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1.
J Allergy Clin Immunol ; 138(4): 984-1010, 2016 10.
Article in English | MEDLINE | ID: mdl-27577879

ABSTRACT

There have been extensive developments on cellular and molecular mechanisms of immune regulation in allergy, asthma, autoimmune diseases, tumor development, organ transplantation, and chronic infections during the last few years. Better understanding the functions, reciprocal regulation, and counterbalance of subsets of immune and inflammatory cells that interact through interleukins, interferons, TNF-α, and TGF-ß offer opportunities for immune interventions and novel treatment modalities in the era of development of biological immune response modifiers particularly targeting these molecules or their receptors. More than 60 cytokines have been designated as interleukins since the initial discoveries of monocyte and lymphocyte interleukins (called IL-1 and IL-2, respectively). Studies of transgenic or gene-deficient mice with altered expression of these cytokines or their receptors and analyses of mutations and polymorphisms in human genes that encode these products have provided essential information about their functions. Here we review recent developments on IL-1 to IL-38, TNF-α, TGF-ß, and interferons. We highlight recent advances during the last few years in this area and extensively discuss their cellular sources, targets, receptors, signaling pathways, and roles in immune regulation in patients with allergy and asthma and other inflammatory diseases.


Subject(s)
Immune System Diseases , Interferons/physiology , Interleukins/physiology , T-Lymphocytes, Regulatory/immunology , Transforming Growth Factor beta/physiology , Tumor Necrosis Factor-alpha/physiology , Animals , Humans
2.
Allergol Int ; 62(4): 425-33, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24153333

ABSTRACT

Allergen-specific immunotherapy (SIT) is the only available curative treatment of allergic diseases. Recent evidence provided a plausible explanation to its multiple mechanisms inducing both rapid desensitization and long-term allergen-specific immune tolerance, and suppression of allergic inflammation in the affected tissues. During SIT, peripheral tolerance is induced by the generation of allergen-specific regulatory T cells, which suppress proliferative and cytokine responses against the allergen of interest. Regulatory T cells are characterized by IL-10 and TGF-beta secretion and expression of important cell surface suppressive molecules such as cytotoxic T lymphocyte antigen-4 and programmed death-1 that directly or indirectly influence effector cells of allergic inflammation, such as mast cells, basophils and eosinophils. Regulatory T cells and particularly IL-10 also have an influence on B cells, suppressing IgE production and inducing the production of blocking type IgG4 antibodies. In addition, development of allergen-specific B regulatory cells that produce IL-10 and develop into IgG4 producing plasma cells represent essential players in peripheral tolerance. These findings together with the new biotechnological approaches create a platform for development of the advanced vaccines. Moreover, reliable biomarkers could be selected and validated with the intention to select the patients who will benefit most from this immune-modifying treatment. Thus, allergen-SIT could provide a complete cure for a larger number of allergic patients and novel preventive approaches need to be elaborated.


Subject(s)
B-Lymphocytes, Regulatory/immunology , Desensitization, Immunologic/methods , Hypersensitivity/therapy , Mast Cells/immunology , T-Lymphocytes, Regulatory/immunology , Vaccines/immunology , Allergens/immunology , Basophils/immunology , CTLA-4 Antigen/metabolism , Desensitization, Immunologic/trends , Eosinophils/immunology , Humans , Hypersensitivity/immunology , Immune Tolerance , Immunoglobulin E/metabolism , Interleukin-10/immunology , Programmed Cell Death 1 Receptor/metabolism , Transforming Growth Factor beta/immunology
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