Pain and Neurogenic Inflammation


Book Description

This volume is intended to bring together recent advances in the often separate fields of pain and neurogenic inflammation. To this end, eminent researchers from both domains have contributed in-depth discussion of the mechanisms underlying these processes. Individual chapters focus on important recent discoveries such as the cloning of the capsaicin receptor and the discovery of RAMP proteins for CGRP receptors. This book provides an integrated account of recent advances in the fields of pain and neurogenic inflammation. The volume is intended to bring together studies from eminent researchers in the often separate research fields of pain and inflammation. "Pain and Neurogenic Inflammation" is aimed primarily at postgraduate researchers as well as academic and industrial researchers in pain and inflammation but is also likely to be of interest to undergraduate students seeking a firm grounding in the mechanisms underlying these important clinical conditions.




Neurogenic Inflammation in Health and Disease


Book Description

Morphological and functional studies revealed a complex system of primary sensory neurons that parallels the autonomic nervous system not only in its extent, but probably also in its significance. Neuropeptides released from activated nociceptive afferent nerves play a pivotal role in inflammatory reactions and pain, significantly modulate cardiac, vascular, respiratory, gastrointestinal and immune functions and influence the protective, restorative and trophic functions of somatic and visceral tissues. Several chapters of the book deal with the therapeutic potential of a new class of putative pain relieving agents acting through TRPV1, the capsaicin/vanilloid receptor, a specific ion channel that transmits pain. Neurogenic inflammation in historical perspective Cardiac protection by nociceptive afferents Molecular mechanisms of nociception Sensory mechanisms in migraine pathophysiology Vagal signaling of visceral inflammation Neurogenic mechanisms in arthritis Therapeutic implications of vanilloid-type compounds




Neurogenic Inflammation


Book Description

Take advantage of this unique book - the first single-volume resource to explore all important aspects of neurogenic inflammation. An unrivaled compilation of up-to-date information, Neurogenic Inflammation contains chapters written by recognized authorities in their areas of expertise. It covers the basic mechanisms and the pathophysiological implications of neurogenic inflammatory processes and points to novel therapeutic strategies in the field of inflammatory and related diseases. The book highlights the many systems and mechanisms involved in neurogenic inflammation, including vasodilatation, plasma extravasation, leukocyte adhesion, smooth muscle contraction, exocrine gland secretion, and recruitment of inflammatory cells. The authors discuss the contribution of neurogenic inflammation to human diseases, such as migraine, asthma, arthritis, and inflammatory bowel disease, linked to the ubiquitous distribution of sensory nerves to organs and tissues at both the somatic and visceral level. Neurogenic Inflammation is the clear choice for a one-step, authoritative guide to the latest developments in this dynamic field.




Pain and Neurogenic Inflammation


Book Description




Neurobiological Basis of Migraine


Book Description

Published with the New York Academy of Sciences A timely, broad-ranging exploration of the neurobiological basis and molecular mechanisms of migraines Migraines impact the lives of a significant portion of the world's population, afflicting sufferers with severe pain, nausea, and often visual impairment. The WHO views migraines as an important public health issue, and ranks them in its top twenty most disabling illnesses. Neurobiological Basis of Migraine reviews the latest advances made in our understanding of the primary basic mechanisms of migraine headache and provides valuable insights into how these findings are being translated into novel treatment and prevention strategies around the world. Written for researchers and clinicians alike, the book features edited contributions from distinguished experts in the field, taking a focused, yet wide-ranging approach to the subject. It begins by exploring the pathways and networks mediating migraine headaches, their underlying physiological mechanisms, characteristics of visceral pain, and the concept of dural neurogenic inflammation. From there the authors delve into the mechanisms sustaining the head pain and photophobia associated with migraines, and they review the pharmacology of newly discovered migraine treatments. These basic chapters are followed by clinical and genetic studies linking to key issues, including cortical spreading depression, ion channels, transporters, and epilepsy. Reviews of the latest advances in our understanding of the neurobiological basis of migraine Translates important research findings from around the globe into novel treatments strategies currently being investigated Provides researchers and clinicians with a deep understanding of the primary mechanisms of migraine from migraine modeling to clinical applications Includes contributions by many of the most respected researchers in the field, world-wide Discusses exciting recent developments in migraine mutations and their role in CSD, as well as the role of CSD in aura and trigeminal activation Timely, comprehensive, and authoritative, Neurobiological Basis of Migraine is an indispensable working resource for clinicians and migraine, headache, and pain researchers, including neurobiologists, neuropharmacologists, neurologists, and vascular neurobiologists, as well as graduate students in those fields who are involved in researching migraine headaches.




