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PMID: 5764743 Published · ppublish English Journal Article

The effect of amphotericin B on the water and nonelectrolyte permeability of thin lipid membranes.

The Journal of general physiology ·Vol. 53 ·No. 2 ·1969-02-00 ·Pages 133-56

Andreoli TE, Dennis VW, Weigl AM

Abstract

This paper reports the effects of amphotericin B, a polyene antibiotic, on the water and nonelectrolyte permeability of optically black, thin lipid membranes formed from sheep red blood cell lipids dissolved in decane. The permeability coefficients for the diffusion of water and nonelectrolytes (P(DDi)) were estimated from unidirectional tracer fluxes when net water flow (J(w)) was zero. Alternatively, an osmotic water permeability coefficient (P(f)) was computed from J(w) when the two aqueous phases contained unequal solute concentrations. In the absence of amphotericin B, when the membrane solutions contained equimolar amounts of cholesterol and phospholipid, P(f) was 22.9 +/- 4.6 microsec(-1) and P(DDHDH2O) was 10.8 +/- 2.4 microsec(-1). Furthermore, P(DDi) was < 0.05 microsec(-1) for urea, glycerol, ribose, arabinose, glucose, and sucrose, and sigma(i), the reflection coefficient of each of these solutes was one. When amphotericin B (10(-6)M) was present in the aqueous phases and the membrane solutions contained equimolar amounts of cholesterol and phospholipid, P(DDHDH2O) was 18.1 +/- 2.4 microsec(-1); P(f) was 549 +/- 143 microsec(-1) when glucose, sucrose, and raffinose were the aqueous solutes. Concomitantly, P(DDi) varied inversely, and sigma(i) directly, with the effective hydrodynamic radii of the solutes tested. These polyene-dependent phenomena required the presence of cholesterol in the membrane solutions. These data were analyzed in terms of restricted diffusion and filtration through uniform right circular cylinders, and were compatible with the hypothesis that the interactions of amphotericin B with membrane-bound cholesterol result in the formation of pores whose equivalent radii are in the range 7 to 10.5 A.

MeSH Terms
Amides Amphotericin B Arabinose Biological Transport Biological Transport, Active Chemical Phenomena Chemistry Cholesterol Diffusion Glucose Glycerol Lipids Membranes Methods Models, Biological Osmosis Permeability Phospholipids Ribose Sucrose Urea
Chemicals
Amides Lipids Phospholipids Sucrose Ribose Amphotericin B Urea Cholesterol Arabinose Glucose Glycerol
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Andreoli T E
Dennis V W
Weigl A M
References (21)
21 references, click to expand
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Article Info
Journal
The Journal of general physiology
Abbr.
J Gen Physiol
ISSN
0022-1295
Published
1969-02-00
Pages
133-56
Language
English
Region
United States
NLM ID
2985110R
PMCID
PMC2202904
Subset
IM
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