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- W1528556979 endingPage "227" @default.
- W1528556979 startingPage "189" @default.
- W1528556979 abstract "Biological membranes are by far the most important electrified interfaces in living systems. They consist of a bimolecular layer of lipids (the lipid bilayer) incorporating proteins. Lipid molecules are “amphiphilic,” that is, they consist of a hydrophobic section (the hydrocarbon tail) and a hydrophilic section (the polar head). In biological membranes the two lipid monolayers are oriented with the hydrocarbon tails directed toward each other and the polar heads turned toward the aqueous solutions that are in contact with the two sides of the membrane. The resulting lipid bilayer is a matrix that incorporates different proteins performing a variety of functions. Biomembranes form a highly selective barrier between the inside and the outside of living cells. They are highly insulating to inorganic ions, and large electrochemical potentials can be maintained across them. The permeability and structural properties of biological membranes are sensitive to the chemical nature of the membrane components and to events that occur at the interface or within the bilayer. For example, biomembranes provide the environmental matrix for proteins that specifically transport certain ions and other molecules, for receptor proteins, and for signal transduction molecules." @default.
- W1528556979 created "2016-06-24" @default.
- W1528556979 creator A5005506725 @default.
- W1528556979 creator A5085089679 @default.
- W1528556979 date "2011-11-16" @default.
- W1528556979 modified "2023-10-16" @default.
- W1528556979 title "Model Lipid Bilayers at Electrode Surfaces" @default.
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