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P W Mathieson

Publications and source records attributed to P W Mathieson.

At least 37 records · Page 2Linked to original sources

Low-dose mercuric chloride induces resistance in brown norway rats to further mercuric chloride by up-regulation of interferon-gamma.

Mercuric chloride induces autoimmunity in Brown Norway rats with polyclonal B-cell activation, hyper-IgE and multiple autoantibodies. Pre-treatment with low-dose HgCl2 (one-tenth of the standard dose) induces resistance to later full-dose HgCl2; we have studied the mechanism of this resistance. Brown Norway rats given low-dose HgCl2 showed only a modest increase in serum IgE level, three logs lower than rats given standard-dose HgCl2, and no up-regulation of splenic interleukin (IL)-4 mRNA. There was up-regulation of splenic interferon (IFN)-gamma gene expression and a progressive rise in serum IFN-gamma. Neither IL-12 nor IL-18 were induced, but there was up-regulation of IL-12 receptor beta2-chain (IL-12Rbeta2) expression. IL-10 and transforming growth factor (TGF)-beta expression did not change. Serum IgE and splenic IL-4 mRNA expression remained static when these rats were rechallenged, confirming resistance. Thereafter IFN-gamma expression gradually fell, after which IL-4 expression and serum IgE rose slightly. Our observations suggest that low-dose HgCl2 confers protection in Brown Norway rats to further HgCl2 by up-regulation of IFN-gamma, associated with enhanced IL-12Rbeta2 expression. The immunological response to HgCl2 in susceptible rat strains is more complex than previously appreciated and is dose dependent, with low doses inducing a T helper '(Th)1' type of response in contrast to the 'Th2' type response associated with standard doses.

Animals↗

The spouse as a kidney donor: ethically sound?

A shortage of cadaver donor organs requires transplant units to examine all possible alternatives. Transplantation from living donors accounts for only approximately 10% of kidney transplants in the UK. Recent studies have shown that the results of kidney transplantation between spouses are at least as good as those of well-matched cadaver organs, but very few transplants of this type have been performed in this country so far. As part of the assessment process, the proposed donor and recipient are required to provide written statements about the issues. We reproduce here the personal statements made by one of our patients and his wife: we believe that the statements support our contention that spousal transplantation is ethically justifiable and should be more widely available. We report our early experience in Bristol with seven kidney transplants from spousal donors and we encourage other renal units in this country and elsewhere to consider this method of improving the prospects of kidney transplantation for their patients.

Adult↗

Interleukin-4 and interleukin-4 receptor polymorphisms in minimal change nephropathy.

Minimal change nephropathy (MCN) is an important cause of nephrotic syndrome, especially in children, that is strongly associated with atopy and IgE production. The immunogenetics of MCN are poorly understood. Interleukin-4 (IL-4) is the critical cytokine involved in the development of atopy. Polymorphic regions in the genes encoding IL-4 itself and the IL-4 receptor have been demonstrated that may predispose to increased activity. We have analysed these polymorphisms in 149 patients with MCN and 73 controls to test the hypothesis that these loci are involved in genetic predisposition to MCN. In our populations there were no polymorphisms in the IL-4 promoter. We did confirm allelic variation in a dinucleotide repeat in the second intron of the IL-4 gene, but there was no significant difference between allele distributions in MCN and controls. Similarly, allele frequencies for the IL-4 receptor alpha chain polymorphism were similar in patients and controls. Genetic loci which are believed to influence IL-4 responsiveness and to predispose to atopy do not appear to be associated with susceptibility to MCN.

Adolescent↗

Heterogeneous vascular endothelial growth factor (VEGF) isoform mRNA and receptor mRNA expression in human glomeruli, and the identification of VEGF148 mRNA, a novel truncated splice variant.

Vascular endothelial growth factor (VEGF) mediates increased vascular permeability and endothelial mitogenesis, and may orchestrate normal glomerular permselectivity and proteinuria. Distinct isoforms result from differential gene splicing. VEGF binds to two cell surface tyrosine-kinase receptors, KDR (kinase domain region) and Flt-1 (fms-like tyrosine kinase-1). The latter also exists in a soluble form (sFlt), which is inhibitory. We have studied patterns of VEGF-isoform and VEGF-receptor expression in isolated single normal human glomeruli. mRNA from 190 glomeruli (from 20 individuals) was harvested on to magnetic beads, and nested reverse transcription-PCR was performed using primers for the VEGF isoforms and VEGF receptors. Simultaneous nested reverse transcription-PCR for CD45 was conducted in order to exclude leucocyte contamination. Unexpected products were isolated, cloned and sequenced. Multiple patterns of glomerular VEGF mRNA isoform expression were identified. Most frequently (58%), all three common forms were expressed. VEGF(189) (i.e. 189-amino-acid form of VEGF) was expressed in 63%, VEGF(165) in 85% and VEGF(121) in 84% of glomeruli. Two unexpected PCR products were also identified: 18% of glomeruli expressed VEGF(145), and 27% of glomeruli expressed a new truncated VEGF splice variant, VEGF(148), lacking exon 6, the terminal part of exon 7 and exon 8. Multiple patterns of VEGF-receptor expression were also identified, the most common being expression of all three isoforms (28%). Overall, KDR was seen in 59% of glomeruli, Flt-1 in 45% and sFlt in 57%. Thus the expression of VEGF within normal glomeruli is complex and variable, with inter- and intra-individual variation. Furthermore, sFlt appears to be the co-dominant form of VEGF receptor expressed within glomeruli, suggesting that, in healthy individuals, a degree of VEGF autoregulation is the norm. The physiological importance of VEGF(148) remains to be confirmed.

