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VEGF in Development

VEGF in Development
Author: Christiana Ruhrberg
Publisher: Springer Science & Business Media
Total Pages: 116
Release: 2008-12-11
Genre: Science
ISBN: 0387786325

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This book covers vascular endothelial growth factor A (VEGF or VEGFA), a secreted signaling protein. It highlights the central importance of this growth factor for vertebrate development.


Vascular Development

Vascular Development
Author: Derek J. Chadwick
Publisher: John Wiley & Sons
Total Pages: 260
Release: 2007-08-20
Genre: Science
ISBN: 0470319429

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The formation of blood vessels is an essential aspect of embryogenesis in vertebrates. It is a central feature of numerous post-embryonic processes, including tissue and organ growth and regeneration. It is also part of the pathology of tumour formation and certain inflammatory conditions. In recent years, comprehension of the molecular genetics of blood vessel formation has progressed enormously and studies in vertebrate model systems, especially the mouse and the zebrafish, have identified a common set of molecules and processes that are conserved throughout vertebrate embryogenesis while, in addition, highlighting aspects that may differ between different animal groups. The discovery in the past decade of the crucial role of new blood vessel formation for the development of cancers has generated great interest in angiogenesis (the formation of new blood vessels from pre-existing ones), with its major implications for potential cancer-control strategies. In addition, there are numerous situations where therapeutic treatments either require or would be assisted by vasculogenesis (the de novo formation of blood vessels). In particular, post-stroke therapies could include treatments that stimulate neovascularization of the affected tissues. The development of such treatments, however, requires thoroughly understanding the developmental properties of endothelial cells and the basic biology of blood vessel formation. While there are many books on angiogenesis, this unique book focuses on exactly this basic biology and explores blood vessel formation in connection with tissue development in a range of animal models. It includes detailed discussions of relevant cell biology, genetics and embryogenesis of blood vessel formation and presents insights into the cross-talk between developing blood vessels and other tissues. With contributions from vascular biologists, cell biologists and developmental biologists, a comprehensive and highly interdisciplinary volume is the outcome.


VEGF in Development

VEGF in Development
Author: Christiana Ruhrberg
Publisher: Springer
Total Pages: 106
Release: 2008-04-21
Genre: Science
ISBN: 9780387786315

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This book covers vascular endothelial growth factor A (VEGF or VEGFA), a secreted signaling protein. It highlights the central importance of this growth factor for vertebrate development.


Therapeutic Antibodies

Therapeutic Antibodies
Author: Yuti Chernajovsky
Publisher: Springer
Total Pages: 380
Release: 2007-11-22
Genre: Medical
ISBN: 9783540732587

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This essential work, edited by two researchers at London’s famous Queen Mary’s medical school targets one of the most important areas in medical development today. These days, antibody therapeutics are the treatment of choice for several autoimmune and oncological conditions. They are, indeed, becoming the molecules of choice for further combination therapies and cell engineering. In this timely work, a slew of expert in the field of drug development summarize all the current developments and clinical successes.


Vascular Biology of the Placenta

Vascular Biology of the Placenta
Author: Yuping Wang
Publisher: Biota Publishing
Total Pages: 126
Release: 2017-06-23
Genre: Medical
ISBN: 1615047514

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The placenta is an organ that connects the developing fetus to the uterine wall, thereby allowing nutrient uptake, waste elimination, and gas exchange via the mother's blood supply. Proper vascular development in the placenta is fundamental to ensuring a healthy fetus and successful pregnancy. This book provides an up-to-date summary and synthesis of knowledge regarding placental vascular biology and discusses the relevance of this vascular bed to the functions of the human placenta.


Physiologic and Pathologic Angiogenesis

Physiologic and Pathologic Angiogenesis
Author: Dan Simionescu
Publisher: BoD – Books on Demand
Total Pages: 466
Release: 2017-04-05
Genre: Medical
ISBN: 9535130234

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The purpose of this book is to highlight novel advances in the field and to incentivize scientists from a variety of fields to pursue angiogenesis as a research avenue. Blood vessel formation and maturation to capillaries, arteries, or veins is a fascinating area which can appeal to multiple scientists, students, and professors alike. Angiogenesis is relevant to medicine, engineering, pharmacology, and pathology and to the many patients suffering from blood vessel diseases and cancer, among others. We are hoping that this book will become a source of inspiration and novel ideas for all.


The Development of the Vascular System

The Development of the Vascular System
Author: Richard N. Feinberg
Publisher: S. Karger AG (Switzerland)
Total Pages: 208
Release: 1991
Genre: Medical
ISBN:

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Inflammation and the Microcirculation

Inflammation and the Microcirculation
Author: D. Neil Granger
Publisher: Morgan & Claypool Publishers
Total Pages: 99
Release: 2010
Genre: Medical
ISBN: 1615041656

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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


Vegf and Cancer

Vegf and Cancer
Author: Judith H. Harmey
Publisher: Springer Science & Business Media
Total Pages: 192
Release: 2004
Genre: Medical
ISBN: 9780306479885

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VEGF and Canceris a comprehensive and up to date review of current knowledge on the role of vascular endothelial growth factor (VEGF) in cancer. Key Features: -Discussion of VEGF as potent angiogenic factor and its role in tumor angiogenesis, -Review of the biology, molecular properties and regulation of VEGF, -Discussion of the role of VEGF in a range of different tumor types, both solid tumors and haematological cancers, -Review of the therapeutic potential of different approaches to block VEGF, -Review of recent evidence that in addition to its role as an endothelial cell mitogen, VEGF may also be an autocrine growth factor for tumor cells, regulating survival and invasion. This book is aimed at scientists new to angiogenesis and VEGF biology and provides new information for established researchers and scientists. It will also be a useful text for clinicians interested in anti-angiogenic therapy for treatment of human cancers.


Neuropilin

Neuropilin
Author: Dominique Bagnard
Publisher: Springer Science & Business Media
Total Pages: 163
Release: 2011-04-27
Genre: Medical
ISBN: 1461501199

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Cell adhesion is one of the most important properties controlling embryonic development. Extremely precise cell-cell contacts are established according to the nature of adhesion molecules that are expressed on the cell surface. The identifica tion of several families of adhesion molecules, well conserved throughout evolu tion, has been the basis of a considerable amount of work over the past 20 years that contributed to establish functions of cell adhesion in almost all organs. Nowadays, cell adhesion molecules are not just considered as cellular glue but are thought to play critical roles in cell signaling. Their ability to influence cell proliferation, mi gration, or differentiation depends on both cell surface adhesion properties and acti vation of intracellular pathways. The next challenge will be to understand how these molecules interact with each other to ensure specific functions in the morphogen esis of very sophisticated systems. Indeed, by exploring the cellular and molecular mechanisms of nervous system development, the group of H. Fujisawa in Japan identified in 1987 an adhesion molecule, neuropilin, highly expressed in the neuro pile of amphibian optic tectum. Ten years later, two groups discovered that neuropilin is a receptor for guidance signals of the semaphorin family. Axon guidance is a critical step during brain development and the mechanisms ensuring growth cone navigation are beginning to be well understood. The semaphorins are bifunctional signals defining permissive or inhibitory pathways sensed by the growth cone.