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Upregulation of lymphocyte apoptosis as a strategy for preventing and treating autoimmune disorders: a role for whole-food vegan diets, fish oil and dopamine agonists.

Induced apoptosis of autoreactive T-lymphocyte precursors in the thymus is crucial for the prevention of autoimmune disorders. IGF-I and prolactin, which are lymphocyte growth factors, may have the potential to suppress apoptosis in thymocytes and thus encourage autoimmunity; conversely, dietary fish oil rich in omega-3 fats appears to upregulate apoptosis in lymphocytes. Since whole-food vegan diets may downregulate systemic IGF-I activity, it is proposed that such a diet, in conjunction with fish oil supplementation and treatment with dopamine agonists capable of suppressing prolactin secretion, may have utility for treating and preventing autoimmune disorders. This prediction is consistent with the extreme rarity of autoimmune disorders among sub-Saharan black Africans as long as they followed their traditional quasi-vegan lifestyles, and with recent ecologic studies correlating risks for IDDM and for multiple sclerosis mortality with animal product and/or saturated fat consumption. Moreover, there is evidence that vegan or quasi-vegan diets are useful in the management of rheumatoid arthritis, multiple sclerosis, and possibly SLE. The dopamine agonist bromocryptine exerts anti-inflammatory effects in rodent models of autoimmunity, and there is preliminary evidence that this drug may be clinically useful in several human autoimmune diseases; better tolerated D2-specific agonists such as cabergoline may prove to be more practical for use in therapy. The moderate clinical utility of supplemental fish oil in rheumatoid arthritis and certain other autoimmune disorders is documented. It is not unlikely that extra-thymic anti-inflammatory effects contribute importantly to the clinical utility of vegan diets, bromocryptine, and fish oil in autoimmunity. The favorable impact of low latitude or high altitude on autoimmune risk may be mediated by superior vitamin D status, which is associated with decreased secretion of parathyroid hormone; there are theoretical grounds for suspecting that parathyroid hormone may inhibit apoptosis in thymocytes. Androgens appear to up-regulate thymocyte apoptosis, may be largely responsible for the relative protection from autoimmunity enjoyed by men, and merit further evaluation for the management of autoimmunity in women. It will probably prove more practical to prevent autoimmune disorders than to reverse them once established; a whole-food vegan diet, coupled with fish oil and vitamin D supplementation, may represent a practical strategy for achieving this prevention, while concurrently lowering risk for many other life-threatening 'Western' diseases.

Androgens↗

Role of RT6+ T lymphocytes in mercury-induced renal autoimmunity: experimental manipulations of "susceptible" and "resistant" rats.

Brown Norway (BN) rats, "susceptible" to the autoimmune effects of mercury, experience a decrease of peripheral RT6.2+ T lymphocytes after the injection of relatively low doses of mercuric chloride. This change coincides with the appearance of circulating autoantibodies to renal antigens (e.g., laminin). Lewis (LEW) rats, "resistant" to the autoimmune effects of mercury, do not show significant decreases of RT6+ T cells. It is possible that BN rats are particularly sensitive to stress induced by mercury and that secretion of adrenocortical hormones decreases levels of RT6+ T cells in this rat strain. Alternatively, mercury may induce a graft-versus-host-like syndrome in BN rats, resulting in higher levels of corticosteroids capable of affecting RT6+ lymphocytes. To eliminate the possible influence of adrenocortical hormones, we have adrenalectomized BN rats prior to administration of mercury. Autoimmune responses to renal antigens were not affected by this experimental manipulation. Similarly, adrenalectomized rats exposed to mercury showed a significant decrease of RT6+ T lymphocytes in cervical lymph nodes. Overall, these observations do not support the hypothesis that increases in adrenocortical hormones play a major role in mercury-induced changes of RT6+ T cells. We have also explored whether experimental depletion of RT6+ T lymphocytes would result in autoimmunity. Gamma irradiation of BN rats led to a decrease of RT6+ T splenocytes, but by itself (i.e., without exposure to mercury) did not cause autoimmune responses to renal antigens. In addition, gamma-irradiated BN rats treated with mercury had autoimmune responses similar to those observed in mercury-treated nonirradiated controls. Depletion of RT6+ T cells in LEW rats through the use of a monoclonal antibody against the RT6.1 alloantigen did not by itself cause renal autoimmunity in this "resistant" strain. Depletion followed by administration of mercury also failed to induce renal autoimmunity. The lack of autoimmune effects in RT6-depleted BN and LEW rats suggests that a combination of several factors may be necessary to break self-tolerance and cause mercury-induced autoimmunity. Such factors likely comprise both environmental (mercury) and endogenous, genetically determined components. The latter include regulatory T cells (possibly RT6+), major histocompatibility complex (MHC), and T-cell receptors (TCR). Thus, BN rats with decreased percentages of immunoregulatory RT6+ T lymphocytes require additional immunotoxic and/or toxic effects of mercury for autoimmunity to occur. On the other hand, LEW rats depleted of regulatory T cells may still be unable to develop renal autoimmunity after exposure to mercury because they lack the appropriate MHC and TCR.

