Description

Book Synopsis
Intended primarily for researchers working with bioactive substances such as hormones, neurotransmitters, growth factors, and connective tissue makers, this book discusses the principles of degradation in major groups of bioactive materials with respect to physiology, location, and regulation. Peptidases; receptor-mediated endocytosis; organ extraction and clearance; and the degradation of specific proteins, peptides, amines, steroids, and polysaccharoides are featured. Pathophysiology and its role in diagnostics and disease are considered throughout the book, in addition to updates of recent literature and substantial new information on physiology and pathophysiology of degradation of bioactive material. No special mathematical or kinetic background is necessary to read this book because the mathematic and kinetic concepts are facilitated through the presentation of fundamental and more advanced principles. Furthermore, illustrations and tables are provided to facilitate the understan

Table of Contents
INTRODUCTION. KINETICS OF WHOLE-BODY AND ORGAN DEGRADATION. Introduction. Compartmental and Multicompartmental Models. Non-Compartmental Models. Whole-Body Degradation. Organ and Tissue Degradation. Conclusion. KINETICS OF ELIMINATION FROM THE BLOOD: PRINCIPLES AND PROCEDURES. Introduction. Kinetic Models in General. Regimes of Elimination. The Concept of Clearance. Special Clearance Regimes. Experimental Procedures. Methodology. Conclusion. PEPTIDASES INVOLVED IN THE METABOLISM OF BIOACTIVE PEPTIDES. Introduction. Properties of the Peptidases. How Do Peptidases Act in Concert? Organ, Tissue and Cellular Locations of Cell Surface Peptidases. Membrane Peptidases as Cluster Differentiation (CD) Antigens. Membrane Anchorage, Release and Plasma Activity of Peptidases. Physiological Roles of Membrane Peptidases. Conclusion. RECEPTOR-MEDIATED ENDOCYTOSIS AND DEGRADATION OF POLYPEPTIDE HORMONES, GROWTH FACTORS AND NEUROPEPTIDES. Perspectives. Receptors for Polypeptide Hormones, Growth Factors and Neuropeptides. Receptor-Mediated Endocytosis. Endocytosis and Degradation of Hormones, Growth Factors, Neuropeptides and Plasma Protein. DEGRADATION OF CIRCULATING RENIN AND ANGIOTENSIN. Introduction. Physiology of Renin and Angiotensin II. Metabolism of Circulating Renin. Metabolism of Circulating Angiotensin II. The Renin-Angiotensin System in Disease. Conclusion. PROCESSING AND CLEARANCE OF ATRIAL NATRIURETIC FACTORS (ANF). Introduction. Processing of ANF Prohormone. Clearance of Bioactive ANF. Conclusion. DEGRADATION OF GASTRIC PEPTIDES: METABOLISM OF THE GASTRINS. Introduction. Structure and Synthesis of the Gastrins. Degradation of the Gastrins. Conclusion. DEGRADATION OF CIRCULATING INTESTINAL PEPTIDES: METABOLISM OF SUBSTANCE P AND VASOACTIVE INTESTINAL POLYPEPTIDE. Introduction. Degradation of Substance P. Degradation of VIP. Conclusion. DEGRADATION OF GLUCAGONS. Introduction. Structure and Synthesis of Glucagon and Related Peptides. Degradation of Glucagon. Degradation o

Degradation of Bioactive Substances

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A Hardback by Jens H. Henriksen

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    View other formats and editions of Degradation of Bioactive Substances by Jens H. Henriksen

    Publisher: Taylor & Francis Inc
    Publication Date: 28/05/1991
    ISBN13: 9780849368585, 978-0849368585
    ISBN10: 0849368588

    Description

    Book Synopsis
    Intended primarily for researchers working with bioactive substances such as hormones, neurotransmitters, growth factors, and connective tissue makers, this book discusses the principles of degradation in major groups of bioactive materials with respect to physiology, location, and regulation. Peptidases; receptor-mediated endocytosis; organ extraction and clearance; and the degradation of specific proteins, peptides, amines, steroids, and polysaccharoides are featured. Pathophysiology and its role in diagnostics and disease are considered throughout the book, in addition to updates of recent literature and substantial new information on physiology and pathophysiology of degradation of bioactive material. No special mathematical or kinetic background is necessary to read this book because the mathematic and kinetic concepts are facilitated through the presentation of fundamental and more advanced principles. Furthermore, illustrations and tables are provided to facilitate the understan

    Table of Contents
    INTRODUCTION. KINETICS OF WHOLE-BODY AND ORGAN DEGRADATION. Introduction. Compartmental and Multicompartmental Models. Non-Compartmental Models. Whole-Body Degradation. Organ and Tissue Degradation. Conclusion. KINETICS OF ELIMINATION FROM THE BLOOD: PRINCIPLES AND PROCEDURES. Introduction. Kinetic Models in General. Regimes of Elimination. The Concept of Clearance. Special Clearance Regimes. Experimental Procedures. Methodology. Conclusion. PEPTIDASES INVOLVED IN THE METABOLISM OF BIOACTIVE PEPTIDES. Introduction. Properties of the Peptidases. How Do Peptidases Act in Concert? Organ, Tissue and Cellular Locations of Cell Surface Peptidases. Membrane Peptidases as Cluster Differentiation (CD) Antigens. Membrane Anchorage, Release and Plasma Activity of Peptidases. Physiological Roles of Membrane Peptidases. Conclusion. RECEPTOR-MEDIATED ENDOCYTOSIS AND DEGRADATION OF POLYPEPTIDE HORMONES, GROWTH FACTORS AND NEUROPEPTIDES. Perspectives. Receptors for Polypeptide Hormones, Growth Factors and Neuropeptides. Receptor-Mediated Endocytosis. Endocytosis and Degradation of Hormones, Growth Factors, Neuropeptides and Plasma Protein. DEGRADATION OF CIRCULATING RENIN AND ANGIOTENSIN. Introduction. Physiology of Renin and Angiotensin II. Metabolism of Circulating Renin. Metabolism of Circulating Angiotensin II. The Renin-Angiotensin System in Disease. Conclusion. PROCESSING AND CLEARANCE OF ATRIAL NATRIURETIC FACTORS (ANF). Introduction. Processing of ANF Prohormone. Clearance of Bioactive ANF. Conclusion. DEGRADATION OF GASTRIC PEPTIDES: METABOLISM OF THE GASTRINS. Introduction. Structure and Synthesis of the Gastrins. Degradation of the Gastrins. Conclusion. DEGRADATION OF CIRCULATING INTESTINAL PEPTIDES: METABOLISM OF SUBSTANCE P AND VASOACTIVE INTESTINAL POLYPEPTIDE. Introduction. Degradation of Substance P. Degradation of VIP. Conclusion. DEGRADATION OF GLUCAGONS. Introduction. Structure and Synthesis of Glucagon and Related Peptides. Degradation of Glucagon. Degradation o

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