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Chemokines in autoimmune diseases.

Autoimmune diseases like multiple sclerosis (MS) and insulin-dependent diabetes (IDD) are believed to be mediated by pathogenic CD4+ autoreactive T cells which mediate selective destruction of specific host cells. Interrupting the trafficking of such T cells from host circulation to the sites of pathology, such as the central nervous system in the case of MS and the pancreas in the case of IDD, potentially offers a novel opportunity for therapeutic intervention in these diseases. The following summarizes our evolving thoughts on the role of the chemokine network in MS and IDD, and focuses on the chemokine receptor CXCR3 as a potential target for impeding T-cell-mediated destruction in these disease settings.

Autoimmune Diseases↗

Molecular mechanisms underlying diabetes and other autoimmune diseases.

Autoimmunity is a fascinating and complex phenomenon. The various mechanisms such as self tolerance, genetic and environmental regulation of the autoimmune phenotype, which govern the susceptibility to autoimmune disease were discussed at a recent workshop. Here, Ron Gill and Kathryn Haskins report on the new advances in this area.

Adult↗

The goals of immunologic intervention in autoimmune disease.

Autoimmune diseases represent disorders of immunologic regulation for which specifically targeted immunologic intervention offers great therapeutic promise, superior to highly toxic and totally non-specific conventional therapy currently in use. The cellular and cytokine targets for this new approach and the various concepts underlying their deployment are discussed in this article.

Animals↗

[Perspectives of application of anti-CD4 antibodies in the treatment of autoimmune diseases].

Autoimmune diseases are a group of chronic inflammatory diseases which in some patients can be associated with autoantibodies generating tissue lesions. The cytotoxic activity and cytokine production by T lymphocytes is most often responsible for the pathogenic effect. Several clinical trials using monoclonal antibodies against T lymphocytes have been conducted either to evaluate the immunosuppressive activity of the antibody or to gain new insight into the mechanisms involved in these diseases. The most promising antibodies are directed against the CD4 antigen because they can induce a specific tolerance in animals. The preliminary results of these clinical studies are promising as demonstrated by clinical and laboratory improvement and lack of major side effects. Some antibodies induce circulating CD4+ T cell destruction with sometimes a prolonged depletion of CD4+ T cells while others exert their effect without any decrease in CD4+ lymphocytes. No predictive factor of therapeutic efficacy has yet been identified, but the preliminary results have indicated the major objectives for future trials as well as the laboratory and clinical parameters to be used as end-points.

Animals↗

Is there a common genetic basis for autoimmune diseases?

Autoimmune diseases (ADs) represent a diverse collection of diseases in terms of their demographic profile and primary clinical manifestations. The commonality between them however, is the damage to tissues and organs that arises from the response to self-antigens. The presence of shared pathophysiological mechanisms within ADs has stimulated searches for common genetic roots to these diseases. Two approaches have been undertaken to sustain the "common genetic origin" theory of ADs. Firstly, a clinical genetic analysis showed that autoimmunity aggregates within families of probands diagnosed with primary Sjögren's (pSS) syndrome or type 1 diabetes mellitus (T1D). A literature review supported the establishment of a familiar cluster of ADs depending upon the proband's disease phenotype. Secondly, in a same and well-defined population, a large genetic association study indicated that a number of polymorphic genes (i.e. HLA-DRB1, TNF and PTPN22) influence the susceptibility for acquiring different ADs. Likewise, association and linkage studies in different populations have revealed that several susceptibility loci overlap in ADs, and clinical studies have shown that frequent clustering of several ADs occurs. Thus, the genetic factors for ADs consist of two types: those which are common to many ADs (acting in epistatic pleitropy) and those that are specific to a given disorder. Their identification and functional characterization will allow us to predict their effect as well as to indicate potential new therapeutic interventions. Both autoimmunity family history and the co-occurrence of ADs in affected probands should be considered when performing genetic association and linkage studies.

Autoimmune Diseases↗

Therapeutic blockade of TCR signal transduction and co-stimulation in autoimmune disease.

Autoimmune diseases are initiated and maintained by presentation of self antigen through complex interactions between different cells of the immune system. In most autoimmune disorders, autoantigen-specific responses are induced by the activation of specific T cells with self peptides displayed on activated antigen presenting cells (APCs). These T cells may then activate and drive B cell responses that either initiate or contribute to chronic disease pathogenesis. In order to activate the T cell, two signals are required: T cell receptor (TCR) engagement by autoantigen presented in the context of self MHC class II and costimulation (CD28-CD80/CD86 interactions). Feedback must also be provided to the APC through MHC class II engagement by the TCR and through costimulatory events controlling T cell differentiation and effector function (CD154-CD40 interactions, among others). With this in mind, numerous strategies have been developed to block the engagement and activation of self-reactive cells. We review and discuss recent progress in understanding the efficacy and underlying molecular mechanisms of three separate immunotherapeutic strategies targeting the TCR and costimulatory molecules: i) blocking TCR signaling (using non-mitogenic anti-CD3 monoclonal antibody); ii) blocking CD28 costimulation (anti-B7 monoclonal antibody blockade); and iii) blocking CD40 engagement on APCs (anti-CD154 monoclonal antibody blockade).

