Biological Horizons in Surface Science

Author: Prince   L  

Publisher: Elsevier Science‎

Publication year: 2012

E-ISBN: 9780323148603

P-ISBN(Paperback): 9780125658508

P-ISBN(Hardback):  9780125658508

Subject: Q73 biofilm structure and function

Language: ENG

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Description

Biological Horizons in Surface Science presents techniques used in surface science research as well as experimental data. It is organized in such a way that there is a transition from the more theoretical or molecular to the more biological. Emphasis is placed on the importance of water in determining molecular architecture and interactions. Methods of examining molecular associations and complex formation of molecules are discussed, and the results from such studies are reviewed. Permeability is examined from the point of view of the energies required to penetrate between two different phases, and from the role that multicellular membranes may play in directing the diffusion of ions or solutes in general. Current concepts of membrane structure based on membrane models are discussed and some new models are suggested.
Application of surface science techniques and the unique energies present at interphases are considered with regard to drug interaction with biological tissue and immunological phenomena. The importance of surfactant protein-lipid association is also discussed in regard to alveolar mechanics. This book is directed particularly to biologists who will find many of the techniques used of significance in their own research. It also aims to interest graduate students in this area of investigation.

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 6

Table of Contents

pp.:  6 – 10

List of Contributors

pp.:  10 – 12

Preface

pp.:  12 – 16

Chapter 2. Thermal and Spectroscopic Studies of Membranes and Membrane Components

pp.:  50 – 84

Chapter 3. Reactions and Molecular Interactions at Interfaces

pp.:  84 – 134

Chapter 4. Solute Transfer across Liquid–Liquid Interphases

pp.:  134 – 174

Chapter 5. Phospholipid Membranes as Experimental Models for Biological Membranes

pp.:  174 – 242

Chapter 6. Surface vs. Transcellular Routes in the Transport of Sodium across Epithelial Membranes

pp.:  242 – 262

Chapter 7. Surface Science and Immunochemistry

pp.:  262 – 304

Chapter 8. Membrane Anesthesia

pp.:  304 – 324

Chapter 9. Digestion and Absorption of Lipids in the Intestinal Tract

pp.:  324 – 368

Chapter 10. Emulsions

pp.:  368 – 382

Chapter 11. Pulmonary Surfactants: Molecular Structure and Biological Activity

pp.:  382 – 442

Chapter 12. Concordance

pp.:  442 – 464

Author Index

pp.:  464 – 481

Subject Index

pp.:  481 – 485