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Titlebook: Biophysics of the Cell Surface; Roland Glaser,David Gingell Conference proceedings 1990 Springer-Verlag Berlin Heidelberg 1990 Grenzfläche

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Introductionparating numerous compartments inside it. They act as barriers separating different phases as well as being surfaces which can carry arrays of functional proteins, like elements on an electronic current board. Artificial membranes can be made and studied in the laboratory. This plethora of membranes
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Translocation and distribution of phospholipids across eukaryotic plasma membranescell compartments. According to the ‘fluid-mosaic’ model (Singer and Nicolson 1972), the lipid bilayer phase of biological membranes was considered as a homogenous ‘floor’ serving only as a building block of biological membranes. Intrinsic and extrinsic proteins were considered as responsible for th
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The super-ordered fluid: A domain model of cell surface membranesordered fluid of the bilayer. Most commonly cited is the fluid mosaic model of Singer and Nicolson (1972). This model originated with studies of membrane composition, based on an earlier, static, picture of membrane architecture (for a historical review see Gennis, 1988). “Mosaic” indicates that the
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Cell surface electrostatics and electrokineticse in surface layers of finite thickness. The method of Green functions provides an elegant means for a very compact presentation of the electric potential profile results under low potential conditions. The relationship between transmembrane and surface potentials is explained. Energetical aspects o
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