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Antibody Fc

Antibody Fc
Author: Margaret Ackerman
Publisher: Academic Press
Total Pages: 376
Release: 2013-08-06
Genre: Medical
ISBN: 0123948185

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Antibody Fc is the first single text to synthesize the literature on the mechanisms underlying the dramatic variability of antibodies to influence the immune response. The book demonstrates the importance of the Fc domain, including protective mechanisms, effector cell types, genetic data, and variability in Fc domain function. This volume is a critical single-source reference for researchers in vaccine discovery, immunologists, microbiologists, oncologists and protein engineers as well as graduate students in immunology and vaccinology. Antibodies represent the correlate of protection for numerous vaccines and are the most rapidly growing class of drugs, with applications ranging from cancer and infectious disease to autoimmunity. Researchers have long understood the variable domain of antibodies, which are responsible for antigen recognition, and can provide protection by blocking the function of their target antigen. However, recent developments in our understanding of the protection mediated by antibodies have highlighted the critical nature of the antibody constant, or Fc domain, in the biological activity of antibodies. The Fc domain allows antibodies to link the adaptive and innate immune systems, providing specificity to a wide range of innate effector cells. In addition, they provide a feedback loop to regulate the character of the immune response via interactions with B cells and antigen-presenting cells. Clarifies the different mechanisms of IgG activity at the level of the different model systems used, including human genetic, mouse, and in vitro Covers the role of antibodies in cancer, infectious disease, and autoimmunity and in the setting of monoclonal antibody therapy as well as naturally raised antibodies Color illustrations enhance explanations of the immune system


Antibody Fc

Antibody Fc
Author: Theo Rispens
Publisher: Elsevier Inc. Chapters
Total Pages: 46
Release: 2013-08-06
Genre: Medical
ISBN: 0128060301

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Immunoglobulins are a group of closely related glycoproteins composed of 82 to 96% protein and 4 to 18% carbohydrate. In humans, there are five classes of immunoglobulins, which differ in heavy-chain structure. Immunoglobulin G (IgG) is the major class of immunoglobulins in blood and can be further subdivided in subclasses. The four subclasses of IgG were discovered in the 1960s following extensive studies using specific rabbit antisera against human IgG myeloma proteins.1 They are designated IgG1, IgG2, IgG3, and IgG4, in order of decreasing abundance. Several decades of research has revealed subtle but profound differences among the subclasses. Each subclass has a unique profile with respect to antigen binding, immune complex formation, complement activation, triggering of effector cells, and placental transport (Table 9.1). In addition, IgG antibody responses to different types of antigens or pathogens often lead to marked skewing toward one of the subclasses. On the other hand, selective subclass deficiencies are usually not detrimental to the individual but do sometimes lead to enhanced susceptibility toward specific classes of pathogens. All in all, the acquired variability within the Ig locus seems to have been selected for beneficial changes during evolution for optimizing or fine-tuning the antibody-mediated immune response.


Antibody Fc

Antibody Fc
Author: Victor Raúl Gómez Román
Publisher: Elsevier Inc. Chapters
Total Pages: 53
Release: 2013-08-06
Genre: Medical
ISBN: 0128060220

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Antibody-dependent cellular cytotoxicity (ADCC), also called antibody-dependent cell-mediated cytotoxicity, is an immune mechanism through which Fc receptor-bearing effector cells can recognize and kill antibody-coated target cells expressing tumor- or pathogen-derived antigens on their surface. Numerous associations between ADCC activity, Fc receptor polymorphisms, and clinical outcomes have been observed in both the settings of vaccination and monoclonal antibody therapy. Here, the effector cells and receptors involved in ADCC are introduced, followed by a description of the four main stages and mechanisms leading to the antibody-dependent effector-mediated killing of the target cell: (1) Recognition of the target cell and Fc receptor cross-linking on the surface of the effector cell; (2) phosphorylation of immunoreceptor tyrosine-based activation motifs (ITAMs) by cellular src kinases within the effector cell; (3) triggering of three main downstream signaling pathways in the effector cell, resulting in cytotoxic granule polarization and release; and (4) killing of the target cell via the predominant perforin/granzyme cell death pathway. Further, a summary and a discussion are presented in relation to case studies in which in vitro ADCC activity correlates with protection against infectious diseases and outcomes in monoclonal antibody therapy of cancer in vivo . The means by which these mechanisms are currently being exploited by recombinant antibody engineering, and a path toward a future in which designed vaccines take advantage of variant ADCC activity are also discussed. Throughout the chapter, attention is drawn to the fact that, while the majority of ADCC studies have been based on research using peripheral blood mononuclear cells in which NK cells have been assumed to be the main effectors, questions remain unanswered about ADCC mediated by non-NK cell populations in peripheral blood and in mucosal compartments.


