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Titlebook: Artificial and Reconstituted Membrane Systems; J. R. Harris,A.-H. Etémadi Book 1989 Plenum Press, New York 1989 Calcium.Lipid.Organe.Trans

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期刊全称Artificial and Reconstituted Membrane Systems
影响因子2023J. R. Harris,A.-H. Etémadi
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学科分类Subcellular Biochemistry
图书封面Titlebook: Artificial and Reconstituted Membrane Systems;  J. R. Harris,A.-H. Etémadi Book 1989 Plenum Press, New York 1989 Calcium.Lipid.Organe.Trans
影响因子This collection of 11 chapters is devoted to a survey of artificial and reconsti­ tuted membrane systems. These are fundamental themes and areas of great current importance in membrane biochemistry. They also relate well to the founding concept of this series, namely, to present studies that progressively work toward and provide us with an "integrated view of the cell. " In this volume, it is the application of a wide range of physiochemical and biochemi­ cal techniques to the study of membrane lipids and proteins which serves to demonstrate the significant progress that has been made in this field over the past 25 years. From the understanding of simplified artificial systems, it is hoped that it will ultimately be possible to gain a more accurate understanding of natural biological membranes, in all their diversity. This book is an appropriate successor to Volume 13 of the series, which deals with fluorescence studies on biological membranes. Indeed, the present chapter by Lesley Davenport and colleagues was originally due for inclusion in Volume 13, but has been held over for inclusion in this volume, where it integrates remarkably well with the other topics. The extremely varie
Pindex Book 1989
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Reconstitution of Membrane Molecular Mechanisms in Bilayer Lipid Membranes and Patch-Clamp Bilayerscomplexes in biomembranes. In view of these diverse and intricate processes, it is not surprising that biomembranes are very complex functionally. The molecular organization of biomembranes, as revealed by physical chemical studies, includes a lipid bilayer core, associated proteins, glycolipids, an
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Lectin-Carbohydrate Interactions in Model and Biological Membrane Systems,nal triggered at the cell surface. Such a response may arise from the specific attachment of macromolecules to carbohydrate-bearing molecules (glycolipids and glycoproteins), which are abundantly present at the outer surface of the plasma membrane. Typical examples include the operation of hormones
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Energy-Transducing Complexes in Bacterial Respiratory Chains,s. By introducing the concept of an electrochemical H. gradient across the membrane (.)—that is, a proton motive force (pmf) composed of ΔΨ and ΔpH as .—the chemiosmotic hypothesis (Mitchell, 1966) has played a central role in solving the problem of how organelles synthesize ATP using oxidative or p
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Reconstitution of the High-Affinity Receptor for Immunoglobulin E,mast cells, basophils, and related cells. Its aggregation initiates the release of mediators responsible for the allergic reaction. Understanding its function will not only shed light on the field of Fc receptors in general but may also help in designing new treatments of allergy.
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Liposomes as Carriers of Drugs Observations on Vesicle Fate after Injection and Its Control,riers in the therapy, prevention, or detection of disease (Gregoriadis, 1980). This discussion deals with two aspects: (1) the extent to which vesicles retain entrapped agents in the presence of biological fluids, namely, blood and (2) the rate by which vesicles are cleared from the circulation and
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Reconstitution and Physiological Protein Translocation Processes,eous complexes into bilayer membranes, often with the aim of restoring the natural function of the incorporated material. In a more general sense it refers to the . rebuilding or regenerating of natural biological processes with or without involvement of membranes (Etemadi, 1985). With regard to pro
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Reconstitution of the High-Affinity Receptor for Immunoglobulin E,mast cells, basophils, and related cells. Its aggregation initiates the release of mediators responsible for the allergic reaction. Understanding its function will not only shed light on the field of Fc receptors in general but may also help in designing new treatments of allergy.
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