Aged↗

Is complement a target for therapy in renal disease?

Complement deposition in the injured kidney is common, especially in glomerulonephritis. The precise role of the complement system in the mediation of tissue injury in the kidney has been defined in recent years, and this has assumed extra importance with the recent development of specific forms of therapy directed at the complement pathway. As well as the induction of cell lysis, complement has many subtle effects on cell biology, particularly on endothelial cells. Complement components are produced locally in the kidney. Detailed studies of certain rare forms of nephritis have provided evidence that complement activation can directly cause tissue injury. Appreciation of the importance of complement in hyperacute rejection of xenotransplants has given new impetus to the development of complement inhibitors. A narrative review is provided, with a brief overview of the complement pathway and its regulatory mechanisms, mechanisms of complement-induced tissue injury, local complement production, and the renal consequences of complement dysregulation. Currently available forms of therapy aimed at the complement system are reviewed, and possible future therapeutic strategies are suggested. The complement system plays a direct causal role in tissue injury in certain forms of renal disease. Specific forms of therapy are becoming available that can selectively interrupt complement activation or promote its regulation. Much of the drive for the development of these therapies comes from the field of xenotransplantation, but these forms of therapy should also be tested in various primary renal diseases.

Animals↗

Serum IgE concentration and other immune manifestations of treatment with gold salts are linked to the MHC and IL4 regions in the rat.

A subset of patients with rheumatoid arthritis occasionally develops skin reactions and glomerulonephritis and exhibits an increase in serum IgE concentration when treated with gold salts. Brown-Norway (BN) rats injected with aurothiopropanolsulfonate (ATPS) also manifest an autoimmune glomerulonephritis and increased serum IgE concentration, whereas Lewis (LEW) rats are resistant to complications. Here, we show linkage between responses to ATPS in a (BN x LEW) F2 cohort and the major histocompatibility complex (RT1) on rat chromosome 20 and between markers in the region of IL4 and other candidate genes on rat chromosome 10. Recently, human serum IgE concentration has been reported to be linked to the IL-4 region. Taken together, these findings raise the possibility that homologous genes could be implicated in ATPS manifestations in the rat and in the regulation of IgE levels in the human.

Animals↗

Th1/Th2 cytokine gene expression after mercuric chloride in susceptible and resistant rat strains.

Mercuric chloride (HgCl2) has contrasting effects on different rat strains: susceptible strains, e.g. Brown Norway (BN) develop polyclonal B cell activation, multiple autoantibodies and widespread tissue injury. Lewis (LEW) rats are resistant: no autoimmune response occurs after HgCl2; instead, there is immunosuppression. We have previously shown, by fully quantitative polymerase chain reaction (PCR), up-regulation of interleukin-4 (IL-4) gene expression in HgCl2-treated BN rats, implicating Th2 cells in the autoimmune syndrome. Involvement of the reciprocal Th1 subset, producing interferon-gamma (IFN-gamma), in resistance of LEW rats to HgCl2 has been suggested. We now report extensive analysis of Th1 and Th2 cytokine gene expression in spleen and lymph nodes of susceptible (BN) and resistant (LEW) rats after HgCl2. IL-4 and IFN-gamma were analyzed by quantitative PCR, other cytokines were assessed using semiquantitative PCR: the relative merits of these two techniques are discussed. We show pronounced up-regulation of IL-4 and more modest up-regulation of IFN-gamma in BN rats, but no up-regulation of either in LEW rats. Baseline levels of IFN-gamma were higher in Lew rats. Semiquantitative PCR showed increased expression of IL-2, IL-6 and IL-10 in BN; in LEW rats only IL-10 was increased. There was no marked change in IL-5, IL-13 or transforming growth factor-beta (TGF-beta) in either strain. These data further support the key role of IL-4 in HgCl2-induced autoimmunity, and suggest that failure of up-regulation of IL-4, together with higher baseline IFN-gamma expression, accounts for resistance of LEW rats to HgCl2. However, neither IFN-gamma nor TGF-beta can be implicated in HgCl2-induced immunosuppression in the LEW rat in vivo: our data suggest a role for IL-10 in this phenomenon.

