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18 DISEASES CAUSED BY IMMUNE RESPONSES
18 DISEASES CAUSED BY IMMUNE RESPONSES

... numerical designations. This classification is useful because distinct types of pathologic immune responses show different patterns of tissue injury and may vary in their tissue specificity. As a result, they produce disorders with distinct clinical and pathologic features. However, immunologic dise ...
Oncomedicine Immunological Role of Vitamin D in Skin Diseases
Oncomedicine Immunological Role of Vitamin D in Skin Diseases

... cells from patients with autoimmune lupus erythematosus, vitamin D3 was capable of stimulating apoptosis in activated B cells in addition to suppressing their proliferation. It also halted the differentiation of plasma cells. Research suggests vitamin D3 controls this essential B cell homeostasis by ...
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... Seminar Application Questions 1. The Complement system is an important part of the innate immune system that has ...
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Immune System Memory Realization in A Population Model

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Gonadotropin Releasing Hormone (GnRH, LHRH) Monoclonal

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Expression Analysis of Toll-Like Receptor2 in Bubaline

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Global network analysis of drug tolerance, mode of

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The immune response in atherosclerosis: a double

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LDN and Fibromyalgia - Medical Home Pharmacy

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Immunity in the female sheep reproductive tract

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... 2. TCR protein structure 3. CD3 protein structure 4. CD3 genes and function 5. Signal transduction pathways mediated by the CD3 protein complex 6. CD3 protein expression 7. Clinical applications for the CD3 protein complex and its role in disease 1. T cell activation overview TCRs cannot bind free ...
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Molecular mimicry

Molecular mimicry is defined as the theoretical possibility that sequence similarities between foreign and self-peptides are sufficient to result in the cross-activation of autoreactive T or B cells by pathogen-derived peptides. Despite the promiscuity of several peptide sequences which can be both foreign and self in nature, a single antibody or TCR (T cell receptor) can be activated by even a few crucial residues which stresses the importance of structural homology in the theory of molecular mimicry. Upon the activation of B or T cells, it is believed that these ""peptide mimic"" specific T or B cells can cross-react with self-epitopes, thus leading to tissue pathology (autoimmunity). Molecular mimicry is a phenomenon that has been just recently discovered as one of several ways in which autoimmunity can be evoked. A molecular mimicking event is, however, more than an epiphenomenon despite its low statistical probability of occurring and these events have serious implications in the onset of many human autoimmune disorders. In the past decade the study of autoimmunity, the failure to recognize self antigens as ""self,"" has grown immensely. Autoimmunity is a result of a loss of immunological tolerance, the ability for an individual to discriminate between self and non-self. Growth in the field of autoimmunity has resulted in more and more frequent diagnosis of autoimmune diseases. Consequently, recent data show that autoimmune diseases affect approximately 1 in 31 people within the general population. Growth has also led to a greater characterization of what autoimmunity is and how it can be studied and treated. With an increased amount of research, there has been tremendous growth in the study of the several different ways in which autoimmunity can occur, one of which is molecular mimicry. The mechanism by which pathogens have evolved, or obtained by chance, similar amino acid sequences or the homologous three-dimensional crystal structure of immunodominant epitopes remains a mystery.
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