Effect of an unstirred layer on the membrane permeability of anandamide
To study the effect of an unstirred layer (UL), we have investigated the exchange efflux kinetics of anandamide at 0°C, pH 7.3, from albumin-free as well as from albumin-filled human red blood cell ghosts to media of various BSA concentrations ([BSA]o). The rate constant (km) of unidirectional flux...
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doaj-a3a7be08c51042d9b9ed9b7cb0f728b62021-04-27T04:45:26ZengElsevierJournal of Lipid Research0022-22752006-03-01473561570Effect of an unstirred layer on the membrane permeability of anandamideInge N. Bojesen0Harald S. Hansen1Department of Medical Biochemistry and Genetics, Laboratory B, University of Copenhagen, Panum Institute, DK-2200 Copenhagen N, Denmark; Department of Pharmacology and Pharmacotherapy, Danish University of Pharmaceutical Sciences, DK-2100 Copenhagen Ø, DenmarkDepartment of Medical Biochemistry and Genetics, Laboratory B, University of Copenhagen, Panum Institute, DK-2200 Copenhagen N, Denmark; Department of Pharmacology and Pharmacotherapy, Danish University of Pharmaceutical Sciences, DK-2100 Copenhagen Ø, DenmarkTo study the effect of an unstirred layer (UL), we have investigated the exchange efflux kinetics of anandamide at 0°C, pH 7.3, from albumin-free as well as from albumin-filled human red blood cell ghosts to media of various BSA concentrations ([BSA]o). The rate constant (km) of unidirectional flux from the outer membrane leaflet to BSA in the medium increased with the square root of [BSA]o in accordance with the existence of a UL, which is a water layer adjacent to the membrane that is not subject to the same gross mixing that takes place in the rest of the medium. From km, it is possible to calculate the rate constant of anandamide dissociation from BSA (k1) if we know the membrane binding of anandamide, the equilibrium dissociation constant of BSA-anandamide complexes, and the diffusion constant of anandamide. We estimated k1 to be 3.33 ± 0.27 s−1. The net flux of [3H]anandamide is balanced by an equal and opposite movement of nonradioactive anandamide in exchange efflux experiments. This means that our results are also valid for uptake. We show that for anandamide with rapid membrane translocation, UL causes a significant resistance to cellular uptake. Depicting the rate of anandamide uptake as a function of equilibrium water phase concentrations results in a parabolic uptake dependence. Such apparent “saturation kinetics” is often interpreted as indicating the involvement of transport proteins. The validity of such an interpretation is discussed.http://www.sciencedirect.com/science/article/pii/S0022227520336105red blood cell membraneserythrocyte ghostsmembrane bindingexchange effluxrate constant of anandamide dissociation from albumindiffusion coefficient of anandamide |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Inge N. Bojesen Harald S. Hansen |
spellingShingle |
Inge N. Bojesen Harald S. Hansen Effect of an unstirred layer on the membrane permeability of anandamide Journal of Lipid Research red blood cell membranes erythrocyte ghosts membrane binding exchange efflux rate constant of anandamide dissociation from albumin diffusion coefficient of anandamide |
author_facet |
Inge N. Bojesen Harald S. Hansen |
author_sort |
Inge N. Bojesen |
title |
Effect of an unstirred layer on the membrane permeability of anandamide |
title_short |
Effect of an unstirred layer on the membrane permeability of anandamide |
title_full |
Effect of an unstirred layer on the membrane permeability of anandamide |
title_fullStr |
Effect of an unstirred layer on the membrane permeability of anandamide |
title_full_unstemmed |
Effect of an unstirred layer on the membrane permeability of anandamide |
title_sort |
effect of an unstirred layer on the membrane permeability of anandamide |
publisher |
Elsevier |
series |
Journal of Lipid Research |
issn |
0022-2275 |
publishDate |
2006-03-01 |
description |
To study the effect of an unstirred layer (UL), we have investigated the exchange efflux kinetics of anandamide at 0°C, pH 7.3, from albumin-free as well as from albumin-filled human red blood cell ghosts to media of various BSA concentrations ([BSA]o). The rate constant (km) of unidirectional flux from the outer membrane leaflet to BSA in the medium increased with the square root of [BSA]o in accordance with the existence of a UL, which is a water layer adjacent to the membrane that is not subject to the same gross mixing that takes place in the rest of the medium. From km, it is possible to calculate the rate constant of anandamide dissociation from BSA (k1) if we know the membrane binding of anandamide, the equilibrium dissociation constant of BSA-anandamide complexes, and the diffusion constant of anandamide. We estimated k1 to be 3.33 ± 0.27 s−1. The net flux of [3H]anandamide is balanced by an equal and opposite movement of nonradioactive anandamide in exchange efflux experiments. This means that our results are also valid for uptake. We show that for anandamide with rapid membrane translocation, UL causes a significant resistance to cellular uptake. Depicting the rate of anandamide uptake as a function of equilibrium water phase concentrations results in a parabolic uptake dependence. Such apparent “saturation kinetics” is often interpreted as indicating the involvement of transport proteins. The validity of such an interpretation is discussed. |
topic |
red blood cell membranes erythrocyte ghosts membrane binding exchange efflux rate constant of anandamide dissociation from albumin diffusion coefficient of anandamide |
url |
http://www.sciencedirect.com/science/article/pii/S0022227520336105 |
work_keys_str_mv |
AT ingenbojesen effectofanunstirredlayeronthemembranepermeabilityofanandamide AT haraldshansen effectofanunstirredlayeronthemembranepermeabilityofanandamide |
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1721506483854639104 |