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P W Mathieson

Publications and source records attributed to P W Mathieson.

At least 19 recordsLinked to original sources

Nitric oxide contributes to tissue injury in mercuric chloride-induced autoimmunity.

Recent data has suggested a role for nitric oxide (NO) both in the induction of immunity and as an effector of tissue injury in experimental models of inflammation. In this study, we have tested the efficacy of two inhibitors of NO synthase, NG-monomethyl-L-arginine (L-NMMA) and aminoguanidine (AG), to modify the autoimmune leucocytoclastic necrotizing vasculitis which develops following the administration of mercuric chloride (HgCl2) to the Brown Norway rat. Neither agent affected the induction of autoimmunity as judged by plasma IgE titres or the degree of tissue neutrophil infiltration; however, L-NMMA did significantly attenuate tissue injury scores. We conclude that inhibition of NO synthase does not influence the induction of autoimmunity by HgCl2, but that NO does contribute to the development of tissue injury in this experimental model.

Animals

Expression and tissue localization of donor-specific complement C3 synthesized in human renal allografts.

Recent evidence suggests that the third component of complement, C3, is synthesized in renal tissue, and that increased C3 synthesis occurs in allograft rejection and immune complex-mediated nephritis. However, it is unclear whether intrinsic renal cells or migratory cells in the inflammatory infiltrate, possibly of recipient bone marrow origin, are the source of the C3 detected. This was investigated by determining the C3 allotypes of mRNA and protein produced by transplanted human kidney. Twenty donor-recipient pairs were examined, of which nine pairs had C3 allotypes that were informatively mismatched at the C3 F/S locus. Reverse transcriptase polymerase chain reaction (RT-PCR) followed by amplification refractory mutation system analysis showed intracellular donor-specific mRNA expression in six of these nine cases, at up to 61 days post-transplantation. Nested PCR reactions and the size of PCR products excluded contamination by genomic DNA. Allotype-specific staining of frozen sections of renal cortex demonstrated donor-derived C3 protein in both glomeruli and tubules of all biopsies examined, in a predominantly tubular distribution. These results imply that at least some of the pro-inflammatory effects of complement arise from intrinsic tissue synthesis of donor C3, and that this may represent a previously unrecognized source of tissue injury. The occurrence of local synthesis of C3 of donor allotype may have functional implications related to C3 allotype, and may also be relevant to strategies to inhibit intrarenal complement-mediated injury.

Alleles

Compounds that induce autoimmunity in the brown Norway rat sensitize mast cells for mediator release and interleukin-4 expression.

Brown Norway (BN) rats given mercuric chloride (HgCl2), gold (Au) salts or D-penicillamine develop a T helper 2 (Th2) cell-mediated autoimmune syndrome. The recent observation of tissue injury within 24 h of HgCl2 treatment suggested the involvement of a non-T cell. We therefore examined the effect of these compounds on rat mast cells in vitro. Incubation of BN rat peritoneal mast cells with HgCl2 enhanced the release of serotonin in response to IgE cross-linking agents. Mast cells from Lewis rats, a strain not susceptible to the autoimmune syndrome in vivo, were affected to a lesser extent. The effect was observed with purified BN mast cells, suggesting a direct action. Similar effects were seen with D-penicillamine in the presence of copper ions, a combination that produces hydrogen peroxide, and Au. HgCl2 caused significant induction of interleukin (IL)-4 mRNA in mast cells from BN, but not Lewis rats. The data demonstrate a novel enhancing effect of a number of compounds on mast cell mediator release, and an inducing effect of HgCl2 on mast cell IL-4, expression. These findings are consistent with our hypotheses that mast cells may contribute to early tissue injury, and also, via production of IL-4, may initiate and/or augment, the Th2 response in the BN rat model of chemical-induced autoimmunity.

Animals

The time course and characterization of mercuric chloride-induced immunopathology in the brown Norway rat.