Adrenalectomy↗

Identification of premature ovarian failure patients with underlying autoimmunity.

Although known causes of premature ovarian failure (POF) include X chromosome deletions, radiation and chemotherapy, and genetic defects of the gonadotropin hormones or receptors, at least one third to one half of cases remain idiopathic. A significant proportion of patients with apparently idiopathic POF have some evidence for an autoimmune etiology. However, the only gold standard for detecting autoimmune causes of immune ovarian destruction has been invasive ovarian biopsy. Serum antibodies to ovarian and other self-tissue have been described in up to one third of women with POF, but the tests are not well standardized, not well correlated with ovarian histology, and highly variable. Recently, specific defects of expression of cell surface markers on peripheral blood lymphocytes have been shown to identify, in population-based studies, individuals destined to develop autoimmune pancreatic destruction and type I diabetes mellitus, even before any other evidence of autoimmunity. We, therefore, sought to test the ability of cell surface marker expression in women with POF to identify autoimmune defects. Seventeen women with POF, 11 of whom had positive antibody titers to ovary, thyroid, or antinuclear antibody, were studied on at least two occasions and compared in blinded fashion with normal controls and patients with autoimmune type I diabetes mellitus. The most useful marker for identifying autoimmunity was the surface density of conformationally correct HLA class I molecules on macrophages, a structure essential for T cell education. Using this marker, 7 of the 9 patients with autoantibodies and 3 of the 8 patients without autoantibodies were identified as having evidence of a defect in self-antigen presentation similar to that of type I diabetics (chi-square, p = 0.03). Subsequent testing identified antismooth muscle antibodies in 1 of the women with a defect of HLA class I molecules but no previously identified autoimmunity. In addition, there were increased numbers of CD8 T cells in both autoimmune POF and insulin-dependent diabetes mellitus (IDDM) patients. Exclusive to POF patients was a statistically significant increase in CD8 density on T cells. This was most prominent in POF patients with an underlying autoimmune etiology. These data further support a role for autoimmunity in POF patients and suggest that the further development of cell surface markers in combination with other diagnostic tests could result in diagnosis before the development of complete ovarian failure. The possibility for disease-specific therapy to prevent further autoimmune ovarian damage in selected POF patients is also envisioned.

Adult↗

Duration of gluten exposure in adult coeliac disease does not correlate with the risk for autoimmune disorders.

BACKGROUND AND AIMS: Duration of gluten exposure seems to predispose adolescents with coeliac disease to autoimmune diseases. In a retrospective cohort study, we assessed the relationship between autoimmune disorders and actual gluten exposure in patients in whom coeliac disease was diagnosed in adult life (> or = 16 years). METHODS: We screened for the presence of autoimmunity in 605 controls (16-84 years) and 422 patients (16-84 years), all of whom had been on gluten withdrawal for at least one year (median follow up 9.5 years). A logistic regression analysis, setting the prevalence of autoimmunity as the dependent variable, was employed to control for independent covariates as predictors of the risk of autoimmunity. RESULTS: The prevalence of autoimmunity was threefold higher (p < 0.00001) in patients than in controls. Mean duration of gluten exposure was 31.2 and 32.6 years for patients with or without autoimmunity. Logistic regression showed that increased age at diagnosis of coeliac disease was related to the prevalence of autoimmune disease while "actual gluten exposure" which takes into account diet compliance, follow up, and age at diagnosis of autoimmune disorders were not predictive for the risk of developing autoimmune diseases (odds ratio 0.82 per year). CONCLUSION: The prevalence of autoimmune diseases in patients with a late coeliac disease diagnosis does not correlate with duration of gluten intake. Early exposure to gluten may modify the immunological response. Gluten withdrawal does not protect patients with a late diagnosis from autoimmune diseases.

Adolescent↗

Bone marrow transplantation for autoimmune diseases.

