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PMID: 13706631 Published · ppublish English Journal Article

Determination of equivalent pore radius for human red cells by osmotic pressure measurement.

The Journal of general physiology ·Vol. 44 ·1960-09-00 ·Pages 1-17

GOLDSTEIN DA, SOLOMON AK

Abstract

A new method has been developed to measure the equivalent pore radius in cellular membranes, and has been applied to human red cells. When red cells are suddenly introduced into a non-isosmolar concentration of non-lipid-soluble non-electrolyte molecules, water will enter or leave the cell. The rate of cell swelling or shrinking is determined and extrapolated to zero time to give the initial rate of volume change. By suitable adjustment of the concentration of the external solution the initial rate may be brought to zero. The transient equilibrium concentration, determined by interpolation from experimental data, gives a measure of Staverman's reflection coefficient, sigma. The zero time method has enabled us to determine sigma for nine permeant molecules. sigma is directly related to the equivalent pore radius; the experimental data lead to a value of 4.2 A for the equivalent pore radius in man, in good agreement with the previous figure of 3.5 A given by Paganelli and Solomon. The zero time method offers a number of advantages over previous methods for determination of this parameter. It requires no measurement of the rate of water entrance into the cell, and is essentially independent of the kinetics of cell swelling. It may be applied to a variety of living cells so that many additional membranes may now be characterized in terms of their equivalent pore radius.

Keywords
ERYTHROCYTES/chemistry OSMOSIS
MeSH Terms
Erythrocytes/chemistry Humans Kinetics Male Osmosis Osmotic Pressure Radius Solutions Water
Chemicals
Solutions Water
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
GOLDSTEIN D A
SOLOMON A K
References (3)
3 references, click to expand
  1. Water flow through frog gastric mucosa.
    J Gen Physiol. 1956 Mar 20;39(4):535-51 PMID: 13295553
  2. Entrance of water into human red cells under an osmotic pressure gradient.
    J Gen Physiol. 1957 Nov 20;41(2):243-57 PMID: 13475689
  3. The rate of exchange of tritiated water across the human red cell membrane.
    J Gen Physiol. 1957 Nov 20;41(2):259-77 PMID: 13475690
Article Info
Journal
The Journal of general physiology
Abbr.
J Gen Physiol
ISSN
0022-1295
Published
1960-09-00
Pages
1-17
Language
English
Region
United States
NLM ID
2985110R
PMCID
PMC2195086
Subset
OM
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