Search PubMed⌕ Search

Biomedical subjects

C D Pusey

Publications and source records attributed to C D Pusey.

At least 55 records · Page 3Linked to original sources

Mapping B cell epitopes in Goodpasture's disease.

The target antigen of the pathogenic autoantibodies in Goodpasture's disease is the noncollagenous domain of the alpha 3 chain of type IV collagen. A panel of membrane-bound peptides was used to identify antibody-binding regions within the protein, and the significance of the binding by inhibition studies using soluble peptides, and by a structural analysis of the antigen, was confirmed. A total of 117 overlapping 12-mer peptides spanning the entire antigen was simultaneously synthesized as individual spots on a cellulose membrane. All nine patients' sera bound to the membrane, with a conserved pattern of peptides recognized by all sera. Inhibition studies were performed using a panel of overlapping 20-mer peptides, also spanning the entire antigen. Peptides from the regions that bound IgG were able to inhibit the binding of autoantibodies to native antigen. Predictions of the secondary structure of the noncollagenous domain of the alpha 3 chain of type IV collagen were performed by a conventional hydropathy plot and by multiple alignment of homologous alpha chains of type IV collagen and comparison with a structural data base. The core peptides binding and inhibiting Goodpasture's antibodies were predicted to be surface exposed and antigenic. Thus, the conformational epitope(s) of the Goodpasture antigen can be mapped using linear peptides.

Amino Acid Sequence↗

HLA genes in ANCA-associated vasculitides.

Primary systemic vasculitis affecting smaller vessels is usually associated with antineutrophil cytoplasmic antibodies (ANCA). The ANCA-associated vasculitides include Wegener's granulomatosis, microscopic polyangiitis, Churg Strauss syndrome and renal limited vasculitis. There is considerable evidence that genetic factors influence susceptibility to ANCA-associated vasculitis, including reports of familial cases, differences in racial incidence, and associations with polymorphic variants of proteins such as alpha-1-antitrypsin. There is mounting evidence, from clinical and in vitro studies, that ANCA may be pathogenic. However, it is also clear that autoreactive T cells are likely to be involved, by providing T cell help for ANCA production and possibly by producing cell-mediated immune injury. Indeed, T cells from patients with vasculitis have been shown to proliferate in vitro in response to the target antigens of ANCA - proteinase 3 and myeloperoxidase. In most T-cell-dependent autoimmune diseases there are clear positive and/or negative associations with HLA genes. These genes are encoded in the major histocompatibility complex (MHC) and their products, the HLA molecules, play a central role in the generation of T cell responses. For this reason, many investigators have looked for HLA associations in ANCA-associated vasculitides. Problems in analysing these reports include the definition of the diseases concerned, and the varying methodology of HLA typing. A number of positive and negative associations with HLA genes have been reported in systemic vasculitis. However, it is striking that no consistent association has been identified in different series. In recent studies there have been positive associations with HLA DR1, DQw7 or DR8, negative associations with DR3 or DR13, or no significant associations. This lack of an obvious and consistent HLA association is extremely interesting, and suggests that the T cell response in vasculitis may be very heterogeneous, or that a genuine strong association has yet to be identified. Further investigation of this problem is clearly needed to improve our understanding of the pathogenesis of ANCA-associated vasculitides.

Antibodies, Antineutrophil Cytoplasmic↗

Development and standardization of solid phase assays for the detection of anti-neutrophil cytoplasmic antibodies (ANCA). A report on the second phase of an international cooperative study on the standardization of ANCA assays.