Mercuric chloride (HgCl2) induces an autoimmune syndrome in the Brown Norway (BN) rat which includes widespread tissue injury. There is necrotizing leucocytoclastic vasculitis in the gut with maximal injury occurring 2 weeks after the start of HgCl2 injections. There is evidence that disease is driven by Th2-like cell (CD4+CD45RClow) activity and that Th1-like cells (CD4+CD45RChigh) may be protective. Using the established protocol of five injections of HgCl2 over 10 days, we have studied in greater detail the presence and extent of vasculitis and changes in T cell subsets from 12 h to 20 days after the first injection. Animals were killed at various time points and necropsies performed. Tissue injury was scored both macroscopically and histologically, with immunohistochemistry for T cell subsets. Flow cytometry was used to determine T cell subsets in peripheral blood, mesenteric lymph node (LN) and spleen. Tissue injury was seen as early as 24 h after the first injection of HgCl2. The size of lesions and extent of vasculitis increased over the next two weeks with partial resolution at day 20. We confirmed that of peripheral blood T cells in the BN rat, less than 20% were CD8+ and a similar proportion were CD4+CD45RChigh, but found that less than 75% of CD8+ T cells were CD45RChigh (in other strains of rat more than 90% CD8+ T cells are CD45RChigh). Within 48 h, HgCl2 caused a rise in the proportion of CD4+ T cells in spleen, LN and peripheral blood which then fell towards normal at peak tissue injury. The proportion of CD4+CD45RClow T cells rose in the first week, but subsequently fell, with reciprocal changes in CD4+CD45RChigh T cells. There was an increase in CD8+ T cells towards peak disease. The speed of onset of tissue injury suggests that cells other than T cells may be involved in the primary induction of vasculitis, although Th2-like cells may be important in further tissue injury and in B cell activation. The rise in CD8+ and Th1-like cells towards peak disease supports the hypothesis that they are involved in disease regulation.

Animals

Interleukin-4 gene expression in mercury-induced autoimmunity.

Mercuric chloride (HgCl2) induces autoimmunity in Brown Norway (BN) rats, with necrotizing vasculitis in the gut. Circumstantial evidence implicates the Th2 subset of CD4+ T lymphocytes, which produces IL-4. We developed a quantitative polymerase chain reaction (PCR) technique to quantify IL-4 gene expression. A phagemid containing rat IL-4 cDNA was modified to act as the template for a synthetic RNA construct; a known amount of synthetic RNA was added to total RNA from spleen and caecum of BN rats at various times after HgCl2, followed by reverse transcriptase PCR. IL-4 gene expression increased markedly in spleen and caecum after HgCl2. Splenic levels peaked by 10 days at approximately five-times baseline, then returned towards normal as the autoimmune response was spontaneously regulated. Caecal IL-4 expression peaked at 48 h, at which time we observed a previously unreported early phase of tissue injury, with necrotizing vasculitis qualitatively similar to that reported previously in the later phases of the model. These data support a key role for IL-4 in this experimental model of autoimmunity. The quantitative PCR technique can be modified for analysis of other cytokines, allowing further investigation of the role of T cell subsets in this model.

Animals

Cyclosporin A exacerbates mercuric chloride-induced vasculitis in the brown Norway rat.

BACKGROUND: Administration of mercuric chloride (HgCl2) to the Brown Norway (BN) rat induces a necrotizing leukocytoclastic vasculitis (most marked in the gut) and anti-myeloperoxidase (anti-MPO) antibodies. The development of autoimmunity in the BN rat is a T cell-dependent phenomenon, and there is evidence that the induction of autoantibodies and tissue injury is a Th2-driven process. Cyclosporin A (CyA) is an anti-T cell agent with a dose-dependent differential effect on Th cell subsets that can ameliorate or enhance autoimmune responses. In the BN it can suppress HgCl2-induced autoantibody production, but the effect on tissue injury has not been previously examined. EXPERIMENTAL DESIGN: We have studied the effect of CyA given "early" (Days 1-10, concurrently with the HgCl2) or "late" (Days 11-14) on tissue injury and autoantibody response. Serial blood samples were taken for anti-glomerular basement membrane, anti-MPO, and IgE antibody levels. Necropsies were performed on animals killed on Day 15. The presence and extent of vasculitis was scored macroscopically and histologically. Controls were incorporated to assess the effect of vehicle and of CyA alone. RESULTS: CyA given early delayed the rise in anti-MPO and anti-glomerular basement membrane levels and ameliorated tissue injury, whereas CyA given late, although suppressing the rise in anti-MPO and anti-glomerular basement membrane antibodies, caused a marked exacerbation of vasculitis. CONCLUSIONS: The effect of CyA depends on the timing of treatment with respect to HgCl2. Anti-MPO antibodies are not of primary importance in the pathogenesis of tissue injury. The late effect may be due to a direct toxic effect on the endothelium or to loss of a protective T cell subset. These observations have implications for the use of CyA in the treatment of systemic vasculitis in humans.