Bone marrow transplantation (BMT) is now becoming a powerful strategy for the treatment of patients with autoimmune diseases. Using various animal models for autoimmune diseases, we have previously found that allogeneic BMT (not autologous BMT) can be used to treat autoimmune diseases such as systemic lupus erythematosus (SLE), rheumatoid arthritis (RA), immune thrombocytic purpura, insulin-dependent diabetes mellitus (IDDM), chronic glomerulonephritis, and certain types of non-insulin-dependent diabetes mellitus. In contrast, we have found that the transplantation of T-cell-depleted bone marrow cells or partially purified hemopoietic stem cells (HSCs) from autoimmune-prone mice to normal mice leads to the induction of autoimmune diseases in the recipients. These findings have recently been confirmed even in humans; autoimmune diseases such as RA, SLE, multiple sclerosis, and Crohn's disease were resolved after allogeneic BMT. However, there have recently been reports on the rapid recurrence or persistence of autoimmune diseases after autologous BMT. Conversely, the adoptive transfer of autoimmune diseases such as myasthenia gravis, IDDM and Graves' disease by allogeneic BMT from donors to recipients has been reported. Based on these findings, we have proposed that autoimmune disease is 'a stem cell disorder'. To clarify the differences between normal and abnormal HSCs, we have established a new method for purifying HSCs. Using this method, we purified HSCs from normal and autoimmune-prone mice and compared the former with the latter. We have found that a major histocompatibility complex (MHC) restriction exists between normal HSCs and stromal cells, whereas there is no MHC restriction between abnormal HSCs and stromal cells either in vivo or in vitro; abnormal HSCs proliferate even in allogeneic environments. Abnormal HSCs thus appear to be more resilient than normal HSCs. In humans, BMT across MHC barriers has had a low success rate as a consequence of (1) graft-versus-host disease (GVHD), (2) graft rejection and (3) incomplete recovery of T cell functions. However, we have found that such problems can be overcome in mice. GVHD can be prevented if T-cell-depleted bone marrow cells are used. Graft rejection can be prevented by bone grafts to recruit donor stromal cells, since, as we have found, an MHC restriction exists between HSCs and stromal cells. In addition, we have found that stromal cells migrate from the bone marrow to the thymus, where they become engaged in positive selection. Therefore, the bone grafting to recruit donor stromal cells leads to a complete recovery of T cell functions, since T cells, which are positively selected by donor stromal cells in the thymus, can cooperate with donor B cells and antigen-presenting cells. In humans, it is well known that the success rate of BMT in patients more than 45 years old is low. Recently, we have found that the low success rate is due to the aging of the thymus, and that BMT plus embryonal thymus grafts can be used to treat late-onset autoimmune diseases in MRL/+ mice. Based on these findings, we would like to suggest that the transplantation of the embryonal thymus in conjunction with BMT will become a valuable strategy for treating older patients with various intractable diseases, including autoimmune diseases. We believe that similar conditions (to permit successful allogeneic BMT) to those in mice will be realized in humans in the near future.

Animals↗

A strong association between thyrotropin receptor-blocking antibody-positive atrophic autoimmune thyroiditis and HLA-DR8 and HLA-DQB1*0302 in Koreans.

We investigated whether the associations between HLA alleles of patients with autoimmune hypothyroidism varied according to the presence or absence of TSH receptor-blocking antibody (TRBab). We analyzed the HLA-A, -B, -C, and -DR antigens by serotyping and the DQA1 and DQB1 genes using both enzymatic DNA amplification and sequence-specific oligonucleotide hybridizations. The patient population consisted of 47 Korean patients with atrophic autoimmune thyroiditis and 62 patients with goitrous autoimmune thyroiditis. The antigen frequency of HLA-DR8 was significantly increased in 23 atrophic autoimmune thyroiditis patients that were positive for TSH binding inhibitor immunoglobulin (TBII) compared to 136 controls [52% vs. 16%; chi 2 = 13.1; Pc (corrected P value) = 0.003]. This relative risk was 5.7; the etiological fraction was 0.43. HLA-DQB1*0302 was also increased in patients with TBII-positive atrophic autoimmune thyroiditis (24% vs. 7%; chi 2 = 11.2; Pc = 0.012; relative risk = 4.4; etiological fraction = 0.19). No specific DR antigens or DQB1 alleles were increased in either TBII-negative atrophic autoimmune thyroiditis or goitrous autoimmune thyroiditis. A significant decrease in the frequency of HLA-DR6 antigen was observed in both TBII-positive atrophic autoimmune thyroiditis (0% vs. 32%; chi 2 = 8.4; Pc = 0.03) and goitrous autoimmune thyroiditis (0% vs. 32%; chi 2 = 23.2; Pc < 0.001) patients. The frequency of the HLA-Cw1 antigen was significantly increased in all patient groups. We conclude that TRBab-positive atrophic autoimmune thyroiditis is immunogenetically different from both goitrous autoimmune thyroiditis and TRBab-negative atrophic autoimmune thyroiditis. It is possible that HLA-DR8 and/or DQB1*0302 may be related to the susceptibility genes involved in the production of TRBab in Koreans.