Anti-neutrophil cytoplasmic antibodies (ANCA) are diagnostic markers for systemic vasculitis. They are classically detected by an indirect immunofluorescence test using normal donor neutrophils as substrate. This assay lacks antigenic specificity and is not quantitative. The 'EC/BCR Project for ANCA Assay Standardization' is an international collaboration study with the aim to develop and standardize solid phase assays for ANCA detection. In this part of the study the isolation and characterization of proteinase-3 and myeloperoxidase, the two main target molecules for ANCA, and the development and standardization of ELISAs with these antigens are described. Six laboratories successfully isolated purified proteinase-3 preparations that could be used. Three of these preparations, together with one myeloperoxidase preparation, were subsequently used for ANCA testing by ELISA. The ELISA technique was standardized in two rounds of testing in the 14 participating laboratories. The coefficient of variation of these new assays decreased from values of approx. 50% in the first round to approx. 20% in the second round. We conclude that purified proteinase-3 and myeloperoxidase can be used in standardized ELISAs for ANCA detection. Whether such procedures offer advantages over the IIF test will be determined in a prospective clinical study.

Antibodies, Antineutrophil Cytoplasmic↗

Recurrent Goodpasture's disease.

Goodpasture's disease is usually a monophasic illness that can be successfully treated in a large proportion of patients. Recurrent disease is rare. We report a case of Goodpasture's disease in which recurrent pulmonary hemorrhage and glomerulonephritis were observed over 12 years. Antiglomerular basement membrane autoantibody was monitored throughout this period, and we demonstrate the close association of antibody levels with disease recurrence.

Adult↗

Selective renal transplantation in primary hyperoxaluria type 1.

Primary hyperoxaluria type I (PHI) is a cause of end-stage renal disease in young people. It is caused by deficient activity of hepatic peroxisomal alanine:glyoxylate aminotransferase (AGT), which results in hyperoxalemia and hyperoxaluria. The consequent urolithiasis and nephrocalcinosis result in renal impairment, with further reduction in oxalate excretion and eventual systemic oxalosis. Historically, renal transplantation has yielded very poor results in these patients because of recurrent oxalosis of the graft. Within the last 10 years, combined hepatorenal transplantation has been successfully applied, simultaneously correcting the metabolic lesion in the liver and replacing the damaged kidneys. It has, however, become apparent that medical therapy with vigorous hydration, inhibitors of stone formation and pyridoxine (AGT co-factor), may be successful at delaying, and occasionally in preventing, urolithiasis in some hyperoxaluric patients, particularly those whose hyperoxaluria is reduced by pyridoxine. This, together with intensive perioperative management and modern surgical methods of stone management such as lithotripsy, laser or ultrasound stone fragmentation, and percutaneous nephrolithotomy, means that renal transplantation alone may be feasible in selected patients. We describe a patient with PHI with clinical and biochemical evidence of significant residual AGT activity who underwent a successful live-related renal transplantation with excellent renal function and no stone recurrence 1 year posttransplantation. The appropriate transplantation strategies for these complex patients are discussed and include isolated renal transplantation for those patients who are without significant systemic oxalosis and have evidence of residual AGT activity.

Adult↗

Relationship between granulocyte activation, pulmonary granulocyte kinetics and alveolar permeability in extrapulmonary inflammatory disease.

1. The aim of the study was to examine the relationship between granulocyte activation, pulmonary intravascular granulocyte transit, pulmonary extravascular granulocyte migration and lung injury in patients with systemic conditions (bone marrow transplant recipients, inflammatory bowel disease and systemic vasculitis) in which abnormalities of pulmonary granulocyte traffic have previously been reported. 2. A double 111In-99mTc granulocyte labelling technique was used for quantification of granulocyte kinetics in 23 patients, of whom five were control patients. The pulmonary vascular granulocyte pool was measured from dynamic data centred on the 99mTc signal and expressed as a percentage of the total blood granulocyte pool. Granulocyte migration was quantified on 24 h images using the 111In signal. Granulocyte activation was measured as the percentage of cells showing a change in shape. The clearance rate of an inhaled aerosol of 99mTc-diethylenetriaminepenta-acetic acid (DTPA) was used as a marker of lung injury. 3. Pulmonary granulocyte pool, migration, activation and aerosol clearance, although highly variable in the patient groups, were, in general, elevated compared with the controls. 4. Granulocyte activation correlated with pulmonary granulocyte pool (Rs = 0.72, n = 22, P < 0.01), while the t1/2 of DTPA clearance correlated with migration (Rs = -0.84, n = 17, P < 0.01). Fifteen patients had an expanded pulmonary granulocyte pool, of whom six with no evidence of migration, had a normal DTPA clearance, while nine, who had an abnormal migration signal, had an accelerated DTPA clearance. The pulmonary granulocyte pool in these nine was significantly higher than in the six without a migration signal. 5. Activation of granulocytes results in delayed transit through the lung vasculature. With increasing margination, granulocytes migrate into the lung interstitium and injure the lung. An increased intravascular pool does not by itself lead to lung injury.

