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Genetic control of autoimmunity: protection from diabetes, but spontaneous autoimmune biliary disease in a nonobese diabetic congenic strain.

At least 20 insulin-dependent diabetes (Idd) loci modify the progression of autoimmune diabetes in the NOD mouse, an animal model of human type 1 diabetes. The NOD.c3c4 congenic mouse, which has multiple B6- and B10-derived Idd-resistant alleles on chromosomes 3 and 4, respectively, is completely protected from autoimmune diabetes. We demonstrate in this study, however, that NOD.c3c4 mice develop a novel spontaneous and fatal autoimmune polycystic biliary tract disease, with lymphocytic peribiliary infiltrates and autoantibodies. Strains having a subset of the Idd-resistant alleles present in the NOD.c3c4 strain show component phenotypes of the liver disease: NOD mice with B6 resistance alleles only on chromosome 3 have lymphocytic liver infiltration without autoantibody formation, while NOD mice with B10 resistance alleles only on chromosome 4 show autoantibody formation without liver infiltration. The liver disease is transferable to naive NOD.c3c4 recipients using splenocytes from affected NOD.c3c4 mice, demonstrating an autoimmune etiology. Thus, substitution of non-NOD genetic intervals into the NOD strain can prevent diabetes, but in turn cause an entirely different autoimmune syndrome, a finding consistent with a generalized failure of self-tolerance in the NOD genetic background. The complex clinical phenotypes in human autoimmune conditions may be similarly resolved into largely overlapping biochemical pathways that are then modified, potentially by alleles at a few key chromosomal regions, to produce specific autoimmune syndromes.

Adoptive Transfer↗

A comparison of the prevalence of autoantibodies in individuals with chronic hepatitis C and those with autoimmune hepatitis: the role of interferon in the development of autoimmune diseases.

BACKGROUND AND OBJECTIVES: Viral hepatitis due to hepatitis C virus results in chronic liver disease in more than 70% of individuals infected with the virus. Hepatitis C virus is also thought to be the cause of autoimmune chronic hepatitis, type II. The only treatment for chronic hepatitis C is interferon (IFN). IFN is both an antiviral agent and an up regulator of the cellular immune system. The latter effect is non-specific. Thus, IFN diffusely activates the cellular immune system and can initiate new autoimmune diseases in patients treated with it. To determine the prevalence of autoantibodies in patients with chronic hepatitis C and in patients with autoimmune hepatitis and to determine the incidence of new onset autoimmune disease in IFN-treated subjects with chronic hepatitis C, the records of 323 unselected patients with chronic hepatitis were reviewed. MATERIAL AND METHODS: A total of 203 patients with a mean age of 45.7 +/- 0.8, ranging 18-81 with either HCV disease or autoimmune hepatitis, were identified and studied. One hundred sixty-two patients with chronic hepatitis C defined by elevations of serum alanine aminotransferase (ALT) for at least 6 months, the presence of detectable anti-HCV (HCV; second generation enzyme immunoassay [EIA2], a positive recombinant immunoblot assay [RIBA], the presence of HCV-RNA by PCR in serum and an abnormal biopsy consistent with chronic hepatitis C) were identified. Each was also negative for HbsAg, HbeAg and anti-Delta. Forty-one patients with a putative autoimmune chronic hepatitis (AIH) diagnosed on the basis of serologic positivity for classical autoantibodies (ANA and anti-smooth muscle antibodies), tissue typing (B8, Dr3 positive), characteristic liver biopsy findings and the absence of anti-HCV and HCV-RNA in serum were identified. The records of both of these groups of patients were reviewed for the following antibodies: anti-nuclear antibodies (ANA), antimitochondrial antibodies (AMA), anti-liver-kidney microsomal antibody (LKM), anti-smooth muscle antibodies (SMA), anti-microsomal antibodies (MSA). RESULTS: The rate of ANA positivity was 63% in both groups; the rate of SMA positivity was 65% in patients with HCV infection (group I) and 63% in patients with AIH (group II). AMA was positive in 4% of the subjects in group I and 50% of the subjects in group II; anti-LKM antibodies were absent in all 91 HCV cases and were present in 4% of the cases in group II; MSA positivity was present in 17% of group I and 10% of group II. Eighty-one of the one hundred sixty-two patients (50%) with chronic hepatitis C received IFN treatment at a dose of 5 MU SQ daily for 6 months. Thirty-two of these eighty-one patients (42 females and 39 males with a mean age of 45.0 +/- 1.3, ranging from 18 to 81 yr.) had at least two autoantibodies detectable prior to the IFN therapy (subgroup 1) and 49 had one or no identifiable autoantibodies (subgroup 2) present prior to IFN therapy. No significant differences in the interferon response rate defined by HCV-RNA negativity and normalization of serum ALT levels at the end of therapy was noted between those with autoantibodies and those without autoantibodies. Fifteen of the interferon-treated patients developed a clinical manifestation of a new onset autoimmune disease during the course of their interferon treatment. Six of the fifteen patients belonged to subgroup 1 (n = 32) and the remaining 9 patients to subgroup 2 (n = 49) (p > 0.05). None were managed by discontinuing the interferon. Most required some form of specific treatment.(ABSTRACT TRUNCATED)