Adult↗

High frequency of endocrine autoimmunity in patients with sarcoidosis.

Autoimmune diseases and sarcoidosis may be related and, especially, the association between sarcoidosis and autoimmune thyroid disease has long been recognized. The frequency and type of endocrine autoimmunity was examined in a series of Swedish patients with sarcoidosis. Of all patients (N = 89) with documented sarcoidosis attending the Department of Pulmonary Medicine between January 1980 and December 1991, 78 patients (44 males and 34 females; median age at the time of the study 48 years. range 22-81 years) were examined at the Department of Endocrinology, Malmö University Hospital, in the present study. Fifteen patients (19.2%) had clinical or serological evidence of endocrine autoimmunity. Two patients had Addison's disease, both with polyglandular autoimmune (PGA) syndrome type II: evidence of thyroid autoimmunity was found in 13 patients, eight with clinical autoimmune thyroid disease (ATD) (two with Graves' disease and six with autoimmune thyroiditis), of whom two had PGA syndrome type III, and five with isolated positive thyroid serology; two patients had insulin-dependent diabetes mellitus and one had premature ovarian failure. The frequencies of Addison's disease, clinical ATD and PGA syndrome type II were significantly higher compared with the frequencies found in the general population. In conclusion, a high frequency of endocrine autoimmunity in patients with sarcoidosis, occurring in about 20% of the cases, was demonstrated. Thyroid autoimmunity and polyglandular autoimmune syndromes occurred most frequently. Complex immunological and genetic mechanisms might explain the association of sarcoidosis and endocrine autoimmune diseases.

Addison Disease↗

Increased prevalence of familial autoimmunity in probands with pervasive developmental disorders.

OBJECTIVES: Increased prevalence of familial autoimmune disease is a common finding among probands with various autoimmune disorders. Autistic disorder (autism) is a highly genetic disorder with known immune and immunogenetic abnormalities. Previous research has found an increased frequency of autoimmune disorders in families with autistic probands. We further investigated this association by determining the frequency of autoimmune disorders in families that have probands with pervasive developmental disorders (PDDs), including autism, compared with 2 control groups. METHODS: Three well-defined study groups, including 1) families that have a child with a PDD, 2) families that have a child with an autoimmune disorder, and 3) families with a healthy control child, constituted the sample. A questionnaire inquiring about which first- and second-degree family members had received a diagnosis of having specific autoimmune disorders was completed by 101 families in each group. RESULTS: The frequency of autoimmune disorders was significantly higher in families of the PDD probands compared with families of both the autoimmune and healthy control probands. Autoimmunity was highest among the parents of PDD probands compared with parents of the healthy control subjects. Hypothyroidism/Hashimoto's thyroiditis and rheumatic fever were significantly more common in families with PDD probands than in the healthy control families. CONCLUSIONS: Autoimmunity was increased significantly in families with PDD compared with those of healthy and autoimmune control subjects. These preliminary findings warrant additional investigation into immune and autoimmune mechanisms in autism.

Adolescent↗

[Complex family association in autoimmune polyendocrine syndrome].

Autoimmune polyglandular syndromes (APS) are conditions characterized by the association of two or more endocrine and non-endocrine autoimmune disorders. Diabetes mellitus type 1 (T1DM) is one of the most frequent components of APS and is often its first symptom. The frequency of autoimmune pathologies in patients affected by T1DM is proportional to the persistance of ICA. Even in first relatives of these patients, an increase in incidence of latent or manifest autoimmune pathology is noticed. The association of T1DM with autoimmune thyroiditis and celiac disease in a girl from a family affected by high incidence of autoimmune pathology is described. The role of gluten in the pathogenesis of T1DM and some other autoimmune conditions in genetically predisposed subjects. Infact studies are still inadequate for demostrating how a gluten-free diet could delay or mitigate the course of T1DM and of other autoimmune pathologies in genetically predisposed subjects. Nevertheless, it is suggested that gluten could represent a starting or a maintenance factor of autoimmune processes and the risk of autoimmune pathologies is proportional to the duration of the exposure to gluten. A screening for a quick singling out of autoimmune pathologies is suggested for T1DM patients, their first relatives and for subjects affected by other autoimmune diseases or celiac disease.

Adolescent↗

[Autoimmune thyroiditis--selected etiopathogenic mechanisms].