Adult↗

T cell responses to myeloperoxidase (MPO) and proteinase 3 (PR3) in patients with systemic vasculitis.

T cell-mediated immune responses are likely to be important in the pathogenesis of systemic vasculitis. However, identifying the T cells involved has proved difficult, and there are conflicting reports regarding T cell proliferation in response to different autoantigens. Perinuclear (P) and cytoplasmic (C) anti-neutrophil cytoplasmic antibodies (ANCA) are closely associated with systemic vasculitis, and are generally specific for MPO or PR3, respectively. We studied the proliferative responses to MPO and PR3 of peripheral blood mononuclear cells from patients with P-ANCA or C-ANCA specific for these antigens by ELISA. These responses were compared with those of normal controls, and of disease controls with P- or C-ANCA not specific for MPO or PR3. The patient group as a whole showed significant T cell proliferation in response to the autoantigens compared with controls (P = 0.005). Cells from nine of 13 P-ANCA-positive, anti-MPO-positive patients proliferated in response to MPO, compared with five of 16 controls (P = 0.04). Cells from five of eight C-ANCA-positive, anti-PR3-positive patients proliferated in response to PR3, compared with two of 11 controls (P = 0.05). These experiments demonstrate that patients with P-ANCA or C-ANCA possess T cells which respond to MPO or PR3, respectively. As in other autoimmune diseases, responses to both antigens were also seen in a proportion of healthy controls. Further analysis of these responses will be important in understanding the pathogenesis of systemic vasculitis and in designing specific immunotherapy.

Autoantibodies↗

Epitope analysis of the Goodpasture antigen using a resonant mirror biosensor.

We have used a new technique for studying molecular interactions-a resonant mirror biosensor-to identify B cell epitopes within the Goodpasture antigen, which has recently been identified as the non-collagenous domain of the alpha 3-chain of type IV collagen (alpha 3(IV)NC1). Recombinant antigen (r-alpha 3) was immobilized onto the sensing surface of a sample cuvette, and the binding of patients' autoantibodies or a MoAb to the Goodpasture antigen was followed in real time. All patients' sera bound r-alpha 3 in this system, while control sera did not bind. A MoAb inhibited the binding of all patients' autoantibodies to r-alpha 3, from 27% to 90% (mean inhibition 60%), and patients' sera cross-inhibited the binding of each other to the antigen. Binding was inhibited by pre-incubation of autoantibody with both native sheep alpha 3(IV)NC1 and purified human alpha 3(IV)NC1 monomers. Inhibition experiments using soluble overlapping peptides from human alpha 3(IV)NC1 identified putative B cell epitopes. These results suggest that there is a major immunodominant epitope on the Goodpasture antigen, and that there is very limited heterogeneity in the autoantibody response in Goodpasture's disease. The resonant mirror biosensor can be successfully used to monitor antibody-antigen binding using polyclonal sera, and to map epitopes on autoantigens.

Amino Acid Sequence↗

Classification, pathogenesis, and treatment of systemic vasculitis.