Animals↗

The T cell receptor in autoimmune diseases.

Autoimmunity is likely the cause of a variety of diseases including systemic lupus erythematosus, rheumatoid arthritis and diabetes. Normally, the body's immune system serves as a defense against a variety of conditions, including, injury, infection and neoplasm. However, for reasons that are currently unclear, the normal regulation of the immune system can breakdown resulting in autoaggressive responses. T cells, especially CD4+ cells, appear to play a predominant role in most autoimmune diseases. We summarize our workshop which focussed on the role of the T cells in autoimmune diseases. We summarize our workshop which focussed on the role of the T cells in autoimmune diseases; the T cell receptor in autoantigen recognition (emphasizing the role of selective T cell receptor V regions in the autoimmune response); and a discussion of possible therapeutic interventions.

Animals↗

Autoantibodies in multiple sclerosis patients before and during IFN-beta 1b treatment: are they correlated with the occurrence of autoimmune diseases?

Autoimmune side effects, namely autoantibody (autoAb) occurrence and thyroid function alteration, have been described during interferon-beta (IFN-beta) treatment for multiple sclerosis (MS). AutoAb occurrence and autoimmune thyroid diseases are also frequently detected in MS patients free of any treatment. The aim of this study was to evaluate the relationship between IFN-beta 1b treatment, autoAb occurrence, and autoimmune diseases in MS. Thyroid and liver function and serum autoAb (antithyroid, antinuclear, anti-liver, anti-kidney microsomes, anti-smooth muscle and parietal cell antigens) occurrence were evaluated in 156 relapsing-remitting MS (RRMS) patients before and every 3 months after starting IFN-beta 1b treatment (8 MIU subcutaneously [s.c.] on alternate days). The probability of having liver or thyroid function alteration or autoAb occurrence was analyzed longitudinally with the generalized estimating equations (GEE) approach. At baseline, 16.1% of patients had autoAb. During treatment, autoAb occurred de novo in 7.2% of patients. GEE analysis showed that the probability of having autoAb at any time during IFN-beta 1b treatment did not change significantly compared with baseline. AutoAb occurring de novo rarely persisted during treatment and significantly less than those already present at baseline. Positivity for autoAb at baseline or during treatment was not correlated with the development of thyroid or liver function alteration during IFN-beta 1b treatment. Our study indicates that IFN-beta treatment is a safe treatment for MS patients, free of risk of autoimmunity and of associated liver or thyroid function alteration.

Adjuvants, Immunologic↗

Oral tolerance in the control of experimental models of autoimmune disease.

Autoimmune inflammatory diseases, including many human arthritides, cause significant morbidity and mortality. The control of their immunological aspects is central to management of the diseases and usually involves drugs that are, in the immunological sense, non-specific in their effects. The efficacy of such drugs may be limited, and they may have side-effects so serious that if immunologically specific means were available to control these diseases, there would be significant benefits. Immunological specificity is carried only by antibodies, T cell receptors, MHC molecules and, of course, antigen. Based upon the experimental outcome of inducing systemic specific immunological unresponsiveness-the so-called oral tolerance effect-by feeding antigens, several groups have investigated the effects on experimental autoimmune diseases of delivering autoantigens across gastric and respiratory mucosal surfaces. Three forms of arthritis, those induced by type II collagen, adjuvant and oil, respectively, have been examined in this way, and the results from these studies show that disease can be specifically prevented or ameliorated. In parallel, examination of experimental encephalitis and uveitis, as examples of neurological diseases, and diabetes in the NOD mouse, have produced the same results. This review discusses the results of these experimental studies and draws out their common features. The uniform finding is that T cells are made hyporesponsive, and that the most likely mechanism is one of active suppression mediated through the selective activation of T cells, of either CD4+ or CD8+ phenotype, that make cytokines which in turn can suppress pathological T cells responsible for the disease lesions. There are many unanswered questions concerning optimal dosage regimes, routes and vehicles for antigen delivery and antigen pharmacokinetics that need to be answered if the promising results of early human trials are to be exploited with benefit. At the fundamental level, the full identity of the cell type, or types, responsible for the tolerance, most likely to be active peripheral suppression, is still elusive. Given the complexity of disease processes in the different situations that have been examined, it is likely that no one mechanism applies in all, and that therefore different therapeutic approaches will need to be tailored accordingly.