Adolescent↗

Stress proteins, autoimmunity, and autoimmune disease.

At birth, the immune system is biased toward recognition of microbial antigens in order to protect the host from infection. Recent data suggest that an important initial line of defense in this regard involves autologous stress proteins, especially conserved peptides of hsp60, which are presented to T cells bearing gamma delta receptors by relatively nonpolymorphic class lb molecules. Natural antibodies may represent a parallel B cell mechanism. Through an evolving process of "physiological" autoreactivity and selection by immunodominant stress proteins common to all prokaryotes, B and T cell repertoires expand during life to meet the continuing challenge of infection. Because stress proteins of bacteria are homologous with stress proteins of the host, there exists in genetically susceptible individuals a constant risk of autoimmune disease due to failure of mechanisms for self-nonself discrimination. That stress proteins actually play a role in autoimmune processes is supported by a growing body of evidence which, collectively, suggests that autoreactivity in chronic inflammatory arthritis involves, at least initially, gamma delta cells which recognize epitopes of the stress protein hsp60. Alternate mechanisms for T cell stimulation by stress proteins undoubtedly also exist, e.g., molecular mimicry of the DR beta third hypervariable region susceptibility locus for rheumatoid arthritis by a DnaJ stress protein epitope in gram-negative bacteria. While there still is confusion with respect to the most relevant stress protein epitopes, a central role for stress proteins in the etiology of arthritis appears likely. Furthermore, insight derived from the work thus far in adjuvant-induced arthritis already is stimulating analyses of related phenomena in autoimmune diseases other than those involving joints. Only limited data are available in the area of humoral autoimmunity to stress proteins. Autoantibodies to a number of stress proteins have been identified in SLE and rheumatoid arthritis, but their pathogenetic significance remains to be established. Nevertheless, the capacity of certain stress proteins to bind to multiple proteins in the nucleus and cytoplasm both physiologically and during stress or injury to cells, suggests that stress proteins may be important elements in the "immunogenic particle" concept of the origin of antinuclear and other autoantibodies. In short, this fascinating group of proteins, so mysterious only a few years ago, has impelled truly extraordinary new lines of investigation into the nature of autoimmunity and autoimmune disease.

Animals↗

Antibodies to human immunodeficiency virus (HIV-1) in autoimmune diseases: primary Sjögren's syndrome, systemic lupus erythematosus, rheumatoid arthritis and autoimmune thyroid diseases.