Patients with systemic vasculitis (SV), especially Wegener's granulomatosis and microscopic polyangiitis, regularly present with renal involvement. Although considered a rare disease, either the incidence of SV is increasing or it is being increasingly recognized. Accurate classification systems are required to allow comparison of data from different groups investigating and treating these patients. Systemic vasculitis is known to be an autoimmune disease, but the mechanisms of pathogenesis have not been established, despite many studies on this topic in recent years. Most of this work has been done in vitro, although development of animal models is underway. Patient and renal survival have improved with aggressive immunosuppressive treatment, but morbidity is high and controversies remain in establishing the most effective regimens with minimum adverse effects. In this review we discuss the classification of SV, review the current knowledge of pathogenic mechanisms, and consider the relative merits of different treatment protocols.

Animals↗

A single-chain Fv reactive with the Goodpasture antigen.

Goodpasture's disease is defined by the presence of autoantibodies to the glomerular basement membrane and characterized clinically by rapidly progressive glomerulonephritis and pulmonary hemorrhage. P1, a murine monoclonal antibody to the Goodpasture antigen (the noncollagenous domain of the alpha 3 chain of type IV collagen, alpha 3(IV)NC1), has been a valuable reagent in investigating the pathogenesis of this disorder. The purpose of this study was to generate and characterize a recombinant form of P1 as a single-chain Fv (scFv). First strand cDNA was made from RNA extracted from the P1 hybridoma cell line, and DNA encoding the antibody light and heavy chain variable domains was amplified by polymerase chain reaction, using universal oligonucleotides. The purified products were ligated sequentially into an expression plasmid separated by a sequence encoding a 15 amino acid flexible oligopeptide linker. The resulting scFv was expressed in E. coli. Functional scFv, designated HBR-3, was obtained by denaturing and refolding the expressed product. HBR-3 was shown by ELISA, immunoblotting, and immunohistologic techniques, to have the same specificity for alpha 3(IV)NC1 as P1 and autoantibodies from patients with Goodpasture's disease. HBR-3 and P1 were shown to have similar affinity for their mutual ligand. On sections of normal human kidney, the scFv bound only to glomerular basement membrane and distal tubular basement membrane. It did not bind to the glomerular basement membrane of patients with Alport's syndrome, in whom the Goodpasture antigen is often not expressed in an antigenic form. We have, therefore, generated a scFv which reproduces the specific binding properties of the parent monoclonal antibody, P1. The potential of HBR-3 as a diagnostic reagent in Alport's syndrome has been demonstrated. The development of this recombinant molecule should permit new approaches to the investigation of Goodpasture's disease.

Amino Acid Sequence↗

C-antineutrophil cytoplasmic antibody positivity in vasculitis patients is associated with the Z allele of alpha-1-antitrypsin, and P-antineutrophil cytoplasmic antibody positivity with the S allele.

BACKGROUND: Antineutrophil cytoplasmic antibodies (ANCA) in vasculitis have either cANCA or pANCA patterns as defined by immunofluorescence. The target autoantigen of cANCA is usually proteinase 3 (PR3), whereas that of pANCA is usually myeloperoxidase (MPO). Alpha-1-antitrypsin (alpha 1AT) is the major physiological inhibitor of PR3, while MPO is an inhibitor of alpha 1AT. METHODS: To determine whether there was an association between ANCA positive vasculitis, ANCA pattern, and alpha 1AT deficiency alleles, we studied alpha 1AT phenotypes of 99 cANCA and 99 pANCA positive vasculitis patients by isoelectric focusing and immunoblotting, and compared them with 2310 controls from the same geographical area. RESULTS: C-ANCA patients showed an increased frequency of the Z allele (0.055 versus 0.018 in controls), conferring a relative risk of 3. They showed no increase in frequency of the S allele. P-ANCA patients showed an increased frequency of the S allele (0.091 versus 0.046 in controls) conferring a relative risk of 2. The frequency of the Z allele also appeared to be increased (0.030 versus 0.018 in controls), but this was not statistically significant. CONCLUSIONS: These findings demonstrate an association between ANCA-positive vasculitis and deficiency phenotypes of alpha 1AT, and suggest a role for alpha 1AT in the development of systemic vasculitis.