Administration, Oral↗

[Genetic markers in thyroid autoimmune diseases].

Autoimmune disorders of the thyroid such as Graves' disease and Hashimoto's thyroiditis are the most common autoimmune diseases in the Western world. The frequent occurrence of both diseases in members of the same family indicates the influence of common genetic factors generally predisposing to thyroid autoimmunity. Common susceptibility loci have been mapped to the HLA region on chromosome 6p21 (HLA DR, HLA DQ), to chromosome 2q33 (CTLA4) and possibly to chromosome 8q24 (thyroglobulin). Additional susceptibility is conferred by genomic variants of the vitamin D system (vitamin D receptor and CYP1 alpha hydroxylase). Since these polymorphisms prevail also in healthy relatives they are necessary but not sufficient cofactors. The higher prevalence of thyroid autoimmune disease in women cannot be explained by susceptibility genes. The observation of microchimerisms in thyroid tissue might explain that an immunisation by fetal-maternal interaction can lead to thyroid autoimmunity in HLA risk combinations.

Autoimmune Diseases↗

[Surgical procedures in patients with thyroid autoimmune disease].

Autoimmune thyroid disease is a serious medical problem in which various operative procedures are performed. The objective of the study is to explore the type of applied surgical procedures in autoimmune thyroid disease, advantages and disadvantages of various procedures, and criteria they have to meet. This is retrospective clinical study on 1478 patients, operated for Graves' toxic goiter (117 males and 795 females mean age 37.7) and Hashimoto thyroiditis (27 males and 539 females mean age 50.6) from 1995 to April 2005. Cancer in Graves' disease was found in 61 patients (6.7%), papillary in 60 (occult in 53 or 6.6%) and metastatic in 1, Hashimoto thyroiditis and thyroid cancer was found in 141 patients (24.9%), papillary in 116 or 20.5% (occult in 55 or 9.7%), follicular in 2 (0.3%), Hurthle in 11 (1.9%), medullary in 8 (1.4%), anaplastic in 2 (0.3%) and lymphoma in 3 (0.5%). We performed subtotal bilateral lobectomy in 344 (312 in Graves and 32 in Hashimoto), total lobectomy on one side with subtotal on the oposite in 307 (228 in Graves and 79 in Hashimoto); out of them, in 59 patients, the remnant was left in the region of the upper pole which we called atypic lobectomy. The most common procedure, total or near by total thyroidectomy, performed in 719 (371 in Graves and 349 in Hashimoto). One side lobectomy was performed in 103 patients with Hashimoto thyroiditis. Lymph node dissection was performed in 21 (1 in Graves and 20 in Hashimoto), in all central, in 10 lateral functional and in 6 mediastinal, in 15 patients with cancer and in 6 patients with benign disease. There was no operative mortality. In Graves' disease, there was postoperative bleeding in 4 (0.4%), wound infection in 2 (0.2%) recurrent pulsy in 18 (2%) and permanent hypoparathyroidism in 13 (1.4%). In Hashimoto thyroiditis, there was postoperative bleeding in 2 (0.4%), recurrent nerve pulsy in 11 (1.9%) and permanent hypoparathyroidism in 6 (1.1%). The most common surgical procedure in autoimmune thyroid disease is total thyroidectomy which is followed by low complication rate in specialised centers. Cancer is more frequent in Hashimoto than in Graves' disease.

Adult↗

[An imbalance between Th1 and Th2-like cytokines in patients with autoimmune diseases--differential diagnosis between Th1 dominant autoimmune diseases and Th2 dominant autoimmune diseases].

An imbalance between T helper cell (Th)1 and Th2-like cytokines has been described in several autoimmune diseases. Organ specific autoimmune diseases such as multiple sclerosis (MS) and inflammatory bowel diseases (IBD) are caused by Th1 dominant immune responses. On the contrary, systemic autoimmune diseases such as systemic lupus erythematosus (SLE) and Sjögren's syndrome(SS) are characterized by Th2 dominant imbalance of cytokine production. It might be useful for differential diagnosis among patients with various autoimmune diseases such as SLE, SS, IBD, and MS to measure the serum levels of cytokines such as IL-10, IFN gamma, and TNF alpha using ultrasensitive enzyme-linked immunosorbent assay system.

Animals↗

[Celiac disease and autoimmune diseases or systemic disease. Six cases and a review of the literature].

