Inflammatory Cells and Mediators in CNS Disease


Book Description

This book looks at the causes and long-term effects of inflammation in the CNS as a result of various conditions, and the therapeutic opportunities presented in each case. Each chapter is written by an acknowledged leader in the field




Inflammation: the Common Link in Brain Pathologies


Book Description

This unifying theme of this book-with sections on mechanisms of defense and neuropathogenesis, neurological diseases, infections of the nervous system, neuropharmacology, and novel therapies-is interactions of the immune and nervous systems. It also discusses the role of inflammation as a key mediator of different brain disorders. There have been significant scientific advances in the multidisciplinary field of neuroimmunology / neuroinflammation in the past decade, and this book, edited under the guidance of Professor P. N. Tandon, fosters communication between those who share an interest in this exciting area, including neuroscientists, immunologists, cell biologists, clinicians and neuropharmacologists.




Inflammatory Disorders of the Nervous System


Book Description

A cutting-edge review of the fundamental biological principles underlying the more common inflammatory disorders of the nervous system. The authors provide extensive updates on the latest findings concerning the mechanisms of inflammation and introduce such new concepts and methodologies as "endothelial and leukocyte microparticles" and "gene microarray technology" to help explain important links between the central nervous system (CNS) and general inflammatory processes. Among the diseases examined from an inflammatory perspective are multiple sclerosis, acute disseminated encephalomyelitis, optic neuritis, transverse myelitis, CNS vasculitis, neuropsychiatric systemic lupus erythematosis, Alzheimer's disease, and Parkinson's disease. The role of the immune system in neuroinflammation is also explored in such disorders as neurosarcoidois, HIV-Associated dementia, and HTLV-associated neurological disorders.




The End of Alzheimer’s


Book Description

The End of Alzheimer’s: The Brain and Beyond, Second Edition is the first comprehensive overview on the molecular basis of Alzheimer’s outside of the brain, merging the most recent findings within the field into a single book. It aims to educate the reader on the many overlooked aspects of Alzheimer’s disease that occur outside the brain. This book uniquely provides step-by-step, peer-reviewed evidence that the current research model may be misguided and that a new and emerging model is more accurate. It carefully outlines the molecular research in Alzheimer’s outside the brain and argues that a more thorough, whole-body diagnosis will provide better answers about its causes and lead to new treatments. It is beneficial to researchers who need to be apprised of the emerging science on the causes of Alzheimer’s, and will hopefully redirect many into new avenues of cellular research and discovery. Comprehensive literature-based summary of the current state of molecular Alzheimer’s disease research Details the shortcomings of the prevailing model and therapeutics in development Reviews blood-based biomarkers for Alzheimer’s and their link to amyloid- and Tau-independent causes outside the brain Describes the tissues outside the brain impacted by Alzheimer’s and the underlying molecular causes Explains the whole-body risks associated with Alzheimer’s, along with concomitant measures to slow or prevent the disease Provides a protocol to properly research, evaluate, measure, diagnose, and potentially treat Alzheimer’s patients




Inflammation and Stroke


Book Description

Stroke is a leading cause of death in developed countries. However, current therapeutic strategies for stroke have been largely unsuccessful. One possible explanation is that research and pharmacological management have focused on very early events in brain ischemia. New research has shown that brain ischemia and trauma elicit strong inflammatory reactions driven by both external and brain cells. The recognition of inflammation as a fundamental response to brain ischemia provides novel opportunities for new anti-inflammatory therapies. For the first time, an international body of researchers presents the latest findings about the cellular and humoral aspects of immune and inflammatory reactions in the brain. The work may have an impact on the treatment of neuroinjuries and ancillary brain diseases, and increase the understanding of the roles infections and immune reactions play in the brain milieu.