The aetiology of autoimmune diseases remains unknown. The relationship between virus, and more recently retrovirus, has been suggested with this group of diseases. Immunoblotting is a useful method for determining the presence of proteins coded by different retrovirus genes. Since the prevalence of these types of proteins in patients with primary Sjögren's syndrome (SS), systemic lupus erythematosus (SLE), rheumatoid arthritis (RA) and autoimmune thyroid diseases has not been fully established, the aim of this work was to determine the prevalence of antibodies to immunodeficiency human virus type 1 (HIV-1) proteins in these diseases and their possible relationship with the presence of anti-nuclear, anti-DNA, anti-SSA (Ro) and anti-SSB (La) autoantibodies. Antibodies to human immunodeficiency virus (HIV-1) were studied in a group of 341 patients with autoimmune diseases (77 SS, 98 SLE, 75 RA, 91 autoimmune thyroid diseases) and 126 blood donors as a control group. A Western blot was used to detect antibodies to HIV-1, and a double polymerase chain reaction (PCR) using nested primers in the gag and pol gene of HIV-1. Antinuclear antibodies, anti-DNA, anti-SSA (Ro) and anti-SSB (La) were determined by enzyme-linked immunosorbent assays. At least one band was shown on immunoblotting in 26% of patients with autoimmune diseases and 35% of controls. The presence of antibodies to p55 or p68 proteins in patients with SS or SLE proved to be the only statistically significant difference between the other autoimmune diseases studied and the control group. These antibodies were not associated with autoantibodies ANA, DNA, SSA (Ro) or SSB (La).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Bacterial agents protect against autoimmune disease. I. Mice pre-exposed to Bordetella pertussis or Mycobacterium tuberculosis are highly refractory to induction of experimental autoimmune encephalomyelitis.

Infectious agents have often been implicated in the etiology of autoimmune diseases. Here we show that bacteria may also play a role in resistance to autoimmune diseases. SJL/J and (SJL/J x BALB/c)F1 mice are genetically susceptible to induction of experimental autoimmune encephalomyelitis (EAE), a murine model for human demyelinating autoimmune diseases such as multiple sclerosis. We studied the effect of several bacteria on the development of EAE and found that exposure of SJL/J or (SJL/J x BALB/c)F1 mice to Mycobacterium tuberculosis or Bordetella pertussis consistently rendered mice highly refractory to subsequent induction of the disease. Other bacteria such as Escherichia coli, Shigella and Staphylococcus aureus were found to be less effective, or were protective only if specific immunization procedures were used. Furthermore, M. tuberculosis and B. pertussis were protective irrespective of the route of administration and minute amounts (as low as 0.5 micrograms) of M. tuberculosis were sufficient to protect EAE-susceptible mice against induction of the disease. Interestingly, these bacteria, which are commonly used to promote development of EAE, conferred the highest degree of protection against the disease. The M. tuberculosis-induced protection was found to be associated with active suppression mechanisms mediated by T lymphocytes capable of transferring protection to naive syngeneic mice. These findings indicate that certain bacteria may protect against the development of autoimmune diseases. These results also suggest the potential use for still-unidentified bacterial agents in the manipulation of certain autoimmune diseases.

Animals↗

Autoimmunity as an immune defense against degenerative processes: a primary mathematical model illustrating the bright side of autoimmunity.

Self-tolerance, or the ability of the immune system to refrain from destroying the organism's own tissues, is a prerequisite for proper immune system operation. How such self-tolerance is achieved is still a subject of debate. The belief that autoimmunity poses a continuous threat to the organism was challenged by data demonstrating that autoimmunity has a protective function after traumatic injury to the central nervous system. This finding led us to suggest the 'comprehensive immunity' approach by which autoimmunity is viewed as a special case of immunity, namely as a defense mechanism that operates by fighting against the threat of potential destructive activity originated or mediated within the organism, similarly to the immune defense that operates against the threat from exogenous pathogens. We present a primary mathematical spatio-temporal model that supports this concept. The numerical solutions of this model illustrate the beneficial operation of a well-controlled immune response specific to self-antigens residing in the site of lesion. The model also explains how the response to self might be tolerated on a day-to-day basis. In addition, we demonstrate that the same autoimmune response, operating at different levels of regulation, can lead to either an autoimmune disease or a degenerative disorder. This preliminary qualitative model supports our contention that the way autoimmunity is perceived should be revised.

Animals↗

Thymus and autoimmunity. Transplantation of the thymus from cyclosporin A-treated mice causes organ-specific autoimmune disease in athymic nude mice.

Organ-specific autoimmune diseases such as gastritis, oophoritis, thyroiditis, or insulitis developed in athymic nu/nu mice after engraftment of the thymus from euthymic nu/+ mice treated with cyclosporin A (CsA), a potent immuno-suppressant. The development of autoimmune disease in the nu/nu mice was prevented by inoculation of thymocyte suspensions prepared from normal nu/+ mice, but not by thymocyte suspensions from CsA-treated nu/+ mice. Cotransplantation of normal nu/+ mouse thymus with CsA-treated thymus also suppressed the development of autoimmune disease. Inoculation of spleen cell suspensions prepared from normal adult nu/+ mice prevented autoimmune disease, but inoculation of those from newborn nu/+ mice did not. Thus, CsA appears to interfere selectively with the thymic production of certain suppressor T cells controlling self-reactive (autoimmune) T cells, allowing the latter to expand and cause autoimmune disease.