BACKGROUND: Celiac disease is an autoimmune disorder which may be associated with another autoimmune or systemic disease. OBJECTIVE: To determine the links between autoimmune diseases and celiac disease. PATIENTS AND METHODS: Among 31 patients with a celiac disease, we selected those who had another autoimmune or systemic disease. RESULTS: We report 6 patients with such disease association: 3 with autoimmune thyroiditis including one also with Grave's disease, 2 with systemic lupus erythematosus including one also with insulin-dependent diabetes mellitus, and 1 with temporal arteritis. CONCLUSION: The link between celiac disease and autoimmune thyroiditis or insulin-dependent diabetes mellitus seems to be real but many discrepancies are observed for the other autoimmune diseases. After a literature review, we suggest a summary of effective associations between celiac disease and autoimmune or systemic diseases.

Adolescent↗

Is chronic graft versus host disease an autoimmune disease?

Chronic graft versus host disease continues to be a major problem following bone marrow transplantation even though the incidence and severity of acute graft versus host disease has been reduced. Recent investigations have suggested that the pathogenesis of chronic graft versus host disease is more similar clinically to an autoimmune disease than to acute graft versus host disease.

Animals↗

Toll-like receptor engagement converts T-cell autoreactivity into overt autoimmune disease.

Autoimmune diabetes mellitus in humans is characterized by immunological destruction of pancreatic beta islet cells. We investigated the circumstances under which CD8(+) T cells specific for pancreatic beta-islet antigens induce disease in mice expressing lymphocytic choriomeningitis virus (LCMV) glycoprotein (GP) as a transgene under the control of the rat insulin promoter. In contrast to infection with LCMV, immunization with LCMV-GP derived peptide did not induce autoimmune diabetes despite large numbers of autoreactive cytotoxic T cells. Only subsequent treatment with Toll-like receptor ligands elicited overt autoimmune disease. This difference was critically regulated by the peripheral target organ itself, which upregulated class I major histocompatibility complex (MHC) in response to systemic Toll-like receptor-triggered interferon-alpha production. These data identify the 'inflammatory status' of the target organ as a separate and limiting factor determining the development of autoimmune disease.

Animals↗

Dendritic cells under investigation in autoimmune disease.

Autoimmune disorders play an increasing role in public health, especially in light of the fact of the growing aged population, which primarily develop such diseases. A clear understanding of the mechanisms leading to the development of autoimmune responses and finally to autoimmune disease does not exist. Autoimmunity is characterized by the presence of autoantibodies and/or autoreactive T cells and the corresponding organ manifestation. Following the discovery of autoreactive T cells found in the periphery of mice and humans, the old immunological concept that autoreactive T cells are completely deleted in the thymus during evolution has been revised in recent years. Although antigen-presenting cells and particularly dendritic cells are known to play an important role in the regulation of immune responses and the activation of T cells, recent evidence suggests that the role of dendritic cells in the development of autoimmunity has been underestimated previously. This article aims to give a general overview on the basic immunological principles involved and gives a short review of the current literature on the functional relevance of dendritic cells in various human and murine autoimmune disorders.

Animals↗

A new model of autoimmune disease. Experimental autoimmune uveoretinitis induced in mice with two different retinal antigens.

Experimental autoimmune uveoretinitis (EAU) is an organ-specific, T lymphocyte-mediated autoimmune disease, which serves as a model for several human ocular inflammations of an apparently autoimmune nature. EAU pathology in some rodents and in monkeys can readily be induced by immunization with several different retinal proteins; however, advancing research into the cellular mechanisms of this disease has raised the need for an EAU model in an immunologically and genetically well defined species. We report here the induction of EAU in the mouse, which has hitherto been considered a species refractory to EAU, with two retinal Ag, the retinal soluble Ag and the interphotoreceptor retinoid-binding protein. Although all the mouse strains tested exhibited lymphocyte responses and antibody titers to both retinal Ag, EAU was inducible in only some of the strains, and the uveitogenic responses to retinal soluble Ag and interphotoreceptor retinoid-binding protein appeared to be mutually exclusive. The EAU model in mice was found to differ in several respects from the EAU model in other rodent species. Induction of the disease was achieved with a relatively high dose of Ag and an intensified immunization protocol, and the onset of disease was later, the duration was longer, and the course was less acute. Anterior segment involvement was slight or nonexistent, and damage to the retina and uvea was of a focal rather than of a diffuse nature. Murine EAU appeared to approximate some types of human uveitis more closely than the EAU models described in other rodent species with respect to its pathologic manifestations as well as its more chronic course. The relatively longer duration of the active stage of disease in murine EAU should facilitate therapeutic intervention in established disease, which was not feasible in the more acute models of EAU. The extensive knowledge of the immunologic parameters of the mouse and the availability of genetically defined strains should be of great value in the study of cellular mechanisms and immunogenetics of ocular autoimmune disease.

Animals↗