Immune and Inflammatory Responses in the Nervous System


Book Description

This new edition covers recent advances in understanding immunological and inflammatory responses in the nervous system, research driven by the potential to use knowledge of the molecules and mechanisms involved to intervene in, and arrest, neurodegenerative disease processes.Immune and Inflammatory Responses in the Nervous System covers developmental aspects of immune/inflammatory responses in the CNS, basic aspects of glial function, as well as inflammatory mediators, their mechanisms of action, clinical importance and sites of infection. There is also coverage of themajor diseases of the CNS, including stroke, brain injury, multiple sclerosis and Alzheimer's disease. Throughout, the focus is on the underlying basic neuroscience, clinical relevance and the potential for therapeutic interventions.This will be an invaluable aid to understanding and improving the diagnosis of neuroimmune diseases and determining therapeutic measures.The contributors are all leading experts in the field and the content will be of interest to neuroscientists, neurologists, neuropathologists, neurosurgeons and immunologists.




Cell-type Specific Actions of Inflammatory Mediators in the CNS


Book Description

Neuroinflammation is a critical feature associated with many neurological diseases. Two potent pro-inflammatory mediators, interleukin-1 (IL-1) and cyclooxygenase-2 (COX-2), are induced and have diverse activities in inflammatory processes and disease progression. One of the mechanisms underlying the multifunctional roles of IL-1 and COX-2 is that they may exert distinct effects in different CNS cell types. We investigated the direct actions of IL-1 on brain endothelial cells, astrocytes, and microglia in cell cultures. We studied the cellular actions of inducible COX-2 in neurons and non-neuronal cells by using two Cox-2 conditional knockout mouse strains. In the first study, we demonstrated that IL-1 exerts distinct cell type-specific action in CNS cells and activates cellular specific signaling pathways. In the second study, we demonstrated that COX-2 induced in neurons may have neurotoxic effects whereas COX-2 induced in non-neuronal cells may have neuroprotective activities. We further uncovered the possible prostaglandin products that may mediate the opposing effects of COX-2 in each of the two cell types. These results together suggest that IL-1 or COX-2 mediated neuroinflammation is the result of the summation of multiple responses from different cell types in the CNS to IL-1 or COX-2.




Neuroinflammation and CNS Disorders


Book Description

The last decade has seen an upsurge of information on the role of immune responses in neurodegenerative disorders. In many of these diseases it is still unclear whether the innate and adaptive responses are pathogenic or play a role in repair, and thus understanding their precise roles is key to controlling these diseases by designing immune-therapeutic approaches. The connection between many neurological diseases is the realisation that the immune and nervous systems are inextricable linked, and that perturbations in this delicate balance are involved in many disorders. This has opened up new avenues for therapeutic approaches to treatment of CNS inflammatory and neurodegenerative disorders. Neuroinflammation and CNS Disorders brings together the very latest information on the interactions between the immune system and central nervous system. The first section of the book highlights the basic concepts in the field whilst the second section, the main body of the book, covers the role of the immune response in specific disorders of the central nervous system. Neuroinflammation and CNS Disorders will provide an invaluable guide for both researchers and clinicians working in this complex and dynamic field.




Mind over Matter - Regulation of Peripheral Inflammation by the CNS


Book Description

Several new developments in the field of neuroimmunology with focus on the brain-to-immune system communication have been the incentive for this PIR volume. It covers topics such as brain-immune interactions, the impact of stress on the immune response, pain and immunosuppression, the modulation of inflammation and pain by the sympathetic nervous system, consequences of nerve injury for the immune system, neuronal mechanisms of immune cell recruitment, and the modulation of the immune response by corticotropin-releasing hormone or adenosine. The authors are a unique group of scientists who are all interested in brain-to-immune interactions; however, each from a different perspective. The volume will serve both neurobiologists and immunologists to understand the influence of the central nervous system on peripheral inflammation. Many aspects of this book will also be stimulating for researchers in the pain field.




Inflammation


Book Description

The leading reference on this topic of increasing medical relevance is unique in offering unparalleled coverage. The editors are among the most respected researchers in inflammation worldwide and here have put together a prestigious team of contributors. Starting with the molecular basis of inflammation, from cytokines via the innate immune system to the different kinds of inflammatory cells, they continue with the function of inflammation in infectious disease before devoting a large section to the relationship between inflammation and chronic diseases. The book concludes with wound and tissue healing and options for therapeutic interventions. A must have for clinicians and biomedical researchers alike.