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The Penetration of Sodium into the Epithelium of the Frog Skin
The aim of this paper is twofold. First, to describe a method for the measurement of the unidirectional flux of Na from the outer bathing solution into epithelium (JOT), and second, to describe theExpand
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Lipid-protein interaction at the air-water interface.
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Interaction of doxorubicin with phospholipid monolayers.
The energies of interaction of doxorubicin hydrochloride and sodium 1,2,4-trihydroxy-9,10-dioxo-3-anthracenesulfonate with dipalmitoylphosphatidylethanolamine and dipalmitoyllecithin monolayersExpand
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Kinetics and mechanisms of monolayer interactions. I. Cetyl sulfate and cetrimonium ions interacting with dipalmitoyl lecithin and dipalmitoyl glycerol.
Abstract The interaction of cetyl sulfate and cetrimonium (cetyltrimethylammonium) ions with dipalmitoyl lecithin and dipalmitoyl glycerol monolayers spread at the air/water interface was followed byExpand
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IONIZATION OF TYROSYL GROUP IN ANGIOTENSIN II.
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The interactions of l-α-dipalmitoyl lecithin monolayers with Na+, K+ or Li+, and its possible role in membrane phenomena
Abstract 1. 1. The surface properties of l -α-dipalmitoyl lecithin monolayers spread on 0.15 M solutions of NaCl, KCl or LiCl were determined at 25°, 35° and 45°. Using as comparison the propertiesExpand
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Interfacial activity of an ion channel-generating protein cytolysin from the sea anemone Stichodactyla helianthus.
The ability of a purified sea anemone (Stichodactyla helianthus) protein cytolysin to interact with a variety of interfaces was investigated by means of the Wilhemy plate method. At the air:water andExpand
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Kinetics and mechanisms of monolayer interactions. II. Effect of chain length of alkyl ionic surfactants on their interaction with dipalmitoyl glycerol, dipalmitoyl phosphatidylethanolamine, and
Abstract The energies of activation of the interaction cf alkyl trimethylammonium surfactants with dipalmitoyl glycerol, dipalmitoyl phosphatidylethanolamine, and dipalmitoyl lecithin monolayersExpand
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Free energy of mixing of phospholipids and cholesterol at the air-water interface.
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Surface activities of procaine, lidocaine, and tetracaine and their interaction energies with phospholipid monolayers.
The free energies of adsorption of procaine, lidocaine, and tetracaine at the air--water interface were estimated from plots of surface pressure (pi less than or equal to 5 dynes/cm) against bulkExpand
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