Animals↗

Prevention of autoimmune symptoms in autoimmune-prone mice by elimination of B-1 cells.

Our recent studies on an autoantibody-transgenic mouse line demonstrated that peritoneal B-1 cells are responsible for autoimmune symptoms. However, whether B-1 cells in the peritoneum are generally involved in the pathogenesis of autoimmune disease remains controversial. To test the possible involvement of peritoneal B-1 cells in autoimmune symptoms of autoimmune-prone NZB mice, we eliminated the peritoneal cells by hypotonic shock with repeated i.p. injection of distilled water every 7 days into neonatal or 8-week-old NZB mice. By this treatment, B-1 cells, which self-renew within the peritoneal cavity, are expected to be preferentially eliminated, while other peritoneal cells can be easily supplied from bone marrows after this treatment. Indeed, in distilled water-treated old NZB mice, the number of B-1 cells decreased in spleen as well as in lamina propria of the gut but the numbers of conventional B cells and T cells did not change. Moreover, the production of autoantibodies against erythrocytes significantly decreased and the occurrence of autoimmune hemolytic anemia was reduced in 12-month-old treated NZB mice. Similarly, the elimination of peritoneal cells of NZB/NZW (NZB/W) F1 mice by water injection decreased anti-DNA IgG antibodies in the sera and reduced the pathological changes of the kidney. These results suggest that peritoneal B-1 cells may be a source of autoantibody-producing cells in autoimmune diseases of NZB and NZB/W F1 mice.

Anemia, Hemolytic, Autoimmune↗

Animal models for autoimmune myocarditis and autoimmune thyroiditis.

This chapter describes four murine models of autoimmune diseases: two related to autoimmune myocarditis and two related to autoimmune thyroiditis. The first model, Coxsackie virus B3 (CB3)-induced myocarditis, results in the development of acute myocarditis in susceptible as well as resistant mouse strains, whereas chronic myocarditis develops only in genetically susceptible mice. CB3-induced myocarditis closely resembles the course of human myocarditis, which is believed to be initiated by viral infection. Mouse cardiac myosin heavy chain has been identified as the major antigen associated with the late chronic phase of viral myocarditis. The second model is cardiac myosin-induced experimental autoimmune myocarditis (EAM) and, in a modification, cardiac alpha-myosin heavy chain peptide-induced myocarditis. In the EAM model, cardiac myosin or the relevant peptide in Freund's complete adjuvant (FCA) is injected subcutaneously into mice. The immune response, the histological changes, and the genetic susceptibility seen in EAM are similar to those of CB3-induced myocarditis. The third model is experimental autoimmune thyroiditis (EAT). EAT can be induced in genetically susceptible strains of mice by immunization with mouse thyroglobulin in FCA or lipopolysaccharide. Mice susceptible to EAT have the H-2A(k), H-2A(s), or H-2A(q) alleles. We describe here a standard technique for the induction of EAT; it was developed in our laboratory and is widely used as a model for studying Hashimoto's thyroiditis. The fourth model presented in this chapter is that of spontaneous autoimmune thyroiditis in NOD.H2h4 mice. These mice express the H-2A(k) allele on an NOD genetic background and develop spontaneous thyroiditis, which is exacerbated with dietary iodine.

Amino Acid Sequence↗

[Autoimmune thyroid disease--clinical symptoms of associated autoimmunity].

