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Sunday, August 2, 2020 | History

2 edition of Lipid bilayers and biological membranes found in the catalog.

Lipid bilayers and biological membranes

Lipid bilayers and biological membranes

dynamic properties

  • 59 Want to read
  • 20 Currently reading

Published by M. Dekker in New York .
Written in English

    Subjects:
  • Membranes (Biology),
  • Bilayer lipid membranes.

  • Edition Notes

    Includes bibliographies and indexes.

    Statementedited by George Eisenman.
    SeriesMembranes ; v. 3
    ContributionsEisenman, George.
    Classifications
    LC ClassificationsQH601 .L56
    The Physical Object
    Paginationxiv, 538 p. :
    Number of Pages538
    ID Numbers
    Open LibraryOL5222449M
    ISBN 100824761782
    LC Control Number75163920

    As a result of their unique physical properties, biological membrane mimetics, such as liposomes, are used in a broad range of scientific and technological applications. Liposomes, Lipid Bilayers and Model Membranes: From Basic Research to Application describes state-of . Supported Lipid Bilayers as Model Systems for Lipid-Protein Interactions We have a long-standing interest in the further development of supported lipid bilayers as models of biological membranes. Having pioneered supported membranes in the s, we developed methods to prepare single planar lipid bilayers on soft polymer cushions. Several integral membrane proteins have been .

    Cite this paper as: Sackmann E., Albrecht O., Hartmann W., Galla H.J. () Domain Formation in Lipid Bilayers and Biological Membranes. In: Nicolau C., Paraf A Cited by: 5. In , the year the Journal of General Physiology was founded, there was little understanding of the structure of the cell membrane. It was evident that cells had invisible barriers separating the cytoplasm from the external solution. However, it would take decades before lipid bilayers were identified as the essential constituent of by: 6.

    @article{osti_, title = {Cholesterol enhances surface water diffusion of phospholipid bilayers}, author = {Cheng, Chi-Yuan and Kausik, Ravinath and Han, Songi, E-mail: [email protected] and Olijve, Luuk L. C.}, abstractNote = {Elucidating the physical effect of cholesterol (Chol) on biological membranes is necessary towards rationalizing their structural . Exchange of gas molecules across biological membranes constitutes one of the most fundamental phenomena in biology of aerobic organisms. The primary mechanism for gas conduction across the cellular membrane is deemed to be free diffusion of the species across lipid bilayers, however, the involvement of a number of membrane channels in the process has Cited by:


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Lipid bilayers and biological membranes Download PDF EPUB FB2

An Introduction to Biological Membranes: From Bilayers to Rafts covers many aspects of membrane structure/function that bridges membrane biophysics and cell biology. Offering cohesive, foundational information, this publication is valuable for advanced undergraduate students, graduate students and membranologists who seek a broad overview of.

Lipid bilayers represent the fundamental model system for biological membranes. In recent years, we have been presented with a wealth of important insights into the structural and functional abilities of lipid bilayers with real possibilities in understanding the complex and varied behaviour of biological membranes.

Planar bilayers offer direct, quantitative experimental approaches to the study of membranes of precisely determined composition which can be manipulated by the experimenter.

Pore-forming molecules, transporter molecules, ATP-dependent enzymes and other entities can be incorporated into the bilayers to simulate biological functions. Liposomes, Lipid Bilayers and Model Membranes: His research is Lipid bilayers and biological membranes book on the physics of biological membranes with the aim of delineating the functional role of membrane lipids in cellular transport and signaling.

Norbert Kučerka received his Ph.D. in biophysics from the Faculty of Mathematics, Physics and Informatics at Comenius Format: Paperback. Lipid bilayers represent the fundamental model system for biological membranes. In recent years, we have been presented with a wealth of important insights into the structural and functional abilities of lipid bilayers with real possibilities in understanding the complex and varied behaviour of biological : J.

Katsaras, T. Gutberlet. The Structure of Biological Membranes, Third Edition provides readers with an understanding of membrane structure and function that is rooted in the history of the field and brought to the forefront of current knowledge.

