Extracellular Matrix in Development

Extracellular Matrix in Development
Title Extracellular Matrix in Development PDF eBook
Author Douglas W. DeSimone
Publisher Springer Science & Business Media
Pages 260
Release 2013-03-15
Genre Science
ISBN 3642359353

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Cells in the developing embryo depend on signals from the extracellular environment to help guide their differentiation. An important mediator in this process is the extracellular matrix – secreted macromolecules that interact to form large protein networks outside the cell. During development, the extracellular matrix serves to separate adjacent cell groups, participates in establishing morphogenic gradients, and, through its ability to interact directly will cell-surface receptors, provides developmental clocks and positional information. This volume discusses how the extracellular matrix influences fundamental developmental processes and how model systems can be used to elucidate ECM function. The topics addressed range from how ECM influences early development as well as repair processes in the adult that recapitulate developmental pathways.

The Extracellular Matrix: an Overview

The Extracellular Matrix: an Overview
Title The Extracellular Matrix: an Overview PDF eBook
Author Robert Mecham
Publisher Springer Science & Business Media
Pages 429
Release 2011-02-16
Genre Science
ISBN 3642165559

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Knowledge of the extracellular matrix (ECM) is essential to understand cellular differentiation, tissue development, and tissue remodeling. This volume of the series “Biology of Extracellular Matrix” provides a timely overview of the structure, regulation, and function of the major macromolecules that make up the extracellular matrix. It covers topics such as collagen types and assembly of collagen-containing suprastructures, basement membrane, fibronectin and other cell-adhesive glycoproteins, proteoglycans, microfibrils, elastin, fibulins and matricellular proteins, such as thrombospondin. It also explores the concept that ECM components together with their cell surface receptors can be viewed as intricate nano-devices that allow cells to physically organize their 3-D-environment. Further, the role of the ECM in human disease and pathogenesis is discussed as well as the use of model organisms in elucidating ECM function.

Molecular Biology of the Cell

Molecular Biology of the Cell
Title Molecular Biology of the Cell PDF eBook
Author
Publisher
Pages 0
Release 2002
Genre Cells
ISBN 9780815332183

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Extracellular Matrix Degradation

Extracellular Matrix Degradation
Title Extracellular Matrix Degradation PDF eBook
Author William C. Parks
Publisher Springer Science & Business Media
Pages 262
Release 2011-04-07
Genre Science
ISBN 3642168612

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Regulated turnover of extracellular matrix (ECM) is an important component of tissue homeostasis. In recent years, the enzymes that participate in, and control ECM turnover have been the focus of research that touches on development, tissue remodeling, inflammation and disease. This volume in the Biology of Extracellular Matrix series provides a review of the known classes of proteases that degrade ECM both outside and inside the cell. The specific EMC proteases that are discussed include cathepsins, bacterial collagenases, matrix metalloproteinases, meprins, serine proteases, and elastases. The volume also discusses the domains responsible for specific biochemical characteristics of the proteases and the physical interactions that occur when the protease interacts with substrate. The topics covered in this volume provide an important context for understanding the role that matrix-degrading proteases play in normal tissue remodeling and in diseases such as cancer and lung disease.

Extracellular Matrix in Development and Disease

Extracellular Matrix in Development and Disease
Title Extracellular Matrix in Development and Disease PDF eBook
Author Jeffrey H. Miner
Publisher Elsevier
Pages 268
Release 2005-11-18
Genre Science
ISBN 9780444518460

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Extracellular matrix proteins are serious, common human diseases that are caused by mutations in genes that encode these proteins. This has spurred a great number of researchers to study the extracellular matrix, sometimes by choice and sometimes by necessity. Much progress has been made in the last decade towards understanding what matrix proteins do and how cells interact with and respond to them. Volume 15 is a compilation of reviews by experts in their respective fields. The chapters in this book address the biology of a broad spectrum of extracellular matrix molecules and their functions in development and disease. This book has been designed to focus on a diverse subset of matrix proteins that have been shown to be important for development, function, and disease. The book therefore both presents a broad view of the field and provides crucial details about some of the best-studied matrix molecules. * Written by leaders in the field * Discusses the potential of matrix components to be used as therapeutic tools for the treatment and prevention of cancer * Offers a section on integrin signaling and the development of the central nervous system, detailing the migration of neurons and the glia * Covers a diverse array of molecules such as laminins, collagens, heparan sulfate proteoglycans, integrins, and more

The Role of Extracellular Matrix in Development

The Role of Extracellular Matrix in Development
Title The Role of Extracellular Matrix in Development PDF eBook
Author Robert L. Trelstad
Publisher New York : A.R. Liss
Pages 672
Release 1984
Genre Science
ISBN

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Evolution of Extracellular Matrix

Evolution of Extracellular Matrix
Title Evolution of Extracellular Matrix PDF eBook
Author Fred W. Keeley
Publisher Springer Science & Business Media
Pages 297
Release 2013-03-15
Genre Science
ISBN 3642360025

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The evolution of single cells into multicellular organisms was mediated, in large part, by the extracellular matrix. The proteins and glycoconjugates that make up the extracellular matrix provide structural support to cellular complexes, facilitate cell adhesion and migration, and impart mechanical properties that are important for tissue function. Each class of ECM macromolecule has evolved to incorporate distinctive properties that are defined by conserved modules that are mixed together to achieve appropriate function. This volume provides a comprehensive analysis of how the major ECM components evolved over time in order to fill their specific roles found in modern organisms. The major focus is on the structural matrix proteins, matricellular proteins, and more complex ECM structures such as basement membranes. Adhesive proteins and their receptors are also discussed.