Janeway's Immunobiology

Janeway's Immunobiology
Author: Kenneth Murphy
Publisher: Garland Science
Total Pages:
Release: 2010-06-22
Genre: Medical
ISBN: 9780815344575

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The Janeway's Immunobiology CD-ROM, Immunobiology Interactive, is included with each book, and can be purchased separately. It contains animations and videos with voiceover narration, as well as the figures from the text for presentation purposes.


Therapeutic Antibody Engineering

Therapeutic Antibody Engineering
Author: William R Strohl
Publisher: Elsevier
Total Pages: 697
Release: 2012-10-16
Genre: Medical
ISBN: 1908818093

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The field of antibody engineering has become a vital and integral part of making new, improved next generation therapeutic monoclonal antibodies, of which there are currently more than 300 in clinical trials across several therapeutic areas. Therapeutic antibody engineering examines all aspects of engineering monoclonal antibodies and analyses the effect that various genetic engineering approaches will have on future candidates. Chapters in the first part of the book provide an introduction to monoclonal antibodies, their discovery and development and the fundamental technologies used in their production. Following chapters cover a number of specific issues relating to different aspects of antibody engineering, including variable chain engineering, targets and mechanisms of action, classes of antibody and the use of antibody fragments, among many other topics. The last part of the book examines development issues, the interaction of human IgGs with non-human systems, and cell line development, before a conclusion looking at future issues affecting the field of therapeutic antibody engineering. Goes beyond the standard engineering issues covered by most books and delves into structure-function relationships Integration of knowledge across all areas of antibody engineering, development, and marketing Discusses how current and future genetic engineering of cell lines will pave the way for much higher productivity


Fc Mediated Activity of Antibodies

Fc Mediated Activity of Antibodies
Author: Jeffrey V. Ravetch
Publisher: Springer Nature
Total Pages: 150
Release: 2019-09-03
Genre: Medical
ISBN: 3030310531

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This volume explores several aspects of how antibodies mediate their activity in vivo, ranging from cancer immunotherapy to autoimmunity, infection, and vaccination. Divided into seven chapters, it provides in-depth insights into how antibodies and especially the antibody fragment crystallizable (Fc) domain modulate immune responses and antibody activity. The book begins by discussing evolutionary aspects of how the family of Fc receptors that are the key molecules for antibody activity evolved. In turn, it addresses the molecular and cellular pathways underlying IgG activity in cancer immunotherapy, and focuses on how IgG glycosylation regulates IgG and IgE activity in autoimmunity, allergy and infection. In closing, it presents strategies for developing novel antibody-based vaccination approaches. The book is intended for a very broad readership, including graduate students, postdocs and principal investigators with a basic grasp of immunology.


Approaches to the Purification, Analysis and Characterization of Antibody-Based Therapeutics

Approaches to the Purification, Analysis and Characterization of Antibody-Based Therapeutics
Author: Allan Matte
Publisher: Elsevier
Total Pages: 222
Release: 2020-09-07
Genre: Business & Economics
ISBN: 0081030193

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Approaches to the Purification, Analysis and Characterization of Antibody-Based Therapeutics provides the interested and informed reader with an overview of current approaches, strategies and considerations relating to the purification, analytics and characterization of therapeutic antibodies and related molecules. While there are obviously other books published in and around this subject area, they seem to be either older (c.a. year 2000 publication date) or are more limited in scope. The book will include an extensive bibliography of the published literature in the respective areas covered. It is not, however, intended to be a how-to methods book. Covers the vital new area of R&D on therapeutic antibodies Written by leading scientists and researchers Up-to-date coverage and includes a detailed bibliography


Antibody Fc

Antibody Fc
Author: Roy Jefferis
Publisher: Elsevier Inc. Chapters
Total Pages: 44
Release: 2013-08-06
Genre: Medical
ISBN: 0128060387

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Diversity of antigen-binding specificity may be considered the hallmark of antibodies; however, the human IgG-Fc region also exhibits binding specificity for multiple ligands. Evolution of the IgG-Fc has resulted in the generation of interaction sites for endogenous (self) ligands that recruit and activate mechanisms facilitating the removal and destruction of antibody–pathogen immune complexes. However, pathogens (bacteria and virus) have co-evolved to elaborate IgG-Fc binding proteins that seek to subvert these protective mechanisms. The four human IgG subclasses exhibit differential binding specificity for these ligands, and the choice of IgG subclass for an antibody therapeutic allows selection for a ligand binding profile appropriate for the intended use. The profile of IgG-Fc ligand binding specificities is being extended through the generation and selection among multiple IgG-Fc mutant proteins. Of particular interest has been the development of mutant aglycosylated antibodies that retain or acquire ligand binding activities. This extends possible production vehicles to include prokaryotic systems, although an increased potential for inducing anti-drug antibodies may be a limiting factor.