoretic mobilities from such curves depends on knowledge of the effect of Ficoll on the zeta potential of the cell type that is separated.
Document ID
19850023440
Acquisition Source
Legacy CDMS
Document Type
Other
Authors
Plank, L. D.
(Pennsylvania State Univ. University Park, PA, United States)
Todd, P. W.
(Pennsylvania State Univ. University Park, PA, United States)
Kunze, M. E.
(Pennsylvania State Univ. University Park, PA, United States)
Gaines, R. A.
(Pennsylvania State Univ. University Park, PA, United States)
Date Acquired
August 12, 2013
Publication Date
January 1, 1985
Publication Information
Publication: Kidney Cell Electrophoresis
Subject Category
Inorganic And Physical Chemistry
Accession Number
85N31753
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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