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The book will provide an overview of the roles of vascular adhesion molecules in health and disease, with chapters on their cell biology, followed by chapters reviewing their importance in specific disease processes. Vascular adhesion molecules are vital for the physiological processes of leukocyte trafficking and also critically involved in the enhanced leukocyte emigration that is a key feature of all inflammatory and immune diseases. The book is designed to provide up-to-date, linked reviews of the subject suitable for postgraduate students entering the field or research workers from allied disciplines needing a modern overview.
Cellular and Molecular Mechanisms of Inflammation: Vascular Adhesion Molecules presents the study of the structure and function of constitutive and inducible cell surface structures, which contribute to the temporal and spatial patterns, and cellular selectivity of leukocyte-vessel wall interactions. The book addresses the rapidly expanding field of vascular adhesion molecules. Contributed articles discuss SELECTINS, a family of structurally related glycoproteins that contain lectin like domains that confer leukocyte-selective adhesive functions, which include ELAM-1 (Endothelial-Leukocyte Adhesion Molecule-1), GMP-140 (PADGEM, CD62), and LAM-1 (gp 90m e l, LEC-CAM-1, LECAM-1). Other adhesive molecules such as CD44 and members of the immunoglobulin family of cell surface glycoprotiens, including ICAM-1 (CD54), VCAM-1/ INCAM-110 and LP AM-1 are also considered. The text will be very useful to cytologists, molecular biologists, physiologists, and pharmacologists.
The microcirculation is highly responsive to, and a vital participant in, the inflammatory response. All segments of the microvasculature (arterioles, capillaries, and venules) exhibit characteristic phenotypic changes during inflammation that appear to be directed toward enhancing the delivery of inflammatory cells to the injured/infected tissue, isolating the region from healthy tissue and the systemic circulation, and setting the stage for tissue repair and regeneration. The best characterized responses of the microcirculation to inflammation include impaired vasomotor function, reduced capillary perfusion, adhesion of leukocytes and platelets, activation of the coagulation cascade, and enhanced thrombosis, increased vascular permeability, and an increase in the rate of proliferation of blood and lymphatic vessels. A variety of cells that normally circulate in blood (leukocytes, platelets) or reside within the vessel wall (endothelial cells, pericytes) or in the perivascular space (mast cells, macrophages) are activated in response to inflammation. The activation products and chemical mediators released from these cells act through different well-characterized signaling pathways to induce the phenotypic changes in microvessel function that accompany inflammation. Drugs that target a specific microvascular response to inflammation, such as leukocyte-endothelial cell adhesion or angiogenesis, have shown promise in both the preclinical and clinical studies of inflammatory disease. Future research efforts in this area will likely identify new avenues for therapeutic intervention in inflammation. Table of Contents: Introduction / Historical Perspectives / Anatomical Considerations / Impaired Vasomotor Responses / Capillary Perfusion / Angiogenesis / Leukocyte-Endothelial Cell Adhesion / Platelet-Vessel Wall Interactions / Coagulation and Thrombosis / Endothelial Barrier Dysfunction / Epilogue / References
The book will provide an overview of the roles of vascular adhesion molecules in health and disease, with chapters on their cell biology, followed by chapters reviewing their importance in specific disease processes. Vascular adhesion molecules are vital for the physiological processes of leukocyte trafficking and also critically involved in the enhanced leukocyte emigration that is a key feature of all inflammatory and immune diseases. The book is designed to provide up-to-date, linked reviews of the subject suitable for postgraduate students entering the field or research workers from allied disciplines needing a modern overview.
Inflammatory cell recruitment requires the concerted action of at least five major sets of adhesion molecules: integrins, immunoglobulin-like molecules, selectins, carbohydrate structures serving as selectin ligands, and certain ectoenzymes. This volume gives a comprehensive overview on the most relevant leukocyte and endothelial adhesion molecules. The chapters are written by leaders in the field and focus on the biology, structure, function, and regulation of adhesion molecules. Currently approved adhesion molecule-based therapies are reviewed and an outlook for future approaches is also provided. The book is of interest to clinicians and scientists from immunology, physiology, cancer research, rheumatology, allergology, infectious diseases, gastroenterology, pulmonology and cardiology.
This book covers the physiological processes relevant to inflammation. It centers on the recruitment of leukocytes to sites of injury and infection, their function in the tissue and the eventual resolution of inflammation.
This book covers the structure and classification of adhesion molecules in relation to signaling pathways and gene expression. It discusses immunohistochemical localization, neutrophil migration, and junctional, functional, and inflammatory adhesion molecules in pathologies such as leukocyte decompression sickness and ischemia reperfusion injury. H
Cellular and Molecular Mechanisms of Inflammation: Vascular Adhesion Molecules presents the study of the structure and function of constitutive and inducible cell surface structures, which contribute to the temporal and spatial patterns, and cellular selectivity of leukocyte-vessel wall interactions. The book addresses the rapidly expanding field of vascular adhesion molecules. Contributed articles discuss SELECTINS, a family of structurally related glycoproteins that contain lectin like domains that confer leukocyte-selective adhesive functions, which include ELAM-1 (Endothelial-Leukocyte Adh...
New updated edition first published with Cambridge University Press. This new edition includes 29 chapters on topics as diverse as pathophysiology of atherosclerosis, vascular haemodynamics, haemostasis, thrombophilia and post-amputation pain syndromes.