Autoimmune diseases are manifested in a broad spectrum. Classic examples of organ-specific autoimmune disease include Addison's disease, insulin-dependent type-1 Diabetes mellitus, Grave's disease (MGB), and Hashimoto thyroiditis (HT). The initial report of this autoimmune thyroid disease (AITD) dates back to Hakira Hashimoto (1912). In HT, as an organ-specific autoimmune disease, massive infiltration of lymphoid cells and parenchyma destruction are a consistent feature. The infiltration appears to be immune-mediated, primarily lymphocytic (T helper, T suppressor cells), NK cells and B cells. The pathological characteristics of AITD include development of the goitre (atrophic form is not so frequent), impaired thyroid gland function (from hyperthyroidism to subclinical and manifested hypothyroidism) and the formation of antithyroidal antibodies against thyroglobulin (AbTg) and the microsomal antigen (Ab TPO). There is a very good correlation between the antibodies against TPO and the histological findings. Morbus Graves Basedow is characterized by autoimmune hyperthyroidism with goitre, and infiltrative orbitopathy. Autoantibodies against the TSH-receptor molecule on the plasma membrane of the thyroid gland follicles cause a nonphysiological activation and an increase of the cellular function. Besides this hyperthyroidal condition, an autoimmune attack against the retrobulbar tissue leading to endocrine orbitopathy, can be noted in about 40% of patients suffering from MGB.

Autoimmune Diseases↗

Dissimilar background genes control susceptibility to autoimmune disease in the context of different MHC haplotypes: NOD.H-2(s) congenic mice are relatively resistant to both experimental autoimmune encephalomyelitis and type I diabetes.

Nonobese diabetic (NOD) mice develop multi-organ autoimmune diseases, including type 1 diabetes. We hypothesized that backcrossing the MHC region from SJL (H-2(s)) mice, which have an endogenous PLP(139-151)-reactive repertoire, onto the background of autoimmune-prone NOD mice would result in a mouse strain that is highly susceptible to experimental autoimmune encephalomyelitis (EAE). Unexpectedly, although we detected an endogenous PLP(139-151) repertoire in the NOD.S mice, they did not develop spontaneous EAE and were relatively resistant to PLP(139-151)-induced EAE when compared to SJL mice. This resistance was associated with lower production of proinflammatory cytokines and a decreased expansion of PLP(139-151)-specific CD4(+) T cells after immunization and restimulation with PLP peptide in vitro. V(beta) chain usage among PLP(139-151)-reactive T cells differed between SJL and NOD.S mice. Furthermore, NOD.S mice were resistant to the development of insulitis and cyclophosphamide-induced diabetes, but not sialadenitis. Altogether, even though NOD mice develop spontaneous autoimmune diseases, they become relatively resistant to induction of EAE even when they express the EAE-permissive class II molecule I-A(s). Our data show that certain combinations of otherwise susceptibility-conferring MHC and non-MHC genes can mediate autoimmune-disease resistance when they are paired together. These findings do not support the "shared autoimmune gene" hypothesis.

Animals↗

Different immune mechanisms leading to autoimmunity in primary sclerosing cholangitis and autoimmune chronic active hepatitis of childhood.

Children with primary sclerosing cholangitis or autoimmune chronic active hepatitis have similar high levels of immunoglobulin G and non-organ-specific autoantibodies and may have similar histological features. To investigate a possible immunopathogenesis of primary sclerosing cholangitis, we have studied a series of regulatory and/or effector immune mechanisms in eight children with primary sclerosing cholangitis, comparing them to 14 children with autoimmune chronic active hepatitis and 24 healthy children as controls. Antibodies to a liver membrane protein preparation were found in all children with autoimmune chronic active hepatitis tested and in seven of eight with primary sclerosing cholangitis, whereas antibodies against the hepatic asialoglycoprotein receptor were present in three of six patients with autoimmune chronic active hepatitis and in two of the eight with primary sclerosing cholangitis. Lymphocyte cytotoxicity values to autologous hepatocytes were similarly elevated in primary sclerosing cholangitis (median: 50%; range: 38 to 83%) and in autoimmune chronic active hepatitis (median: 52%; range 37 to 87%) compared to controls (median: 8%; range: 0 to 27%) (p less than 0.01 for both). In contrast, T suppressor cell number and function were normal in patients with primary sclerosing cholangitis (median: 23%; range: 19 to 28%; and median: 54%; range: 44 to 61%), but significantly decreased in patients with autoimmune chronic active hepatitis (median: 15%; range: 9 to 21%; and median: 9%; range: -40 to +21%) when compared to controls (median: 24%; range: 16 to 29%; and median: 53%; range: 8 to 77%) (p less than 0.01 for both).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Age-dependent alterations of peritoneal exudate macrophages in autoimmune-prone and autoimmune-resistant mouse strains.