Autoimmune thyroiditis occurs as organ specific autoimmune disease not only as an isolated impairment of thyroid gland, but also linked to many autoimmune endocrinopathies. Genetic predisposition in the area of HLA antigens was followed up by patients with autoimmune thyroiditis diagnosed in this way and it appeared that genetic predisposition in isolated autoimmune thyroiditis is different when compared to the occurrence linked to endocrine polyglandular disease. In selected groups of patients with autoimmune disease also the influence of extraneous factors on the development of the autoimmune process was followed up, namely the influence of heavy metals and the influence of infectious agent--Helicobacter pylori. These factors have a different character of activation of autoimmune thyroiditis too, depending on the character of its manifestation as isolated disorder or in link to autoimmune polyglandular syndrome type II, or in link to the group of polyglandular activation of autoimmunity. To conclude, this study leads to the assumption, that autoimmune thyroiditis is a set of clinical syndromes that depends on the activation of the autoimmune process, rather than a strictly genetically and epigenetically characterized nosological unit.

Adult↗

Comparison of in vitro and in vivo mitogenic and polyclonal antibody and autoantibody responses to peptidoglycan, LPS, protein A, PWM, PHA and Con A in normal and autoimmune mice.

We have compared the in vitro and in vivo mitogenic and polyclonal antibody (IgM-, IgG-, IgA- and IgM anti-SRBC-secreting PFC) and autoantibody (IgM anti-ssDNA-, anti-bromelin-treated [HB]- and anti-intact mouse RBC-secreting PFC) responses to peptidoglycan (PG), LPS, protein A, PWM, PHA and Con A in young (4-7 weeks) and old (7-8 months) normal (BALB/c, CBA/H, C57BL/6) and autoimmune (NZB, NZB X NZW F1, BXSB, MRL/1; old BXSB and MRL/1 were 4-5 months) mice. Our results demonstrated that: lymphocytes from young and old autoimmune mice (except old BXSB) could be further polyclonally activated in vitro by PG or LPS as well as or better than lymphocytes from young and old normal mice; lymphocytes from young or old autoimmune mice were less polyclonally activated in vitro by protein A or PWM, respectively, than lymphocytes from young or old normal mice; PG and LPS were equally effective polyclonal activators in vitro; in vivo, LPS was a stronger stimulant than PG; in vivo, LPS could induce polyclonal activation in both young and old normal and autoimmune mice, whereas, PG could only induce polyclonal activation in vivo in young and old normal mice, but did not induce further activation in young and old autoimmune mice; only some tests (anti-ssDNA and IgG PFC in vivo, and IgA and anti-HB MRBC PFC in vitro) revealed higher responses in autoimmune than in normal mice, and these higher responses were seen more often in vivo than in vitro; both autoimmune and normal mice had a high frequency of autoantibody (especially anti-ssDNA) secreting cells in polyclonal activation in vitro, whereas a high frequency of these cells in vivo was only found in autoimmune mice; in most cases in vitro, polyclonal activators did not change the frequency of autoantibody and heteroantibody secreting cells, but in vivo, both PG and LPS increased the frequency of anti-ssDNA antibody secreting cells in normal, but not in autoimmune, mice; LPS increased the in vivo, but not in vitro, frequency of cells secreting anti-HB MRBC antibodies in some strains of mice; old mice had lower mitogenic responsiveness than young mice in both autoimmune and normal strains; autoimmune mice had similar, higher or lower mitogenic responses than normal mice, depending on the strain and the age, but in most cases consistent for both B and T cell mitogens; and there was no correlation between the patterns of increased or decreased mitogenic and polyclonal antibody responses in normal and autoimmune mice.4+.

Age Factors↗

Relation between autoimmune liver diseases and viral hepatitis: clinical and serological characteristics in 859 patients.

An etiopathological link between hepatitis virus infection and autoimmune liver disease, in particular autoimmune hepatitis has been suggested. In some patients features of both viral and autoimmune disease are present. We have studied 352 patients with autoimmune liver disease and 507 patients with viral hepatitis for diagnostic characteristics as well as for evidence of an etiological connection. 38 of the 201 patients with hepatitis C (19%) and 42 of the 306 patients with hepatitis B (14%) had significant titres of autoantibodies (ANA, SMA or LKM). SLA autoantibodies were found exclusively in patients with autoimmune liver disease. LKM auto-antibody was found in only one of the 201 HCV patients. Evidence of past or present hepatitis B virus and past hepatitis A virus infection was most common in the hepatitis C virus patients and least common in autoimmune hepatitis. 28 of the 352 patients with autoimmune liver diseases tested positive in the second generation anti-HCV ELISA, but only five patients (two with autoimmune hepatitis, one with primary sclerosing cholangitis and two with primary biliary cirrhosis) were positive in confirmatory anti-HCV assays, and only in these could HCV-RNA be isolated. Autoimmune hepatitis patients had significantly higher transaminase, GLDH and IgG levels. HLA-B8, HLA-DR3 and HLA-DR4 were significantly more common in autoimmune hepatitis. Distinction between autoimmune liver disease and viral hepatitis C could be made reliably on clinical and laboratory grounds. Our data show that a link between hepatitis A, B, or C virus infection and autoimmune liver diseases is highly unlikely.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Progress toward production of immunologic tolerance with no or minimal toxic immunosuppression for prevention of immunodeficiency and autoimmune diseases.

