Surface and Interfacial Aspects of Cell Adhesion

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Surface and Interfacial Aspects of Cell Adhesion

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  • 製本 Hardcover:ハードカバー版/ページ数 542 p.
  • 言語 ENG
  • 商品コード 9789004190788
  • DDC分類 571.6

Full Description

Cell adhesion comes into play in almost all domains of life. The range of situations in which it occurs, involving organisms, living tissues, microorganisms or single cells, is endless. Cell adhesion is involved in the binding of a cell to a surface, extracellular matrix, or another cell using cell adhesion molecules. It is crucial in the formation and maintenance of coherent multicellular structures. Cell surface adhesion molecules (integrins, for example) which transmit information from the extracellular matrix to the cell play vital roles in numerous cellular processes. Some of these include: cell growth, differentiation, embryogenesis, immune cell transmigration and response, and cancer metastasis. Also cell adhesion is involved in most of pathological situations.
This book is divided into four parts as follows: Part 1: Fundamentals of Cell Adhesion; Part 2: Methods to Study Cell Adhesion; Part 3: Surface Treatments to Control Cell Adhesion and Behavior; and Part 4: Cell Adhesion in Medicine and Therapy.
A bountiful information is covered in this book which represents the cumulative wisdom of many world-renowned researchers( physicists, materials scientists, chemists and biologists) engaged in unraveling the mechanisms of cell adhesion and how to mitigate or control it. It quite patent from the topics covered in this book that the subject of cell adhesion is truly interdisciplinary.
This book should be of great interest and value to anyone interested in cell adhesion which is vitally important to human life.

Contents

Preface Part 1: Fundamentals of Cell Adhesion; How Substrate Properties Control Cell Adhesion. A Physical-Chemical Approach; Is the Mechanics of Cell-Matrix Adhesion Amenable to Physical Modeling? Modulation of Cell Structure and Function in Response to Substrate Stiffness and External Forces; Cell/Material Interfaces: Influence of Surface Chemistry and Surface Topography on Cell Adhesion; Bacteria/Material Interfaces: Role of the Material and Cell Wall Properties; Role of Proteins and Water in the Initial Attachment of Mammalian Cells to Biomedical Surfaces: A Review; Part 2: Methods to Study Cell Adhesion; Applications of Micro- and Nano-technology to Study Cell Adhesion to Material Surfaces; Label-Free and Non-invasive Biosensor Cellular Assays for Cell Adhesion; Cell Adhesion Monitoring Using Substrate-Integrated Sensors; Methods to Measure the Strength of Cell Adhesion to Substrates; Use of the Atomic Force Microscope to Determine the Strength of Bacterial Attachment to Grooved Surface Features; Continuous Photobleaching to Study the Growth Modes of Focal Adhesions; Cell Adhesion to Ordered Pores: Consequences for Cellular Elasticity; Protein/Material Interfaces: Investigation on Model Surfaces; Addressable Cell Microarrays via Switchable Superhydrophobic Surfaces; Part 3: Surface Treatments to Control Cell Adhesion and Behavior; A Versatile Gradient of Biomolecules for Regulating Cell Behaviour; Evaluation of Cell Behaviour on Atmospheric Plasma Deposited; Siloxane and Fluorosiloxane Coatings; Similarities between Plasma Amino Functionalized PEEK and Titanium; Surfaces Concerning Enhancement of Osteoblast Cell Adhesion; Helium Plasma Treatment to Improve Biocompatibility and Blood Compatibility of Polycarbonate; Surface Engineering and Cell Adhesion; Part 4: Cell Adhesion in Medicine and Therapy: Selective Cell Control by Surface Structuring for Orthopedic Application; Inorganic PVD and CVD Coatings in Medicine — A Review of Protein and Cell Adhesion on Coated Surfaces; Plasma Polymer Surfaces for Cell Expansion and Delivery; Adhesion of Cells and Tissues to Bioabsorbable Polymeric Materials: Scaffolds, Surgical Tissue Adhesives and Anti-adhesive Materials; Phagocyte Decisions at Interfaces; Soluble Amyloid-? Protein Aggregates Induce Nuclear Factor-?B; Mediated Upregulation of Adhesion Molecule Expression to Stimulate; Brain Endothelium for Monocyte Adhesion

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