Capillary Fluid Exchange


Book Description

The partition of fluid between the vascular and interstitial compartments is regulated by forces (hydrostatic and oncotic) operating across the microvascular walls and the surface areas of permeable structures comprising the endothelial barrier to fluid and solute exchange, as well as within the extracellular matrix and lymphatics. In addition to its role in the regulation of vascular volume, transcapillary fluid filtration also allows for continuous turnover of water bathing tissue cells, providing the medium for diffusional flux of oxygen and nutrients required for cellular metabolism and removal of metabolic byproducts. Transendothelial volume flow has also been shown to influence vascular smooth muscle tone in arterioles, hydraulic conductivity in capillaries, and neutrophil transmigration across postcapillary venules, while the flow of this filtrate through the interstitial spaces functions to modify the activities of parenchymal, resident tissue, and metastasizing tumor cells. Likewise, the flow of lymph, which is driven by capillary filtration, is important for the transport of immune and tumor cells, antigen delivery to lymph nodes, and for return of filtered fluid and extravasated proteins to the blood. Given this background, the aims of this treatise are to summarize our current understanding of the factors involved in the regulation of transcapillary fluid movement, how fluid movements across the endothelial barrier and through the interstitium and lymphatic vessels influence cell function and behavior, and the pathophysiology of edema formation. Table of Contents: Fluid Movement Across the Endothelial Barrier / The Interstitium / The Lymphatic Vasculature / Pathophysiology of Edema Formation




Migraine: A Neuroinflammatory Disease?


Book Description

The potential involvement of neurogenic inflammation in the pathogenesis of the migraine headache and the inhibition of this mechanism as a possible mode of action of antimigraine medications are discussed in great depth in this volume. The topics are approached from a pathophysiological as well as a clinical experimental perspective by a renowned group of clinicians and scientists who carefully consider the current, future, and potential therapeutic approaches to migraine treatment. The first chapters of the book address the impact of migraine on a personal and societal level, the presentation, pathogenesis and treatment of migraine as well as the role of neurogenic inflammation. Subsequent chapters present models of neurogenic inflammation related to the pathogenesis of the migraine headache, focussing on the mediators and their receptors, as well as on the involvement of mast cells. The possibility of inhibition of neurogenic inflammation in abortive and preventive migraine treatment is also extensively discussed and a chapter on the question of whether migraine is a neuroinflammatory disease concludes this comprehensive analysis. Clinicians and scientists interested in inflammation from a physiological or pharmacological perspective and those interested in the pathogenesis of headache - migraine in particular - are the intended audience for this unique body of work.




Neurourology


Book Description

This book introduce neurourology as an emerging interdisciplinary area that covers the basic and clinical studies of the neural control on the normal lower urinary tract and the lower/upper urinary tract dysfunction due to neuropathy disorders. It systematically describes all aspects of neurourology from the epidemiology of the neurogenic bladder; to the pathology and pathophysiology of the lower urinary tract; to the diagnosis and treatment of the neurogenic bladder by conservative therapies or surgeries. This book provides a useful resource for medical doctors, nurses and students in the field of neurourological conditions. All the topics are written by internationally recognized specialists in their field.




Cytokines and Inflammation


Book Description

This important new book focuses on the involvement of cytokines in specific areas of inflammatory diseases, such as granulomatous responses, lung disease, hepatic dysfunction and the acute phase, arthritis and accompanying bone remodeling, neurogenic inflammation, and shock. The roles of GM-CSF, IL-6, IL-2, TGFb EGF, and LIF are discussed, as well as the medical treatments that affect cytokine activity. The results of approaches important to the biotechnology and pharmaceutical industries, such as the search for endogenous biological response modifiers that control cytokine function or production, attempts to synthesize heterocyclic compounds in the organic chemistry lab, and research regarding second messenger pathways involved in IL-1 and TNF production are examined. This book will provide anyone in cytokine research, especially clinical investigators, pharmaceutical industry researchers, and academic research scientists, with important information on how cytokine research might be used.