With donor and recipient matched at the major histocompatibility complex (MHC) locus, peripheral lymphoid tissue transplantation can be carried out without producing a graft-versus-host reaction or graft-versus-host disease (GVHD), thus correcting profound T cell immunodeficiencies of neonatally thymectomized mice. This analysis set the stage for clinical application of bone marrow transplantation (BMT) to provide for the first time cure of a human disease. With successful BMT, we cured immunologic deficiencies of a patient with XL severe combined immunodeficiency; thereafter we were the first to employ BMT to cure aplastic anemia. BMT regularly corrects immune and hematologic deficiencies caused by fatal irradiation without producing GVHD if the bone marrow (BM) used for the transplants has been purged of postthymic T cells. Over two decades in conjunction with Ikehara et al., we have shown that lethal total body irradiation (TBI) plus allogeneic BMT prevents or cures many organ-specific and systemic experimental autoimmune diseases. Animal models successfully treated by BMT include type I diabetes in nonobese diabetes (NOD) mice, type II diabetes in insulin-insensitive, glucose intolerant, diabetes mellitus (KK/Ay) mice, and autoimmune lupus erythematosus (LE) and glomerulonephritis in New Zealand Black x New Zealand White first generation hybrid (NZB x NZW)F1 females. El-Badri extended Ildstad's original research showing a high frequency of survival with a normal functioning immune system after stable mixed chimerism is produced by mixed BMT in C57BL/6 (normal long-lived black strain) mice transplanted with T cell-depleted marrow (TCDM) from BALB/c ("normal" long-lived strain) allogeneic donors and C57BL/6 syngeneic donors. We showed that osteoblasts act as facilitator cells for allogeneic BMT and promote engraftment of allogeneic hematopoietic stem cells. Wang et al. then showed that the autoimmunities and fulminating renal disease of BXSB (C57BL x SB cross and selective lupus-like systemic autoimmunity) male mice was prevented and could be cured by transplantation using TCDM from both BALB/c (resistant) and BXSB (susceptible) strains given to BXSB recipients after lethal TBI. This treatment produced mixed BMT and a stable mixed chimerism, increased longevity, corrected all manifestations of autoimmunity, and cured fulminant glomerulonephritis in these recipients. These studies generated a new perspective on the potential usefulness of BM and stem cell transplants to cure major diseases that can possibly be treated by BMT. Mixed BMT from TCD BALB/c and BXSB mice cured autoimmunities and fulminant glomerulonephritis in BXSB mice. LE disease plus coronary vascular disease that occurs in (NZW x BXSB)F1 mice, along with idiopathic thrombocytopenic purpura, is also cured in lethally irradiated (NZW x BXSB)F1 mice by BMT from C57BL/6 donors. Furthermore, hemolytic anemia, autoimmune phenomena, and hyalinizing glomerular renal disease of New Zealand Black (NZB) mice were prevented or cured by stem cell transplants using purified stem cells from MHC-matched DBA/2 donors or NZB donors. Consequently, we reasoned that autoimmunities reside in stem cells. More recently, we found that transplants of both BM cells and bones can completely and permanently prevent otherwise highly resistant autoimmune diseases of MRL/lpr lpr mice and an autoimmune polyarthritis of NZB/Kn mice. Ildstad concluded that lethal preparative measures would not be acceptable for preparations to treat autoimmune diseases, so we now employ a gentle method for producing stable mixed chimerism described by Sharabi and Sachs to achieve mixed marrow transplantation and mixed hematopoietic chimerism. Other diseases we are approaching using this gentle manipulation include two forms of diabetes: insulin-dependent diabetes mellitus (IDDM) type I in NOD mice and non-insulin-dependent diabetes mellitus (NIDDM) type II in KK/Ay mice, atherosclerosis of apolipoprotein-E + kno

Animals↗

Adhesion molecules in autoimmune disease.

