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Inhibition of T cell activation by MHC blockade: a possible strategy for immunointervention in autoimmune diseases.

Autoimmune diseases result from the activation of self-reactive T cells induced by autoantigens or by foreign antigens cross-reactive with an autoantigen. A striking characteristic of autoimmune diseases is the increased frequency of certain HLA alleles in affected individuals. Moreover, as demonstrated for example in rheumatoid arthritis and insulin-dependent diabetes mellitus, class II alleles positively associated with autoimmune diseases share amino acid residues in the hypervariable HLA regions involved in peptide binding. Therefore, it is likely that disease-associated HLA class II molecules have the capacity to bind the autoantigen and present it to T cells, thereby inducing and maintaining, under appropriate conditions, the autoimmune disease. The data reviewed here demonstrate MHC-selective inhibition of antigen-induced T cell responses in vivo by parenterally administered soluble, MHC-binding peptide competitors, under conditions in which the competitor is not immunogenic. This suggests the feasibility of a therapeutic approach based on blockade of MHC class II molecules in the treatment of HLA-linked autoimmune diseases.

Animals

Interleukin-1 and tumor necrosis factor: effector cytokines in autoimmune diseases.

Autoimmune diseases have been studied from the perspective of an abnormal immune response in genetically vulnerable hosts. Although the immune response is responsible for the initiation of autoimmune diseases, the effectors of the disease process likely involves cytokines such as interleukin-1 (IL-1) and tumor necrosis factor (TNF). These polypeptides induce a wide variety of inflammatory events which contribute to the destruction of tissue and tissue remodeling in several autoimmune diseases. Blocking IL-1 with its naturally occurring receptor antagonist, the IL-1 receptor antagonist reduces the severity of disease in animal models of inflammation and autoimmune processes. Clinical studies with the IL-1 receptor antagonist will define the role for this cytokine in the pathogenesis of autoimmune diseases such as arthritis, inflammatory bowel disease, type I diabetes and vasculitis.

Animals

[Autoimmunization and autoimmune diseases].

Autoimmunization is understood as a type of immune reactions to the unchanged autoantigens only. Autoimmune processes can be subdivided into the physiological ("sanitary" and regulatory) and pathological ones. Physiological processes are of importance in supporting natural immunological tolerance while pathological processes develop on the basis of the physiological ones in presence of various defects of suppressive mechanisms of the immune system. Pathological processes are the basis of the autoimmune diseases and diseases with secondary autoimmune disturbances. The distinction between organo-specific and organo-nonspecific autoimmune diseases can be taken as their preliminary tentative classification.

Antigen-Antibody Reactions

Recent advances in molecular mechanisms to improve the efficacy of CAR-T cell therapy for viral diseases, cancer, and autoimmune diseases.

Chimeric antigen receptor (CAR)-T cell therapy has transformed the treatment of hematological malignancies, yet its broader application to solid tumors, chronic viral infections, and autoimmune diseases remains constrained by antigen heterogeneity, immunosuppressive tissue microenvironments, T-cell exhaustion, limited persistence, and treatment-associated toxicities. These challenges have shifted the field from optimizing individual receptor constructs toward engineering CAR-T cells as programmable immune systems capable of adapting to diverse disease contexts. This review synthesizes recent advances in molecular engineering strategies that enhance CAR-T cell function beyond conventional receptor design. We discuss how receptor engineering, genome editing, transcriptional and epigenetic regulation, metabolic reprogramming, synthetic gene circuits, and safety-control platforms collectively reshape CAR-T cell fate, persistence, and therapeutic efficacy. Rather than functioning independently, these engineering strategies are increasingly integrated to generate context-specific cellular therapies capable of adapting to diverse disease environments, including cancer, autoimmune diseases, and chronic viral infections. We also highlight the potential for translation into clinical practice or clinical translation and discuss the major challenges associated with clinical implementation. Next-generation CAR-T therapies will increasingly integrate molecular engineering strategies or will rely on molecular engineering strategies to integrate antigen recognition, cellular fitness, immune regulation, and longevity rather than simply maximizing cytotoxic activity. Recent advances in programmable cellular engineering coupled with rigorous clinical evaluation as well as scalable manufacturing technologies or scalable manufacturing platforms in the treatment of other diseases beyond oncology will facilitate the development of safer, more durable, and broadly applicable cellular therapies.