Comparisons were made with age on phagocytosis, chemotaxis, and esterase staining of autoimmune-resistant and autoimmune-susceptible mouse strains. Consistent increases of each parameter occurred with age. Autoimmune strains generally showed less change with age than autoimmune-resistant mice and the changes with aging were less consistent. These findings suggest that phagocytic cells may play an important role in the autoimmunities or the lymphoproliferative processes that occur in autoimmune-prone mice and/or in loss of immune function with aging.

Age Factors↗

[Frequency of autoimmune diseases in 218 patients with autoimmune thyroid pathologies].

PURPOSE: The aim of our study was to investigate the frequency of auto-immune diseases in patients suffering from autoimmune thyroid diseases. METHOD: We realised a retrospective study from 1981 to 1993 including 218 patients suffering from thyroiditis who were followed in the same hospital service. There were 202 women and 16 men with a mean age 49 at the moment their thyroid pathology was discovered. RESULTS: Thirty patients had one or more autoimmune disease associated to their thyroid disorders, representing 13.7% of total patients. The two most frequent autoimmune diseases were lupus and Sjögren's syndrome. In 17 cases the diagnosis of the associated autoimmune disease was made simultaneously. The systemic disease preceded with an 8-year delay the thyroid disease in five cases, and the thyroid disease was annunciatory in eight cases with a delay of 5 years. The frequency of autoimmune diseases seems to be higher in patients suffering from thyroid disorders than in the general population. They are probably common physiopathological mechanisms. CONCLUSION: The frequency of these associations suggests the need for a long-lasting survey of those patients having thyroid disorders. Initial evaluation and a regular checking in patients suffering from an autoimmune disease is recommenced.

Comorbidity↗

Inner ear DNA receptors in MRL/lpr autoimmune mice: potential 30 and 70 kDa link between autoimmune disease and hearing loss.

Inner ear function and systemic autoimmune disease were evaluated in the MRL/lpr mouse to determine their relationship with alterations in cell surface DNA receptors of 28-30 and 68-70 kDa size. Auditory brainstem response thresholds in the autoimmune disease mice were significantly elevated as early as 2 months of age when compared to MRL/++ controls. Hearing thresholds continued to rise with progression of the disease, manifested as increasing spleen weights, antinuclear (anti-DNA) antibodies, and serum immune complexes. Cochlear membranous labyrinth cells in the autoimmune mice bound less DNA, suggesting the DNA receptors were abnormally occupied by circulating antibodies. Western blots of a murine T-cell line probed with autoimmune mouse sera demonstrated reactivity to 28-30 and 68-70 kDa proteins after disease onset. It is hypothesized that cell surface DNA binding molecules could be masked or down-regulated by circulating antibodies in autoimmune disease. This interference with DNA receptor activity may be occurring within the inner ear and underlie the cochlear dysfunction seen in autoimmune sensorineural hearing loss.

Analysis of Variance↗

Regulatory T cells in the control of autoimmunity: the essential role of transforming growth factor beta and interleukin 4 in the prevention of autoimmune thyroiditis in rats by peripheral CD4(+)CD45RC- cells and CD4(+)CD8(-) thymocytes.

Previous studies have shown that induction of autoimmune diabetes by adult thymectomy and split dose irradiation of PVG.RT1(u) rats can be prevented by their reconstitution with peripheral CD4(+)CD45RC-TCR-alpha/beta+RT6(+) cells and CD4(+)CD8(-) thymocytes from normal syngeneic donors. These data provide evidence for the role of regulatory T cells in the prevention of a tissue-specific autoimmune disease but the mode of action of these cells has not been reported previously. In this study, autoimmune thyroiditis was induced in PVG.RT1(c) rats using a similar protocol of thymectomy and irradiation. Although a cell-mediated mechanism has been implicated in the pathogenesis of diabetes in PVG.RT1(u) rats, development of thyroiditis is independent of CD8(+) T cells and is characterized by high titers of immunoglobulin (Ig)G1 antithyroglobulin antibodies, indicating a major humoral component in the pathogenesis of disease. As with autoimmune diabetes in PVG. RT1(u) rats, development of thyroiditis was prevented by the transfer of CD4(+)CD45RC- and CD4(+)CD8(-) thymocytes from normal donors but not by CD4(+)CD45RC+ peripheral T cells. We now show that transforming growth factor (TGF)-beta and interleukin (IL)-4 both play essential roles in the mechanism of this protection since administration of monoclonal antibodies that block the biological activity of either of these cytokines abrogates the protective effect of the donor cells in the recipient rats. The prevention of both diabetes and thyroiditis by CD4(+)CD45RC- peripheral cells and CD4(+)CD8(-) thymocytes therefore does not support the view that the mechanism of regulation involves a switch from a T helper cell type 1 (Th1) to a Th2-like response, but rather relies upon a specific suppression of the autoimmune responses involving TGF-beta and IL-4. The observation that the same two cytokines were implicated in the protective mechanism, whether thymocytes or peripheral cells were used to prevent autoimmunity, strongly suggests that the regulatory cells from both sources act in the same way and that the thymocytes are programmed in the periphery for their protective role. The implications of this result with respect to immunological homeostasis are discussed.