Leukocyte activation, circulation, and localization to inflammatory sites are dependent on adherence to molecules on other cells or to extracellular matrix ligands. Adhesion molecule expression and interactions are probably involved in initiation and propagation of autoimmune diseases. Adhesion molecules pertinent to the development of autoimmunity are the subject of this review. Material in this review was generated by a manual and a computerized search of medical literature pertaining to adhesion molecules and specific autoimmune diseases. Topics covered include adhesion molecule classification, regulation of adhesion, and characterization of adhesion receptors in specific autoimmune diseases, including rheumatoid arthritis (RA), systemic lupus erythematosus, Sjögren's syndrome, autoimmune thyroid disease, multiple sclerosis, and diabetes mellitus. Adhesion molecules are classified into selectin, integrin, and immunoglobulin supergene family groups. Increased adhesion molecule expression and avidity changes occurring with cellular activation are the principal methods regulating leukocyte adhesion. Tumor necrosis factor-alpha (TNF alpha), interferon-gamma (IFN-gamma), and interleukin-1 (IL-1) stimulate adhesion receptor expression on lymphoid and nonlymphoid tissues. Although differences between specific autoimmune diseases exist, key interactions facilitating the development of autoimmune inflammation appear to include L-selectin/P-selectin/E-selectin, lymphocyte function-associated antigen-1 (LFA-1)/intercellular adhesion molecule-1 (ICAM-1), very late antigen-4 (VLA-4)/vascular cell adhesion molecule-1 (VCAM-1), and alpha 4B7/MadCAM or VCAM-1 adhesion. Administration of anti-adhesion molecule antibodies in experimental animal models of autoimmunity and in a preliminary trial with RA patients has been successful in preventing or reducing autoimmune disease severity. A vast array of adhesive interactions occurs between immunocompetent cells, endothelium, extracellular matrix, and target tissues during the evolution of an autoimmune disease. Further characterization of leukocyte migration patterns and adherence should clarify pathogenic processes in specific autoimmune diseases and identify potential therapeutic targets for their treatment.

Arthritis, Rheumatoid↗

Infection, vaccines and other environmental triggers of autoimmunity.

The etiology of autoimmune diseases is still not clear but genetic, immunological, hormonal and environmental factors are considered to be important triggers. Most often autoimmunity is not followed by clinical symptoms unless an additional event such as an environmental factor favors an overt expression. Many environmental factors are known to affect the immune system and may play a role as triggers of the autoimmune mosaic.Infections: bacterial, viral and parasitic infections are known to induce and exacerbate autoimmune diseases, mainly by the mechanism of molecular mimicry. This was studied for some syndromes as for the association between SLE and EBV infection, pediatric autoimmune neuropsychiatric disorders associated with streptococcal infection and more. Vaccines, in several reports were found to be temporally followed by a new onset of autoimmune diseases. The same mechanisms that act in infectious invasion of the host, apply equally to the host response to vaccination. It has been accepted for diphtheria and tetanus toxoid, polio and measles vaccines and GBS. Also this theory has been accepted for MMR vaccination and development of autoimmune thrombocytopenia, MS has been associated with HBV vaccination. Occupational and other chemical exposures are considered as triggers for autoimmunity. A debate still exists about the role of silicone implants in induction of scleroderma like disease.Not only foreign chemicals and agents have been associated with induction of autoimmunity, but also an intrinsic hormonal exposure, such as estrogens. This might explain the sexual dimorphism in autoimmunity.Better understanding of these environmental risk factors will likely lead to explanation of the mechanisms of onset and progression of autoimmune diseases and may lead to effective preventive involvement in specific high-risk groups. So by diagnosing a new patient with autoimmune disease a wide anamnesis work should be done.

Animals↗

Metals and kidney autoimmunity.

