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Biochemical Actions of Hormones, Volume V explores the nature of interaction of multiple hormones in regulating specific phenotypes. This volume is organized into 11 chapters that include discussions on the developments in the understanding of the biochemistry and molecular biology of hormones. The opening chapters deal with the modifications of chromatin structure by hormones, the regulation of exocytosis, ontogeny of estrogen receptors, and the hormonal regulation of cells of the seminiferous tubule. The discussions then shift to the advances on the progesterone receptor, the role of glucocorticoids in the integration of mammary tumor virus genes, and a model system for estrogen action. Other chapters examine the physiology, molecular action, and biological effects of somatomedins, epidermal growth factors and 1,25-dihydroxyvitamin. The remaining chapters focus on multihormone control of mRNA for a specific hepatic protein. This book is of great value to endocrinologists.
Vitamins and Hormones
Hormonal Proteins and Peptides: Growth Factors, Volume XII focuses on the chemistry and biology of nerve growth factor (NGF), insulin-like growth factors/somatomedins/multiplication-stimulating activity (IGFs/SMs/MSA), fibroblast growth factors (FGFs), platelet-derived growth factor (PDGF), and skeletal growth factor (SGF). This book discusses the development of growth factors in cell proliferation, differentiation, and malignancy. Organized into eight chapters, this volume starts with an overview of the findings on the structural and biological properties of NGF. This text then discusses the identical amino acid sequences of IFG-I and SM-c and explains as well the similarities in the structure of IFG-II and MSA. Other chapters present a thorough discussion of human PDGF, with emphasis on the link between the PDGF and the simian sarcoma virus gene product. This book discusses as well the mechanism of action of the pituitary and brain FGF. The final chapter deals with the discovery, isolation, and characterization of the biological activities of epidermal growth factor (EGF). This book is a valuable resource for biochemists, endocrinologists, and physicians.
Biological Regulation of the Chondrocytes provides a comprehensive examination of the various regulations in which cartilaginous cells are involved. The book's introductory chapter provides an overview of the different types of chondrocyte, while following chapters discuss the various biological regulations implicated in chondrocyte functions, especially the modulation of differentiative properties. Chapters 2 and 3 examine the extracellular matrix components, and Chapter 4 discusses the special case of cultured chondrocytes and the usefulness of in vitro approaches. The following three chapters focus on the complex role of cartilaginous growth factors and cytokines (FGF, TGFB, IGF, and IL1) on the modulation of the chondrocyte properties. Chapter 9 discusses the synoviocyte, and the last four chapters examine the biochemical and molecular perturbations that appear during repair, aging, rheumatic disease, and cancer. Biological Regulation of the Chondrocytes will benefit rheumatologists, pharmaceutical researchers, physiologists, connective tissue specialists, and students and other researchers in the osteoarticular field.
The Endocrinology of Growth, Development, and Metabolism in Vertebrates provides an overview of vertebrate endocrinology. This book aims to strengthen the bridge between medical and comparative endocrinologists by addressing the benefits that they can derive from this association. Organized into five parts encompassing 24 chapters, this volume starts with a discussion on the structure and biological function of growth hormone (GH) and prolactin (PRL) family. This book then explains the extrinsic, genetic, and humoral factors that influence animal growth, particularly in poikilotherms. This text also elaborates the environmental conditions that affect the growth of poikilotherms, including food availability, temperature, and photoperiod. Other chapters discuss how somatotropin affects the growth development in homeotherms, such as livestock species. The reader is also introduced to the metabolic actions of GH, which can be described in terms of short-lived insulin-like effects. Endocrinologists, molecular endocrinologists, biologists, molecular biologists, biochemists, researchers, and physicians will find this book extremely useful.
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The Boekentoren, designed by Henry van de Velde, has housed the Ghent University library since 1942. But this unusual library is much more than just an iconic building. In this book, the historian Ruben Mantels recounts the turbulent history of the library, from the ‘liberation of the book’ to the ‘powerful thrust of Modernism’, from the French Revolution to the digital revolution and Google Books. Portraits of librarians, the reading public and the collections are all given a place, while old manuscripts, Ephemera and Gandavensia give up their secrets. Innumerable illustrations and photos bring the story of the Tower of Books to life. This work is a must-have for everyone with a place in their heart for Ghent and for literature.