Animals↗

Cloning of a partial cDNA for rat interleukin-12 (IL-12) and analysis of IL-12 expression in vivo.

Experimental models of autoimmunity in the rat may feature selective activation of either the Th1 or Th2 subset of helper T cells. Interleukin-12 (IL-12) is a key cytokine in the development of Th1 responses. In order to study IL-12 in the rat we used polymerase chain reaction (PCR) primers based on murine IL-12 to amplify a partial cDNA from rat tissue. The product was cloned and sequenced: it shows 94% nucleotide identity with the murine gene and 94% identity of predicted amino acid sequence. Primers based on the rat IL-12 sequence were used to analyse IL-12 expression in vivo using semi-quantitative PCR. We studied RNA from lymphoid tissues of two rat strains which differ in their response to mercuric chloride (HgCl2): Brown Norway (BN) rats develop autoimmunity with a predominant Th2 response; Lewis rats are resistant. Interleukin-12 expression was higher in Lewis than BN, and higher in spleen than lymph node. After HgCl2, IL-12 expression increased in BN towards the time when the autoimmune response autoregulates. Variation in baseline levels of IL-12 expression may account for the Th2 predisposition of BN rats compared to Lewis rats; IL-12 may play a role in the autoregulation of the Th2 response induced by HgCl2.

Amino Acid Sequence↗

Role of neutrophils in the pathogenesis of experimental vasculitis.

In the Brown-Norway rat, mercuric chloride (HgCl2) induces an autoimmune syndrome characterized by high IgE levels. There is widespread necrotizing leukocytoclastic vasculitis involving lung, skin, mucous membranes, pancreas, liver, and gut, with tissue injury being most marked in the cecum. As in systemic vasculitis in man, there are neutrophils at the site of tissue injury and the animals develop anti-neutrophil cytoplasmic antibodies, which in the Brown-Norway rat are directed against myeloperoxidase. To determine whether neutrophils are involved in the pathogenesis of the vasculitis, we have used a monoclonal antibody that was reported to deplete neutrophils in other rat strains. Rats treated with HgCl2 received antibody by intravenous injection at various time points. Serial blood samples were taken for neutrophil counts and to assay for anti-myeloperoxidase and IgE antibodies. The guts of animals killed after antibody therapy were scored for vasculitic changes and neutrophils infiltrate. RP3 (but not the control antibody MAC6) was shown to bind to Brown-Norway rat neutrophils and to block glycogen-induced influx of neutrophils into the peritoneum. When given at peak disease, RP3 caused a dose-dependent reduction in tissue injury with a marked reduction in circulating blood neutrophil numbers and in tissue neutrophil infiltrate. RP3 treatment did not affect the rise in titer of IgE and anti-myeloperoxidase antibodies. The data presented demonstrate that in this model neutrophils are necessary for the induction of vasculitis and that the degree of vasculitis correlates with neutrophil number. To our knowledge, this study is the first to provide direct evidence for a role for neutrophils in vasculitis. We suggest that antibodies directed against neutrophils, especially if they deplete neutrophils, may be useful in the therapy of vasculitis in man.

Animals↗

Molecular analysis of C3 allotypes related to transplant outcome in human renal allografts.

The third component of complement (C3) exists in two main allotypic forms, C3S and C3F, which can be distinguished at the molecular level using a variation of the polymerase chain reaction. An increased frequency of the C3F allele has been noted in a number of autoimmune and inflammatory conditions affecting the kidney, including systemic vasculitis, IgA nephropathy, and type II mesangiocapillary nephritis. Recently, in an unrelated study, we found (with small numbers) an increased incidence of graft loss associated with the presence of the C3F allele. To further assess this, we analyzed the S/F polymorphism in 183 donor-recipient pairs of patients undergoing renal transplantation. Forty-one of 183 grafts were lost, but graft loss was not associated with the C3F allele over 14-month follow-up. However, the presence of the C3F allele predicted an increased risk of graft dysfunction (defined as serum creatinine > 150 mumol/L): 61/105 versus 36/78, with a relative risk of 1.4 (P < 0.05). The C3F allele predisposed toward graft dysfunction when present in either donor or recipient. The presence of two C3F alleles gave a relative risk for graft dysfunction of 1.8, suggesting a dose-dependent effect, although numbers were small. The presence of the C3F allele was not significantly correlated with the number of rejection episodes, serum creatinine, or duration of primary nonfunction. These findings suggest that C3F may be a susceptibility allele for allograft injury. Possible mechanisms for this association are discussed.

Alleles↗

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↗