The causes of autoimmune responses leading to human kidney pathology remain unknown. However, environmental agents such as microorganisms and/or xenobiotics are good candidates for that role. Metals, either present in the environment or administered for therapeutic reasons, are prototypical xenobiotics that cause decreases or enhancements of immune responses. In particular, exposure to gold and mercury may result in autoimmune responses to various self-antigens as well as autoimmune disease of the kidney and other tissues. Gold compounds, currently used in the treatment of patients with progressive polyarticular rheumatoid arthritis, can cause a nephrotic syndrome. Similarly, an immune-mediated membranous nephropathy frequently occurred when drugs containing mercury were commonly used. Recent epidemiologic studies have shown that occupational exposure to mercury does not usually result in autoimmunity. However, mercury induces antinuclear antibodies, sclerodermalike disease, lichen planus, or membranous nephropathy in some individuals. Laboratory investigations have confirmed that the administration of gold or mercury to experimental animals leads to autoimmune disease quite similar to that observed in human subjects exposed to these metals. In addition, studies of inbred mice and rats have revealed that a few strains are susceptible to the autoimmune effects of gold and mercury, whereas the majority of inbred strains are resistant. These findings have emphasized the importance of genetic (immunogenetic and pharmacogenetic) factors in the induction of metal-associated autoimmunity. (italic)In vitro(/italic) and (italic)in vivo(/italic) research of autoimmune disease caused by mercury and gold has already yielded valuable information and answered a number of important questions. At the same time it has raised new issues about possible immunostimulatory or immunosuppressive mechanisms of xenobiotic activity. Thus it is evident that investigations of metal-induced renal autoimmunity have the potential to produce new knowledge with relevance to autoimmune disease caused by xenobiotics in general as well as to idiopathic autoimmunity.

Animals↗

Association between breast cancer and autoimmune thyroid disorders: no increase of lymphocytic infiltrates in breast malignant tissues.

An association between thyroid autoimmunity and breast cancer (BC) has been consistently reported, but the cause of this association is still unknown. The role of lymphocytic infiltration (LI) in breast tumorigenesis is controversial and several data suggest that in BC an increase of lymphoid cell infiltrates or a dysfunctional local immune response may be detected very early during tumor development. Chronic autoimmune thyroiditis is characterized by different degrees of LI in thyroid gland and BC cells share some antigenic properties similar to those detected in thyroid tissue, such as sodium iodide symporter (NIS) and peroxidase activity. The aim of this study was to evaluate the frequency and amount of LI in malignant and in normal peritumoral breast tissues, as expression of autoimmune morphological changes, in a group of BC patients with thyroid autoimmunity. We suppose that an increased LI in breast tissues of this group of patients may help explain the association between BC and thyroid autoimmunity. The study group included 26 BC patients with thyroperoxidase antibodies positivity (TPOAb+), 14 of them (53.8%) with Hashimoto's thyroiditis (HT), and 30 BC patients with no evidence of thyroid autoimmune disorders. Malignant and surrounding normal breast tissues were assessed for LI. The amount of LI was scored as very scanty or scanty (LI S) and moderate or marked (LI M), independently by two expert pathologists. LI S was detected in 19/26 (73.1%) BC tissues from patients with TPOAb positivity and LI M in 7 (26.9%). All BC patients with HT had LI S. LI S was detected in 25/30 (83%) and LI M in 5/30 (17%) of BC tissue from patients with no thyroid autoimmunity. The difference in the amount of LI of BC tissues in patient with or without autoimmune thyroid disorders was not significant. The LI was generally absent or very scanty in remote breast tissue in all cases. In conclusion, in breast malignancies the presence of humoral and/or clinical evidence of thyroid autoimmunity is not associated to autoimmune morphological changes of cancer and peritumoral normal tissue. The LI does not seem to have any role in tumorigenesis in patients with BC and thyroid autoimmunity.

Adult↗

Acquisition of autoimmunity genes by New Zealand mice is associated with natural resistance to infection by mycobacteria.

New Zealand (NZ) mouse strains comprise both autoimmune and non-autoimmune animals: NZ black (NZB) mice and the F1 hybrid (NZB/W) of NZB and NZ white (NZW) mice show spontaneous autoimmune disease by 6 months of age and die before the first year of age from renal disease, while NZW mice do not show autoimmune disorders. We investigated whether the autoimmunity-prone NZ animals (NZB and NZB/W) differ from the non-autoimmune NZW mice in susceptibility/resistance to mycobacterial infection. The three groups of NZ mice were infected by intraperitoneal inoculation of 10(8) colony forming units (cfu) of Mycobacterium avium. The M. avium infection was induced in 3-month-old mice (i.e., before NZB and NZB/W mice develop autoimmune disease) and studied for 4 months. Infected NZB and NZB/W mice showed evidence of renal disease at 2 and 4 months of infection (but not at 1 month). The non-autoimmune NZW mice were found to be susceptible to M. avium since they allowed massive proliferation (4-5 log growth) of the bacilli in liver and spleen. In contrast, both groups of autoimmunity-prone mice (NZB and NZB/W) were resistant to M. avium since their mycobacterial loads remained below the value of the initial inoculum. We conclude that in NZ mice the acquisition of autoimmunity genes is associated with expression of natural resistance to mycobacterial infection. This is consistent with the view that autoimmunity genes may have been evolutionarily selected because of their association with increased resistance of the host to infections by intracellular parasites.

Animals↗