Alleles↗

Sagittal sinus thrombosis in adult minimal change nephrotic syndrome.

Nephrotic syndrome causes a hypercoagulable state, leading to both venous and arterial thrombosis. The mechanisms are as yet unclear, but numerous alterations in coagulant and anti-coagulant factors have been reported [Llach et al. 1985, Harris and Ismail 1994]. The most common clinical features in adults are renal vein thrombosis, femoral vein thrombosis and pulmonary embolism, although thrombosis in numerous other arterial and venous sites has been described [Cameron 1984, Llach et al. 1985]. Intracranial thrombosis is rare, although in adult nephrotic syndrome arterial thrombosis is well recognized [Fuh et al. 1991]. We report a patient with minimal change nephrotic syndrome who developed venous sinus thrombosis detected by magnetic resonance (MR) scanning.

Adult↗

Use of proteinase 3 purified by reverse phase HPLC to detect autoantibodies in systemic vasculitis.

The vasculitis autoantigen proteinase 3 was purified from neutrophil primary granules using reverse phase high performance liquid chromatography. It was shown to be free of important contaminants, was enzymatically active and was antigenic to sera containing antineutrophil cytoplasmic antibodies with a cytoplasmic pattern (C-ANCA) by indirect immunofluorescence. Development of an enzyme-linked immunosorbent assay showed that this preparation could be used to detect autoantibodies in Wegener's granulomatosis and microscopic polyangiitis. Assays based on reverse phase HPLC-purified proteinase 3 will be valuable in diagnosis and monitoring of treatment, and should increase our understanding of the autoimmune response in primary systemic vasculitis.

Amino Acid Sequence↗

Relationship between disease activity and anti-neutrophil cytoplasmic antibody concentration in long-term management of systemic vasculitis.

Autoantibodies directed against neutrophil cytoplasmic antigens (ANCA) are valuable in the diagnosis of primary systemic vasculitis, and immunofluorescence studies suggest that changes in ANCA concentration reflect changes in disease activity. We used enzyme-linked immunosorbent assays to examine retrospectively the relationship between ANCA concentration and disease activity in 56 patients with systemic vasculitis. We included patients with Wegener's granulomatosis, microscopic polyangiitis, idiopathic rapidly progressive glomerulonephritis, and Churg-Strauss syndrome, and examined separately the initial treatment period (mean length of follow-up, 26 months) and long-term management (mean length of follow-up, 59 months). Levels of ANCA decreased during induction therapy with prednisolone and cyclophosphamide, with or without plasma exchange. During follow-up, 27 relapses were documented in 20 patients (10 with Wegener's granulomatosis, nine with microscopic polyangiitis, and one with Churg-Strauss syndrome), occurring between 4 and 183 months (mean, 62 months) after initial presentation. Patients in whom ANCA were detectable 1 year or more after treatment were at particular risk of clinical relapse. Proteinase 3-directed ANCA appeared to be associated with a higher rate of relapse (44% of patients relapsed) than myeloperoxidase-directed ANCA (13% of patients relapsed). Twenty-four of the 27 relapses occurred in the presence of detectable ANCA; in 21 of these, ANCA concentration was high or rising. The temporal relationship between changes in ANCA concentration and clinical relapse varied considerably between patients; in seven patients, ANCA remained at high levels for many months (range, 14 to 67 months) before eventual relapse. One patient showed high concentrations of ANCA over a period of 11 years without relapse. In five patients, increases in the ANCA level were not temporally associated with relapse (although four of these patients relapsed on other occasions.) We conclude that monitoring ANCA by enzyme-linked immunosorbent assays is of value in the long-term management of patients with Wegener's granulomatosis, microscopic polyangiitis, idiopathic rapidly progressive glomerulonephritis, and Churg-Strauss syndrome. Increases in ANCA and persistently high levels point to the risk of relapse and indicate the need for frequent clinical review and continuing maintenance immunosuppression. However, our results suggest that ANCA assays should always be used in conjunction with other indices of disease activity and should not be the sole basis for changing therapy.