Animals

Molecular analysis of C3 allotypes in Chinese patients with immunoglobulin A nephropathy.

The third component of complement (C3) exists in two main allotypic forms, C3S and C3F. An increased frequency of the rarer C3F allele has been reported in several autoimmune conditions, including immunoglobulin A nephropathy (IgAN), in white patients. C3F is known to be rare in the Chinese population, but C3 allotypes have not been studied in Chinese patients with IgAN. The molecular basis of the S/F polymorphism has been established recently: a single base change at the DNA level encodes a single amino acid substitution in the protein. A second polymorphism, closely linked to the first, is defined by the monoclonal antibody HAV 4-1, and also is due to a single base change. These polymorphisms therefore can be analyzed at the DNA level. We have used the amplification refractory mutation system, a modification of the polymerase chain reaction, to analyze these two C3 polymorphisms on genomic DNA from 133 Hong Kong Chinese individuals: 54 patients with IgAN and 79 controls. No C3F alleles were present in either group: all individuals were homozygous C3S. Twenty-six patients were also allotyped for the HAV 4-1 polymorphism; all 26 were homozygous HAV 4-1 negative, as would be predicted from the close linkage of this allotype to C3S in other populations. These data indicate that C3F is not a susceptibility allele for IgAN in Hong Kong Chinese individuals, and confirm in a large DNA-based study the rarity of C3F in this population.

Adolescent

Effects of decomplementation with cobra venom factor on experimental vasculitis.

Mercuric chloride (HgCl2) induces autoimmunity in susceptible rat strains, with hyper-IgE, appearance of a number of autoantibodies, and widespread tissue injury, including necrotizing vasculitis in the gut. In the early phase of tissue injury there is granulocyte infiltration; later there is immunoglobulin deposition along basement membranes in vessels. We have analysed the role of complement in this model using cobra venom factor (CVF), which causes decomplementation lasting around 5 days. The characteristic time course when HgCl2 is given over 10 days is that tissue injury and autoantibody levels reach a peak at around day 15 (start of HgCl2 = day 0). We therefore gave CVF either early (day 0), intermediate (day 5) or late (day 10); a fourth group (controls) received HgCl2 but no CVF. At each time point, CVF caused complete decomplementation which lasted for at least 5 days. Serum IgE and autoantibody levels were similar in all four experimental groups. Tissue injury in the 'early' CVF group and in the 'late' CVF group was not significantly different from controls, but in the intermediate group tissue injury was significantly more severe than in controls. These data indicate that the complement system does not play a major role in the induction of autoantibodies by HgCl2, nor in the effector phase of tissue injury. We speculate that the exacerbation of tissue injury by CVF in the group given this agent at an intermediate stage of the model is explained by the presence of products of C3 activation which have proinflammatory effects during the phase of active granulocyte-mediated tissue injury.

Animals

Use of methyl prednisolone and antioxidants in mercuric chloride-induced experimental vasculitis.

