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Isolation, Characterization, and Utilization of T Lymphocyte Clones is a summary of information regarding T lymphocyte clones, including their usefulness. Organized into nine parts, the book begins with discussions on the soluble factors that can influence the growth of cloned T cells and the utilization of T cell hybridomas for analysis of T cell functions, emphasizing the biochemical and functional properties of helper and suppressor factors. The book then looks into the analysis of T cell clones and hybridomas using techniques of somatic cell genetics. The clonal analysis by limiting dilution, the characteristics of murine T cell clones reactive with alloantigens and soluble antigens, and the human T cell clones are described as well. This volume is valuable to those interested in the field of cloning of immunocompetent T cells.
A Historical Perspective on Evidence-Based Immunology focuses on the results of hypothesis-driven, controlled scientific experiments that have led to the current understanding of immunological principles. The text helps beginning students in biomedical disciplines understand the basis of immunologic knowledge, while also helping more advanced students gain further insights. The book serves as a crucial reference for researchers studying the evolution of ideas and scientific methods, including fundamental insights on immunologic tolerance, interactions of lymphocytes with antigen TCR and BCR, the generation of diversity and mechanism of tolerance of T cells and B cells, the first cytokines, t...
The progress in protein and nucleic acid chemistry together with improvements of the previously employed tissue culture techniques have led to the solution of problems such as that of the generation of antibody diversity or of the molecular structure of T and B cell membrane receptor for antigen which had challenged the past generations of immunologists. Thanks to this progress an impressive amount of knowledge has been accumulated on certain cell types that were relatively "mysterious" until recently. The B lymphocyte represents a typical example of such a cell. With these considerations in mind, we have started to organize a NATO summer school on "The molecular basis of B cell differentati...
This volume collects the contributions presented at the "Working Conference on System Theory in Immunology", held in Rome, May 1978. The aim of the Conference was to bring together immunologists on one side and experts in system theory and applied mathematics on the other, in order to identify problems of common interest and to establish a network of joint effort toward their solution. The methodologies of system theory for processing experimental data and for describing dynamical phenomena could indeed contribute significantly to the under standing of basic immunological facts. Conversely, the complexity of experimental results and of interpretative models should stimulate mathematicians to formulate new problems and to design appropriate procedures of analysis. The multitude of scientific publications in theoretical biology, appeared in recent years, confirms this trend and calls for extensive interaction between mat- matics and immunology. The material of this volume is divided into five sections, along the scheme of the Conference program.
My personal history in the field of cytokines had an initial period of several years during which my student and then colleague, Werner Muller, tried in vain to attract me to them. My interest always vanished when I was confronted with complex data pointing to func tional redundancy of cytokines in cell culture systems. When gene targeting in the mouse germline became possible, this frustration came to an end. We and others immediately embarked on analyzing the in vivo function of cytokines and the problem of functional redundancy with this powerful new approach. The early cytokine gene knockouts performed by colleagues in Wiirzburg (IL-2) and by ourselves (IL-4 and IL-l 0) seemed to give cl...
Carrying on the high standards of the much praised first edition (Durum and Muegge, Cytokine Knockouts, 1998), Giamila Fantuzzi and a panel of experts have generated completely new chapters to reflect the use of many novel mouse strains and the hundreds of recent studies on cytokine physiology. Comprehensive reviews of the numerous often-surprising results obtained using cytokine knockout mice are provided, along with much important information about cytokine biology and physiology. For those not familiar with cytokine research, the authors present a critical discussion of the advantages and disadvantages of using cytokine knockout mice in various fields of research.
Investigations into the field of immunology are rapidly expanding with the use of genetically altered mice at the embryonic stage. This breakthrough laboratory guide provides a complete study of transgenesis and targeted mutagenesis in laboratory mice that will be valued by researchers looking for fresh observations and interpretations when designing future experiments.Special Features Include:Contributions of two Nobel Prize winnersAddresses the use of mouse models in studying the immune systemTargets gene distribution in embryonic stem cells and their introduction into blastocyte mice modelsAnalyzes the in vivo functional loss of embryonic cellsA practical, useful guidebook for individual researchers, laboratories, and libraries
B and T Cell Tumors documents the proceedings of the 1982 International Conference on ""B and T Cell Tumors: Biological and Clinical Aspects"" held in Squaw Valley, California. The meeting was one of the conferences of the 1982 UCLA Symposia on Molecular and Cellular Biology series. This book is organized into six parts encompassing 79 chapters. Considerable chapters tackle the origin and classification of tumors; normal clones of T and B cells; differentiation of T and B cell tumors; regulation of tumor growth and tumor therapy. Each topic is discussed based on the results obtained in human and animal models in the laboratory. Other chapters explore lymphoid neoplasms and the enormous progr...