The first part of the book focuses on the fundamentals of lipid bilayers and membrane proteins. Lipid bilayer is a universal component of all cell membranes. The structure is called a "lipid bilayer" because it composed of two layers of fatty acids organized in two sheets.

The lipid bilayer is typically about five nanometers to ten nanometers thick and surrounds all cells providing the cell membrane structure. The book ‘Lipid Bilayers: Properties, Behavior and Interactions’ provides a broad overview of an important biological system ‘cell membrane’.

The cell is the powerhouse where processes of life are controlled. Cell membranes consist of lipid bilayers that make biological boundaries. If the function of the lipids is only to form this fluid matrix, why does a biological membrane often contain more than different lipid species.

Furthermore, many lipids do not spontaneously form bilayers with by: A general review of lipid bilayer structure and dynamics is given, including such current topics as the hydration of lipid bilayers, the superstructural behaviour of bilayers at different states of hydration and external conditions, the role and behaviour of.

An important property of lipid bilayers is that they behave as two-dimensional fluids in which individual molecules (both lipids and proteins) are free to rotate and move in lateral directions (Figure ).Such fluidity is a critical property of membranes and is determined by both temperature and lipid composition.

Liposomes, Lipid Bilayers and Model Membranes: From Basic Research to Application describes state-of-the-art research and future directions in the field of membranes, which has evolved from basic studies of the physicochemical properties of amphiphiles to their application in industry and medicine.

This book deals with biological membranes. Lipid bilayer is the most simple model of the cell membrane which retains many of its properties even in the absence of proteins. Its formation, structure and properties rely on a subtle. Biological membranes (biomembranes) separate the interior of the cells from their external environment and cells from each other.

Biomembranes Author: Gaspar Banfalvi. COVID Resources. Reliable information about the coronavirus (COVID) is available from the World Health Organization (current situation, international travel).Numerous and frequently-updated resource results are available from this ’s WebJunction has pulled together information and resources to assist library staff as they consider how to handle.

Lipid bilayer explained. The lipid bilayer (or phospholipid bilayer) is a thin polar membrane made of two layers of lipid molecules. These membranes are flat sheets that form a continuous barrier around all cell membranes of almost all organisms and many viruses are made of a lipid bilayer, as are the nuclear membrane surrounding the cell nucleus, and other membranes.

This book summarizes the current status of research on bilayer lipid membranes (planar lipid bilayers and spherical liposomes). In addition to describing the properties of lipid bilayers and examining biomembrane phenomena, the book has two other objectives.

Liposomes, Lipid Bilayers and Model Membranes: From Basic Research to Application Georg Pabst, Norbert Kucerka, Mu-Ping Nieh, John Katsaras As a result of their unique physical properties, biological membrane mimetics, such as liposomes, are used in a broad range of scientific and technological applications.

An Introduction to Biological Membranes: From Bilayers to Rafts covers many aspects of membrane structure/function that bridges membrane biophysics and cell biology. Offering cohesive, foundational information, this publication is valuable for advanced undergraduate students, graduate Pages: Get this from a library.

An introduction to biological membranes: from bilayers to rafts. [William Stillwell] -- This book provides a timely and exceptional resource for using social media and other new technologies to help college students meet both general and discipline-specific objectives.

It. Lipid bilayers are important in biological are the basis of cell membranes, and they surround most cell bilayers form automatically from phospholipids by self-assembly. The phospholipids have heads which mix with water and tails which reject water.

So the tails come together in the centre of the double layer, and the heads on the outside are .These lipid bilayers are barriers to the flow of polar molecules.4Specific proteins mediate distinctive functions of membranes.

Proteins serve as pumps, channels, receptors, energy transducers, and enzymes. Membrane proteins are embedded in lipid bilayers, which create suitable environments for their action.5Membranes are noncovalent : Jeremy M Berg, John L Tymoczko, Lubert Stryer.The book includes a review of the results of water permeability measurements on artificial lipid bilayer membranes, and discusses permeability data on biological membranes.

Written for both the general reader- physiologist, biophysicist, student, or chemist - and the specialist actively engaged in research, the material is neither too obscure.