The systemic vasculitides are characterized by necrotizing inflammation of blood vessels. Neutrophils are implicated in tissue damage by their presence at the site of injury. They can mediate injury by release of cellular contents including proteinases, cytokines and reactive oxygen species. Antioxidants such as vitamin E and N-acetyl cysteine (NAC) may therefore be predicted to ameliorate oxidative damage in vivo and could be a cheap and non-toxic form of therapy. We examined this hypothesis in an experimental model of vasculitis which has some similarities to human disease, and in which depletion of neutrophils ameliorates tissue injury. Mercuric chloride (HgCl2) treatment induces an autoimmune syndrome and necrotizing leucocytoclastic vasculitis in the Brown Norway (BN) rat; anti-myeloperoxidase (MPO) and anti-glomerular basement (GBM) antibodies are present, and vasculitis is reduced by antimicrobials. Methyl prednisolone given intravenously was effective in reducing tissue injury, demonstrating that the model was responsive to a treatment used in man. Vitamin E and NAC were given as daily injections intraperitoneally to BN rats either before, during or after HgCl2 administration. Serial blood samples were taken for anti-MPO and IgE antibodies, which were assayed by ELISA. Necropsies were performed on animals killed at peak disease. At doses of 50-200 mg/kg per day vitamin E had no beneficial effect on tissue injury, regardless of timing of treatment. NAC at 100 or 200 mg/kg also had no significant protective effect on vasculitis. Autoantibody and IgE levels were not affected by either methyl prednisolone or the antioxidants. The lack of benefit of vitamin E and NAC suggests that oxidative damage, whether generated by neutrophils or other cells, does not play a major role in the pathogenesis of vasculitis, and that antioxidant therapy is unlikely to be of benefit in systemic vasculitis in man.

Acetylcysteine

Molecular analysis of C3 allotypes in patients with systemic vasculitis.

The third component of complement (C3) exists in two main allotypic forms, C3S and C3F, distinguished at the DNA level by a single base change. An increased frequency of the rarer C3F allele has been reported in patients with the autoantibody nephritic factor and in several other autoimmune conditions such as rheumatoid arthritis and IgA nephropathy. Studies of the immunogenetic factors predisposing to the development of systemic vasculitis have produced conflicting results and no major genetic predisposing factors have been identified. We have studied the C3S/F polymorphism in 63 patients with systemic vasculitis using DNA allotyping by the amplification refractory mutation system, a modification of the polymerase chain reaction. The allele frequency in these patients was C3S 0.71, C3F 0.29 (expected C3S 0.8, C3F 0.19; chi-squared = 5.1, P < 0.025), with the average relative risk for the development of systemic vasculitis associated with the presence of a C3F allele being 2.6. Moreover, there was a marked excess of C3FF homozygotes (11/63, [17.5%], versus 4% expected: chi-squared = 9.5, p < 0.01). The average relative risk for the development of systemic vasculitis in C3F homozygotes was 5.1, indicating a gene dosage effect. These data indicate that the C3F allele is associated with a predisposition to the development of systemic vasculitis and that C3F homozygotes are at particularly high risk. This association is the strongest genetic factor reported so far for this group of diseases.

Alleles

T and B cell responses to neutrophil cytoplasmic antigens in systemic vasculitis.

The systemic vasculitides (SV) are characterized by the presence of autoantibodies to neutrophil cytoplasmic antigens (ANCA). The role of T cells in SV is uncertain. We studied human and murine T cell responses to human neutrophil cytoplasmic antigens in vitro. T cells from mice immunized with the neutrophil extract showed dose-dependent antigen-specific proliferation, restricted by the MHC class II E molecule. Myeloperoxidase (MPO) was not an important target antigen for murine T cells. Peripheral blood lymphocytes (PBLs) were obtained from 36 patients with SV, 31 before the start of immunosuppressive therapy, and from 11 healthy controls. T cell responses to the neutrophil extract in vitro did not differ between patients and controls: there were only low levels of antigen-specific proliferation, and this could not be amplified by in vitro selection. In 3 patients and 2 normals, PBLs were also tested after the depletion of CD8+ cells; this did not unmask T cell reactivity to neutrophil extract. The lack of demonstrable T cell reactivity to this antigen preparation may indicate that T cells do not play an important effector role in these diseases. A solid-phase spot ELISA was adapted to demonstrate autoantibody-producing B cells in vitro. Low numbers of ANCA-producing B cells could be demonstrated in the majority of patients. B cells producing antibody to MPO could be demonstrated in most patients and in three laboratory staff, but not in normals from outside the laboratory. In 2 patients, sequential B cell spot ELISAs were performed during the introduction of therapy, and autoantibody-producing B cells rapidly decreased in number. This assay may therefore be useful in monitoring the effects of treatment at the cellular level.

Animals

Autoantibodies to myeloperoxidase in brown Norway rats treated with mercuric chloride.

