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Biomedical subjects

P Lesavre

Publications and source records attributed to P Lesavre.

At least 19 recordsLinked to original sources

Determination of anti-neutrophil cytoplasm antibodies (ANCA) specificity by immunofluorescence on chronic myelocytic leukemia cells.

ANCA positive sera, detected by the standard immunofluorescence method, derived from 37 patients with vasculitis were studied using formalin-acetone fixed chronic myelocytic leukemia cells (CML). All 37 sera were positive on CML cell smears. Furthermore formalin-actone fixation selectively impaired antinuclear antibody binding without reducing ANCA staining and thus facilitated differentiation of these autoantibodies which is often difficult with the standard immunofluorescence method. Two unequivocal and mutually exclusive ANCA binding patterns were identified using the CML smears: (1) type I with diffuse granular binding confined to the polymorphonuclear (PMN) cell lineage and preferentially staining immature cells; (2) type II with similar binding to the PMN cell lineage and, in addition, granular staining of the basophils. All type I antibodies were associated with a c-ANCA pattern suggesting that the major antigen recognized by these antibodies, recently identified as proteinase 3, is not detectable in basophils. The type II pattern was detected in both p-ANCA (84%) and c-ANCA (16%) positive sera. The type I sera remained positive on PMN cells from a myeloperoxidase (MPO) deficient subject and anti-MPO antibodies could not be detected in this group by ELISA. Conversely the type II pattern occurred in the presence of anti-MPO antibodies identified by immunofluorescence, ELISA and dot-blot with the exception of a single serum with antilactoferrin antibody. Type I binding only was observed in Wegener's granulomatosis (WG) but both patterns were found in microscopic polyarteritis (MPA) and rapidly progressive glomerulonephritis (RPGN).

Antibodies, Antineutrophil Cytoplasmic

Human neutrophils release their major membrane sialoprotein, leukosialin (CD43), during cell activation.

Leukosialin (CD43) is a sialic acid-rich molecule with a relative molecular mass (M(r)) of 140,000 highly represented on polymorphonuclear neutrophils (PMN) and on most leukocytes. One of its functions may be to prevent nonspecific cell-to-cell interactions through negative charge repulsions. As tested by immunofluorescence, neutrophil CD43 membrane expression was shown to decrease by up to 80% upon cell activation by phorbol myristate acetate (10 ng/ml) or by N-formyl-L-methionyl-L-leucyl-L-phenylalanine (FMLP; 10(-6) M) in the presence of cytochalasin B. The kinetic of this decrease paralleled that of CD11b up-regulation. FMLP alone, tumor necrosis factor (TNF-alpha), lipopolysaccharide and granulocyte macrophage colony-stimulating factor had moderate or insignificant effects, while inducing striking CD11b up-regulation. Cell priming with TNF-alpha followed by FMLP stimulation resulted in up to 40% decrease of CD43 expression. Anti-CD43 mAb immunoprecipitated three fragments of M(r) 130,000, 49,000 and 34,000 from the cell-free supernatant of activated neutrophils, suggesting that CD43 is released from the membrane by proteolysis. Indeed, the decrease in CD43 expression was inhibited by phenylmethanesulfonylfluoride (PMSF). Homotypic aggregation of activated PMN was also inhibited by PMSF and could result, at least in part, from the shedding of CD43. The shedding of such a strongly anionic and major membrane protein should drastically modify PMN surface charge and may allow previously hindered interactions by exposing new adhesion molecules.

Animals

Antineutrophil cytoplasmic antibodies (ANCA) directed against cathepsin G in ulcerative colitis, Crohn's disease and primary sclerosing cholangitis.

Autoantibodies directed against polymorphonuclear neutrophils (PMN) have been observed in serum from patients with ulcerative colitis (UC), Crohn's disease (CD) and primary sclerosing cholangitis (PSC) using indirect immunofluorescence and fixed granulocyte ELISA. Our study demonstrates the presence in the serum of these patients of autoantibodies which bind to an azurophilic granule component distinct from proteinase 3, elastase and myeloperoxidase. These autoantibodies thus belong to the ANCA family, but their antigen specificity differs from the already characterized ANCA antigens. We have found that the same ANCA antigen target, named UC-antigen, was recognized by serum IgG from patients with UC, CD and PSC. It was purified by Matrex Gel Orange A dye affinity chromatography and subsequent immunoabsorption of contaminant proteinase 3 with immobilized anti-proteinase 3 MoAb. The identity between this UC antigen and cathepsin G was demonstrated by their coelution from Matrex Gel Orange A column and the parallel titration of cathepsin G-specific enzymatic activity and UC-ANCA binding, both in partially purified UC antigen and in highly pure cathepsin G. Furthermore, the use of cathepsin G ELISA confirmed that UC, CD and PSC patients' IgG did indeed bind to cathepsin G. Comparison of the results obtained with azurophilic granule- and cathepsin G-ELISA as well as inhibition of ANCA binding by anti-cathepsin G polyclonal antibodies, revealed that in some patients cathepsin G is the main azurophilic granule target of ANCA while others have other ANCA specificities. The fact that UC, CD and PSC are frequently associated with cathepsin G ANCA, while rarely occurring in other types of vasculitis, is intriguing but suggests that these diseases may have a common pathogenetic mechanism.