Animals↗

Bacterial lipopolysaccharide both renders resistant mice susceptible to mercury-induced autoimmunity and exacerbates such autoimmunity in susceptible mice.

The initiation and severity of systemic autoimmune diseases are influenced by a variety of genetic and environmental factors, in particular bacterial infections and products. Here, we have employed bacterial lipopolysaccharide (LPS), which non-specifically activates the immune system, to explore the involvement of innate immunity in mercury-induced autoimmunity in mice. Following treatment of mouse strains resistant [DBA/2 (H-2(d))] or susceptible [SJL(H-2(s))] to such autoimmunity with mercuric chloride and/or LPS or with physiological saline alone (control), their immune/autoimmune responses were monitored. Resistant DBA/2 mice were rendered susceptible to mercury-induced autoimmunity by co-administration of LPS, exhibiting pronounced increases in the synthesis of IgG1 and IgE, high titres of IgG1 deposits in the kidneys and elevated circulating levels of IgG1 antibodies of different specificities. Furthermore, the percentages of the T cells isolated from the spleens of DBA/2 mice exposed to both mercury and LPS that produced pro-inflammatory cytokines were markedly increased by in vitro stimulation with phorbol myristate acetate (PMA) and ionomycin, which was not the case for splenic T cells isolated from mice receiving mercuric chloride, LPS or saline alone. In addition, exposure of susceptible SJL mice to mercury in combination with LPS aggravated the characteristic features of mercury-induced autoimmunity, including increased synthesis of IgG1 and IgE, the production of IgG1 anti-nucleolar antibodies (ANolA) and the formation of renal deposits of IgG1. In summary, our findings indicate that activation of the innate immune system plays a key role in both the induction and severity of chemically induced autoimmunity.

Animals↗

HLA-DRB1 and MICA in autoimmunity: common associated alleles in autoimmune disorders.

Autoimmune disorders such as type 1 diabetes (T1DM), celiac disease (CD), and Addison's disease (ADD) develop in individuals with genetic susceptibility that are exposed to environmental triggering factors not completely defined. Patients with an autoimmune disease (and their relatives) are at increased risk of developing another disorder, and this might be caused by a common genetic origin of autoimmunity; for example, HLA class II region in 6p21 shows a very strong association with most diseases. The aim of this study was to determine whether shared susceptibility markers extend from the central (DRB1) through the telomeric (MICA) HLA region. We analyzed three independent sets of families with one autoimmune disease, T1DM, CD, or ADD, and genotyped them for HLA-DRB1 and for the exon 5 GCT polymorphism of MICA. For HLA-DRB1, allele DRB1*0301 was the only one associated with risk for all three diseases; in the case of MICA, allele A9 was found to be the common protective allele. Haplotype analysis shows that haplotype A5.1-DRB1*0301 confers risk to autoimmunity. Our results show that there are common risk and protection alleles in both loci, suggesting a core of genetic association with autoimmunity (HLA-DRB1*0301 risk; A9 protection) that could be modulated by other alleles/loci or environmental factors toward one or another disease. Some alleles are part of conserved haplotypes (A5.1-DR3, A5.1-DR2), whereas others seem to have independent effect (A9) and support the idea of two independent loci in this region.

Adolescent↗