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Covering one of the hottest topics in immunology today, this book provides a comprehensive view of all types of regulatory T cells described so far in the literature. The book will have broad appeal to both researchers and clinicians.
T cells play a vital role mediating adaptive immunity, a specific acquired resistance to an infectious agent produced by the introduction of an antigen. There are a variety of T cell types with different functions. They are called T cells, because they are derived from the thymus gland. This volume discusses how T cells are regulated through the operation of signaling mechanisms. Topics covered include positive and negative selection, early events in T cell receptor engagement, and various T cell subsets.
This volume provides methods and models for investigating the immunosuppressive subset of CD4+ T-cells, regulatory T-cells (Treg). Chapters guide readers through, basic protocols for analyzing Treg in mice and humans, single-cell analysis for analyzing Treg, and methods for the analysis of Treg in clinical application. Written in the format of the highly successful Methods in Molecular Biology series, each chapter includes an introduction to the topic, lists necessary materials and reagents, includes tips on troubleshooting and known pitfalls, and step-by-step, readily reproducible protocols. Authoritative and cutting-edge, Regulatory T-Cells: Methods and Protocols aims to be a useful and practical guide to new researchers and experts looking to expand their knowledge.
Regulatory T Cells and Autoimmune Diseases addresses recent findings concerning the role of Tregs in the pathogenesis of autoimmune diseases as well as their therapeutic applications. In particular, this book deals with various Treg-based mechanisms that can lead to autoimmune disease and covers different aspects linking Tregs with autoimmune mechanisms involved in disease development by discussing animal models and human studies. This book specifically focuses on Treg-based therapeutics and their targets to manage all known autoimmune rheumatic, central nervous system, bowel, liver, thyroid, kidney, myopathic, skin, blood and blood vessel, and eye diseases and aims to provide a must-have reference for designing therapeutic strategies to treat these autoimmune diseases. Additionally, this book covers vaccine-induced effects on the functioning of Tregs and development of CAR Treg therapy for autoimmune diseases and concludes with current challenges and future prospects of Treg-based therapeutics. This book is carefully designed to meet the requirements of both basic and advanced researchers in the area and provide new dimensions and insight into regulatory T cells’ role in autoimmune disease pathogenesis and therapy.
This first open access European CAR-T Handbook, co-promoted by the European Society for Blood and Marrow Transplantation (EBMT) and the European Hematology Association (EHA), covers several aspects of CAR-T cell treatments, including the underlying biology, indications, management of side-effects, access and manufacturing issues. This book, written by leading experts in the field to enhance readers’ knowledge and practice skills, provides an unparalleled overview of the CAR-T cell technology and its application in clinical care, to enhance readers’ knowledge and practice skills.
The vertebrate immune system defends the organism against invading pathogens while at the same time being self-tolerant to the body’s own constituents thus preserving its integrity. Multiple mechanisms work in concert to ensure self-tolerance. Apart from purging the T cell repertoire from auto-reactive T cells via negative selection in the thymus dominant tolerance exerted by regulatory T cells plays a major role in tolerance imposition and maintenance. Among the various regulatory/suppressive cells hitherto described, CD4+CD25+ regulatory T cells (Treg) and interleukin-10 producing T regulatory 1 (Tr1) cells have been studied in most detail and are the subject of most articles in this issue. Treg, also called "natural" regulatory T cells, will be traced from their intra-thymic origin to the site of their action in peripheral lymphoid organs and tissues. The repertoire of Treg is clearly biased towards recognition of self-antigens, thereby potentially preventing autoimmune diseases such as gastritis and oophoritis. Regulatory T cells, however also control infections, allergies and tolerance to transplanted tissues and this requires their induction in the periphery under conditions which are not yet fully understood. The concept of dominant tolerance, by far not novel, will offer new insights and hopefully tools for the successful treatment of autoimmune diseases, improved cancer immunotherapy and transplant survival. The fulfillment of these high expectations will, however, require their unambiguous identification and a better understanding of their mode of action.
This volume includes contributions from the speakers of the Second IMD Congress (September 10-15, 2007; Moscow, Russia) who were eager to share some of the academic and clinical enthusiasm that defines the IMD meetings. The goal of the International Immune-Mediated Diseases: From Theory to Therapy (IMD) Congress is to bring the world’s best immunologists and clinicians to Moscow.
Eosinophils in Health and Disease provides immunology researchers and students with a comprehensive overview of current thought and cutting-edge eosinophil research, providing chapters on basic science, disease-specific issues, therapeutics, models for study and areas of emerging importance.
This book addresses one of the major challenges of immunology today that is being directed to the translation of the rapidly emerging volume of basic science contributions of immunology to clinical medicine. In so doing, the book systemically introduces and discusses concepts, classifications, phenotypic and functional descriptions of regulatory T (Treg) cells in health and disease. The authors of the 15 chapters were selected from among the most qualified experts in the field of Treg cell research who provide a comprehensive overview of Treg cells and their biology in the ensuing chapters. The beginning chapters provide a useful contemporary classification of Treg cell populations and then progress to chapters that explore basic mechanisms of Treg cell function and epigenetic control. In addition to descriptions of typical CD4+ Foxp3+ cells, other chapters provide detailed presentations of Treg subsets such as CD8+ Tregs and IL-10-producing Tr1 cells. The differences of various Treg subsets, as well as circulating and resident Treg cell populations, are next compared. Importantly, the next chapters provide the clinical correlation of Treg cells with autoimmune diseases, inflammatory diseases, metabolic diseases, cancer and organ transplantation and progress to chapters that highlight emerging innovative technology including nanoparticle-Treg cells and their translational values. In summary, the book will provide a valuable resource not only for graduate students and researchers in the fields of immunology, cell biology and translational medicine but also for all others interested in learning more about Treg cells and their application in human health and disease.