Autoantibodies

Antineutrophil cytoplasmic antibodies in IgA nephropathy and Henoch-Schönlein purpura.

The frequency, isotype, and specificity of antineutrophil cytoplasmic antibodies were investigated in a cross-sectional study of 100 patients with IgA nephropathy and 30 children with Henoch-Schönlein purpura. Two of the patients with IgA nephropathy had high titres of antineutrophil cytoplasmic antibodies which were of IgG isotype and confirmed as antimyeloperoxidase antibodies in solid-phase ELISA and inhibition experiments. Antineutrophil cytoplasmic antibodies were not detected in the children with Henoch-Schönlein purpura and none of the patients in either group had IgA antineutrophil cytoplasmic antibodies. A further 20 IgA nephropathy and 10 Henoch-Schönlein purpura patients were studied longitudinally in different clinical phases at 4-monthly intervals over a 2-year period. None of these patients had or developed antineutrophil cytoplasmic antibodies. We conclude that IgA antineutrophil cytoplasmic antibodies are not involved in the vasculitis of Henoch-Schönlein purpura or in the pathogenesis of glomerular injury in IgA nephropathy. The detection of IgG antimyeloperoxidase antibodies in a small minority of IgA nephropathy patients extends the spectrum of diseases associated with autoimmunity to this antigen but is of uncertain significance.

Antibodies, Antineutrophil Cytoplasmic

[Necrotizing extracapillary glomerulonephritis without immunoglobulin deposits. Renal localization of systemic vasculitis with anti-cytoplasm polynuclear antibodies].

Necrotizing and crescentic glomerulonephritis without immunoglobulin deposits (also called pauci-immune glomerulonephritis) is the cause of approximately 50 percent of acute renal failures of glomerular origin. Our study, based on 40 case-records selected on histological criteria, and on data from the literature, shows that in most cases, if not all, this type of glomerulonephritis is part of a wider systemic vasculitis which predominantly affects the glomerular capillaries. Anti-neutrophil cytoplasm antibodies are detected in three-quarters of the cases, with a specific distribution that varies according to the clinical features. In spite of the patients' age (mean: 62 years), the severity of glomerular lesions and the extra-renal diffusion of the disease, 60 percent of these patients can be cured and recover a normal, or at least acceptable renal function, provided the corticosteroid and sometimes immunosuppressive therapy is initiated at an early stage.

Adolescent

Antigen specificities and clinical distribution of ANCA in kidney diseases.

The antigenic specificity and clinical distribution of the antineutrophil cytoplasmic antibodies (ANCA) in kidney diseases have recently been extensively studied. In patients with systemic vasculitis, the great predominance of two major ANCA antigens, proteinase 3 (PR3) and myeloperoxidase (MPO), is now established. PR3 and MPO are colocalized in the azurophilic granules of neutrophils and translocated to the cell surface during activation, and thus are able to interact with autoantibodies after neutrophil preactivation. Furthermore, by comparison of amino acid and DNA sequences, it has been shown that PR3 is identical to myeloblastin, which has been described independently and is involved in the control of growth and differentiation of leukemic cells. Aside from the two major ANCA antigens, a number of neutrophil cytoplasmic antigens recognized by ANCA have been identified, including human leukocyte elastase, lactoferrin, CAP57, and cathepsin G. These rare ANCA specificities occur in a limited number of patients. The variety of ANCA antigen specificities contrasts, however, with the fact that the vast majority of ANCA-positive sera are monospecific for one single ANCA antigen. With regard to clinical distribution, ANCA have major diagnostic significance in the four conditions in which they are frequently detected: Wegener's granulomatosis (WG), Churg and Strauss Syndrome (CSS), microscopic periarteritis (MPA), and necrotic and crescentic glomerulonephritis (NCGN). However, the initial dichotomy between MPO-associated vasculitis (NCGN, MPA) and that associated with anti-PR3 antibodies (WG) appears far from absolute.

Autoantibodies

Antineutrophil cytoplasmic autoantibodies antigen specificity.