Antibodies, Antineutrophil Cytoplasmic↗

Analysis of T cell responses to the autoantigen in Goodpasture's disease.

Goodpasture's disease is a rare form of glomerulonephritis characterized by the production of autoantibodies to the glomerular basement membrane (GBM). In order to understand the development of autoimmunity to the GBM, it is important to examine mechanisms underlying T cell responses to the autoantigen. A MoAb P1, with the same specificity as patients' autoantibodies, was used to affinity-purify the antigen from collagenase-digested human GBM. This material was enriched in the NC1 domain of the alpha 3 chain of type IV collagen (alpha 3(IV)NC1), known to be the principal target of anti-GBM antibodies, but also contained lower quantities of alpha 4(IV)NC1. In proliferation assays, T cells from 11/14 patients with Goodpasture's disease showed significant responses (SI > or = 2.0) to affinity-purified human GBM. Peak responses were demonstrated at 7 or 10 days at antigen concentrations of 10-30 micrograms/ml. As in other autoimmune disorders, the presence of autoantigen-reactive T cells was also demonstrated in 5/10 healthy volunteers. Tissue typing revealed that all patients possessed HLA-DR2 and/or -DR4 alleles, while normal individuals whose T cells responded possessed DR2 and/or DR7 alleles. The specificity of the T cell response in Goodpasture's disease was further investigated using monomeric components of human GBM purified by gel filtration and reverse phase high performance liquid chromatography (HPLC). Two antigenic monomer pools were obtained, which were shown by amino-terminal sequence analysis to contain alpha 3(IV)NC1 and alpha 4(IV)NC1, respectively. In all patients tested, significant T cell proliferation was observed in response to one or both of these alpha (IV)NC1 domains. These results demonstrate that patients with Goodpasture's disease possess T cells reactive with autoantigens known to be recognized by anti-GBM antibodies.

Adult↗

Antigen specificity of circulating anti-neutrophil cytoplasmic antibodies in inflammatory bowel disease.

OBJECTIVES: To characterize the antigen specificity of circulating anti-neutrophil cytoplasmic antibodies (ANCAs) in inflammatory bowel disease (IBD). DESIGN: Analysis of the prevalence of circulating ANCAs in patients with ulcerative colitis and Crohn's disease, by both non-specific methods (immunofluorescence against fixed neutrophil leukocytes) and specific antigen techniques (against purified neutrophil leukocyte constituents). METHODS: Indirect immunofluorescence against fixed polymorphonuclear leukocytes, and solid-phase enzyme-linked immunosorbent assay (ELISA) against neutrophil constituents (alpha-granules, elastase, myeloperoxidase, cathepsin g, lysozyme and lactoferrin). RESULTS: Although results using immunofluorescence were typical of other studies (ulcerative colitis positive in 41%, Crohn's disease in 10%), ELISA studies showed antibody activity against neutrophil components in 69% of patients with ulcerative colitis and 39% of those with Crohn's disease. Antibodies in ulcerative colitis were commonly directed (in descending order) against lysozyme, cathepsin G, elastase, and lactoferrin, and in Crohn's disease against lysozyme. CONCLUSION: Correlation of indirect immunofluorescence data and ELISA results indicated that even this large panel of specific antigens fails to identify all the ANCA targets in IBD. The lack of correlation between the findings of ANCAs, either in general or versus a specific target, and disease extent or activity in ulcerative colitis supports the suggestion that ANCAs are unlikely to be of primary importance in pathogenesis.

Adult↗