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CCN proteins in health and disease - An overview of the Fifth International Workshop on the CCN family of genes (Hardcover,... CCN proteins in health and disease - An overview of the Fifth International Workshop on the CCN family of genes (Hardcover, Edition.)
Annick Perbal, Masaharu Takigawa, Bernard Perbal
R4,638 Discovery Miles 46 380 Ships in 10 - 15 working days

The CCN family of genes currently comprises six secreted proteins (designated CCN16 i.e., Cyr61/CCN1; ctgf/CCN2; Nov/CCN3; WISP1/CCN4; WISP2/CCN5, and WISP3/CCN6) showing a strikingly conserved primary structure, with four modules sharing partial identity with IGF binding proteins, Von Willebrand protein, thrombospondin and several matricellular proteins and growth factors. The current view is that CCN proteins modulate signaling pathways that involve regulatory components of the extracellular matrix. As such, they likely act as a central hub in the regulation of mitosis, adhesion, apoptosis, extracellular matrix production, growth arrest and migration of multiple cell types. The 5th international workshop on the CCN family of genes, that was held in Toronto in 2008 brought together scientists from around the world who have an interest in the biological roles of this emerging family of proteins. On an educational point of view, the workshop was a unique place for an efficient diffusion of scientific information. The present book comprises a series of selected manuscripts that are based on the original communications that were presented at the meeting by worldwide leaders in the field of CCN biology. All major aspects of CCN proteins biology in both normal and pathological conditions are covered in this volume, from structure-functions analysis up to the involvement of CCN proteins in complex physiological functions. In addition to reports that support the Yin-Yang concept of CCN proteins driving opposite effects on the same biological process, this book also comprises several contributions that point to CCN proteins as amenable targets for therapeutic manipulation of disease processes. Together with the special issue of Journal of Cell Communication and Signaling in which authors have extended on the original data presented at the meeting, the present Proceedings provide an instant picture and unique update of the state of the art in the CCN field.

CCN proteins in health and disease - An overview of the Fifth International Workshop on the CCN family of genes (Paperback,... CCN proteins in health and disease - An overview of the Fifth International Workshop on the CCN family of genes (Paperback, 2010 ed.)
Annick Perbal, Masaharu Takigawa, Bernard Perbal
R4,592 Discovery Miles 45 920 Ships in 10 - 15 working days

The CCN family of genes currently comprises six secreted proteins (designated CCN16 i.e., Cyr61/CCN1; ctgf/CCN2; Nov/CCN3; WISP1/CCN4; WISP2/CCN5, and WISP3/CCN6) showing a strikingly conserved primary structure, with four modules sharing partial identity with IGF binding proteins, Von Willebrand protein, thrombospondin and several matricellular proteins and growth factors. The current view is that CCN proteins modulate signaling pathways that involve regulatory components of the extracellular matrix. As such, they likely act as a central hub in the regulation of mitosis, adhesion, apoptosis, extracellular matrix production, growth arrest and migration of multiple cell types. The 5th international workshop on the CCN family of genes, that was held in Toronto in 2008 brought together scientists from around the world who have an interest in the biological roles of this emerging family of proteins. On an educational point of view, the workshop was a unique place for an efficient diffusion of scientific information. The present book comprises a series of selected manuscripts that are based on the original communications that were presented at the meeting by worldwide leaders in the field of CCN biology. All major aspects of CCN proteins biology in both normal and pathological conditions are covered in this volume, from structure-functions analysis up to the involvement of CCN proteins in complex physiological functions. In addition to reports that support the Yin-Yang concept of CCN proteins driving opposite effects on the same biological process, this book also comprises several contributions that point to CCN proteins as amenable targets for therapeutic manipulation of disease processes. Together with the special issue of Journal of Cell Communication and Signaling in which authors have extended on the original data presented at the meeting, the present Proceedings provide an instant picture and unique update of the state of the art in the CCN field.

Ccn Proteins: A New Family Of Cell Growth And Differentiation Regulators (Hardcover): Masaharu Takigawa, Bernard Perbal Ccn Proteins: A New Family Of Cell Growth And Differentiation Regulators (Hardcover)
Masaharu Takigawa, Bernard Perbal
R5,774 Discovery Miles 57 740 Ships in 12 - 17 working days

The CCN Proteins are thought to play key roles in the biology of normal cell, tissue, organ, and body, and altered expression of CCN proteins is associated with several pathologies, including fibrosis and cancer. Because of its importance, the CCN field is expanding at a fast pace. Research articles in this field have recently increased logarithmically, and a book that is up-to-date, comprehensive, authoritative and affords insights into the biological roles of CCN proteins, is timely. CCN Protein: A New Family of Cell Growth and Differentiation Regulators presents the most recent progress in the field of CCN proteins, a new family of secretory signaling molecules that are involved in several fundamental biological progress. These proteins share a unique multimodular organization and present a partial identity with four families of regulatory proteins controling growth and development. The book covers the roles of CCN proteins in the control of cell proliferation and differentiation during normal development, wound repair, chondrogenesis and bone development, angiogenesis, tissue regeneration, fibrosis, renal diseases and cancer development.

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