Humans

Possible role of histamine in pathogenesis of autoimmune diseases: implications for immunotherapy with histamine-2 receptor antagonists.

The immunosuppressive chemical drugs cyclosporine A (CsA) and methotrexate (Mx) have recently been shown to be of benefit in several different diseases of autoimmune origin. Cellular immune responses may play a major role in autoimmunity as autoreactive T lymphocytes appear to recognize autoantigens and major histocompatibility complex (MHC) class II restriction molecules presented by non-immune, aberrant cells, subsequently leading to damage on healthy tissues. Psoriasis is suggested to be an autoimmune disease and in severe, uncontrollable psoriasis CsA and Mx are of value in reducing disease activity. Histamine is suggested to be involved in the pathogenesis of psoriasis and the histamine-2 receptor antagonist ranitidine has been shown to be of value to reduce severe psoriatic disease. The finding that CsA and Mx efficiently reduce histamine formation and release raises the possibility, that histamine is one of the molecules involved in pathogenesis of autoimmune diseases. T cell mediated regulation and suppression of autoreactive T cells seem to be ineffective in controlling the enhanced immune reaction in patients where the discrimination between self and non-self is changed. A consequence of this may be induction of interferon-gamma (IFN-g) production and release by cytotoxic T cells, subsequently leading to expression of MHC II molecules on non-immune tissues. As immunotherapy may be of value in some autoimmune diseases the use of histamine-2 receptor antagonists should be evaluated in patients where conventional therapy is ineffective to reduce disease activity.

Autoimmune Diseases

Self-nonself concept for cancer and diseases previously known as "autoimmune" diseases (illegitimate transferases/plasma exchange).

The illegitimate glycosphingolipid antigens of the P blood group system and of the Forssman (Fs) tissue antigen in adenocarcinoma which are foreign to the host suggest the self-nonself concept which applies also to numerous other diseases such as rheumatoid arthritis, lupus, gluomerulonephritis, and idiopathic acute hemolytic anemia. In the presence of the glycosphingolipid antigens such as ABO, P, and Fs, the normal serum of the homozygote recessive precursor contains antibodies for the missing antigen(s). The expected antibody to the Fs antigen was present in about 75% of normal men and women. In cancer sera, the incidence of anti-Fs was decreased to about 35-40%. On testing the normal population anti-Fs was present in 90% of the sera in the youngest group, and this value gradually diminished in the older groups; the incidence of the antibody in the 70-year age group was to about 60%. The rate of loss of anti-Fs with increasing years appears to parallel the gradual loss of anti-A and anti-B isoagglutinin titers. This phenomenon may be associated with the gradual diminution of protein synthesis with aging or the continuous accumulation of soluble immune complexes in the serum, or both. It is suggested that the self-nonself concept is also the basis for the pathogenesis of rhematoid arthritis, lupus erythematosus, idiopathic acute hemolytic anemia, and numerous other conditions classified as "autoimmune" diseases. Some of these diseases are induced by viruses or drugs or both. When a virus or drug attaches itself to the membrane of a tissue cell, the self is converted to nonself which, in rheumatoid arthiritis, alters its self Ig to nonself Ig.

ABO Blood-Group System

Experimental autoimmune orchitis: in vitro induction of an autoimmune disease.

Experimental autoimmune orchitis (EAO) can be induced in vitro. Normal lymph node lymphocytes cultured with autologous dissociated testis cells form rosette-like aggregates and later undergo blast transformation and proliferation. These stimulated lymphocytes cause in vivo EAO lesions, when injectd into syngeneic recipients. Moreover, their autoimmune reactivity can be monitored by an in vitro cytostasis assay. Density gradient analysis of the early lymphocyte-testis cultures reveals that the autoimmune reactive lymphocytes are enriched in the rosette populations. It therefore appears that testicular self-antigens are recognized by clonally preformed autologous lymphocytes.

Animals

[Hearing loss in autoimmune diseases].

Several autoimmune disorders are associated with inner ear involvement. The resulting sensorineural loss of hearing may be improved by treatment with immunosuppressive agents. We describe a patient with oral ulcerations, systemic vasculitis, iridocyclitis and bilateral sudden deafness. After a course of systemic steroid treatment the hearing improved. Atypical Cogan's syndrome is the most likely diagnosis.

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