BACKGROUND: Mercuric chloride (HgCl2) induces an autoimmune syndrome in Brown Norway (BN) rats characterized by the presence of a number of autoantibodies, including antibodies to glomerular basement membrane. Tissue injury has previously been reported to be rare in this model, but in the accompanying paper we describe changes in a number of organs including a necrotizing leucocytoclastic vasculitis in the gut. Myeloperoxidase (MPO) is one of the target antigens for anti-neutrophil cytoplasm antibodies, that are present in the majority of patients with the human autoimmune disease systemic vasculitis and have been implicated in pathogenesis. There is at present, no animal model for anti-neutrophil cytoplasm antibody positive systemic vasculitis. EXPERIMENTAL DESIGN: Ten BN rats were given five injections of HgCl2, each of 1 mg/kg, over 10 days. Sequential serum samples were tested for autoantibodies to MPO using solid phase assays, indirect immunofluorescence on normal rat neutrophils, and Western blot analysis. The specificity of these antibodies in the solid phase assay was confirmed by inhibition studies with purified antigen, and by testing binding to uncoated plates. Sera from control animals treated with saline were also tested. RESULTS: BN rats given HgCl2 developed antibodies to MPO, which in Western blots bound to similar determinants to those bound by human anti-MPO antibodies. The anti-MPO antibodies resolved spontaneously, with a time course similar to that of the anti-glomerular basement membrane antibodies, but there was no correlation between the two antibody responses in individual animals. There was no anti-MPO activity in sera taken before HgCl2 was given, nor in sera from saline-treated controls. CONCLUSIONS: BN rats treated with HgCl2 develop anti-MPO antibodies. Together with the description in the accompanying paper of necrotizing vasculitis in these animals, these observations suggest that HgCl2-induced autoimmunity in the BN rat may provide a useful model of anti-neutrophil cytoplasm antibody positive systemic vasculitis.

Animals

Mercuric chloride-treated brown Norway rats develop widespread tissue injury including necrotizing vasculitis.

BACKGROUND: Mercuric chloride (HgCl2) induces a T cell-dependent autoimmune syndrome in Brown Norway (BN) rats, characterized by polyclonal B cell activation and circulating autoreactive T cells. A number of autoantibodies are produced, including antibodies to glomerular basement membrane, and there are circulating immune complexes. However, histologic evidence of tissue injury in this model has previously been reported to be rare. EXPERIMENTAL DESIGN: Six BN rats were given five injections of HgCl2, each of 1 mg/kg, over 10 days. Controls were four BN rats given equal volumes of saline and 10 Lewis rats given the same amount of HgCl2. Blood samples were taken thrice weekly. Animals were killed at various stages, necropsies performed, and organs histologically examined. The effect of pretreatment with broad spectrum antimicrobial drugs was examined by comparing two further groups of six BN rats: one group was pretreated with tylosin, ivermectin, and metronidazole before HgCl2 was given, and the other group received no pre-treatment. RESULTS: HgCl2-treated BN rats developed inflammation and ulceration of the skin which was most marked at mucocutaneous junctions. Macroscopic examination of internal organs showed hepatomegaly and gross haemorrhagic lesions in the wall of the gut, most marked in the duodenum and caecum. Microscopically, the skin lesions were characterized by a subepidermal mononuclear cell infiltrate with occasional hair shaft necrosis. In the liver there was a periportal mononuclear cell infiltrate, and in the gut there was intense submucosal inflammation and a leucocytoclastic vasculitis accompanied in places by mucosal ulceration. Lewis rats (which are not prone to mercury-induced autoimmunity) showed no such changes after receiving HgCl2, nor did control BN rats given saline. BN rats pretreated with broad spectrum antimicrobial agents and then given HgCl2 showed milder histologic abnormalities, although antimicrobial treatment did not affect the antiglomerular basement membrane autoantibody response. CONCLUSIONS: We have identified a syndrome induced by mercuric chloride in BN rats in which there is evidence of tissue injury in many organs, with some features in common with graft-versus-host disease. There is also necrotizing leucocytoclastic vasculitis affecting the gut, and the importance of this is enhanced by the description in the accompanying paper of autoantibodies similar to those found in human systemic vasculitis. Our observations strengthen the analogies between this model and human autoimmune disease.

Animals