The results presented during the Third International ANCA Workshop, Washington, DC, 1990, allowed a better definition of the antigenic specificity of the antineutrophil cytoplasmic autoantibodies (ANCA). The large predominance of two major antigen specificities for proteinase 3 (PR3) and myeloperoxidase (MPO), in the group of vasculitic patients, was confirmed. PR3 and MPO are colocalized in the azurophilic granules of neutrophils and translocated to the cell surface during activation and thus are able to interact with ANCA after neutrophil preactivation. Furthermore, by comparison of amino acid and DNA sequences, the agreement was reached that PR3 was identical to AGP7, p29, and myeloblastin, described independently and involved in the control of growth and differentiation of leukemic cells. In addition to the two major ANCA antigens, a number of neutrophil cytoplasmic antigens recognized by ANCA have been previously identified (human leukocyte elastase [HLE], lactoferrin). It was established during the Third Workshop that these rare ANCA specificities, occurring in a limited number of patients, include a cationic antimicrobial protein (CAP57) and cathepsin G. However, the variety of ANCA antigen specificities contrasts with the fact that the vast majority of ANCA-positive sera are monospecific for a single ANCA antigen. Finally, the fine specificity of granulocyte-specific antinuclear antibodies (GS-ANA) occurring in rheumatoid arthritis and ulcerative colitis is still unknown, but clearly a substantial proportion of GS-ANA belongs to the ANCA family.

Antibodies, Antineutrophil Cytoplasmic

Light-chain composition of serum IgA1 and in vitro IgA1 production in IgA nephropathy.

A predominant expression of IgA1 in mesangial deposits, serum, and bone marrow culture supernatants has been shown in IgA nephropathy (IgAN). Furthermore an excess of lambda light chains in both mesangial deposits and serum IgA has been observed. However, the origin of mesangial IgA remains controversial. In the present study, we have examined the IgA1 light chain type in IgAN. Total IgA1, IgA1 kappa and IgA1 lambda were measured by ELISA in serum and culture supernatants from spontaneous and pokeweed-mitogen (PWM)-stimulated peripheral blood mononuclear cells (PBMC). We observed an increase in IgA and IgA1 serum concentrations in IgA nephropathy patients, with a ratio of serum IgA1 to total serum IgA identical between patients and controls. The concentration of serum IgA kappa did not differ between patients and controls but patients had a significantly higher concentration of serum IgA lambda. The IgA1 kappa to IgA1 lambda ratio was 1.06 +/- 0.42 in IgAN patients versus 1.55 +/- 0.36 in controls (P less than 0.01). By contrast, the concentrations of IgA1 kappa and IgA1 lambda in PBMC culture supernatants, both spontaneous and PWM-stimulated, were identical in patients and controls. Therefore, there is a specific increase in IgA1 lambda in patients' sera. This contrasts with the normal IgA1 production by PBMC, which are derived from mucosal-associated lymphoid tissues. This suggests that IgA isotypic deregulation is confined to the bone marrow compartment and is not a generalised defect of the IgA system.

Adult

Association between acute lymphoblastic leukemia and partial IgA deficiency in a young man--a family study.

We report on an unusual association between partial IgA deficiency and acute lymphoblastic leukemia in a young man. We also report results of the family study of immunoglobulin levels, sIgA B cells, in vitro IgA synthesis and molecular analysis of the structural C alpha genes. The IgA deficiency was present at diagnosis of leukemia prior to any therapy. The indirect arguments for a preexisting IgA deficiency are the absence of improvement of the IgA level during complete remission and especially the finding of a similar partial IgA deficiency in a sister who shared the same HLA haplotype, had a low percentage of sIgA B cells and decreased in vitro IgA production. The mother, who had a normal IgA serum level also had decreased in vitro IgA synthesis. No major structural C alpha gene defect was found. The relationship between acute lymphoblastic leukemia and IgA deficiency remains to be elucidated.

Adolescent

Nonneoplastic circulating Sézary-like cells in cutaneous T-cell lymphoma. Ultrastructural, immunologic, and T-cell receptor gene-rearrangement studies.

Approximately 67% of peripheral blood lymphocytes in a case of nonmycosis fungoides-type cutaneous T-cell lymphoma, exhibited Sézary-like changes. Immunotyping showed a helper phenotype with an abnormally faint expression of the T3 membrane antigen, while quantitative electron microscopic study was suggestive of neoplasia. However, T-cell receptor gene study did not show any DNA rearrangement in Ficoll-separated blood lymphocytes, whereas clonal T-cell proliferation was simultaneously evidenced in cutaneous (non-Sézary-like) tumor cells. It is concluded that reactive nonneoplastic Sézary-like cells may be present not only in various benign conditions, as previously known, but also in T-cell lymphomas. This study provides further evidence for the nonspecificity of Sézary-like changes, and stresses the utility of T-cell receptor gene rearrangement study for diagnostic and prognostic procedures during the course of T-cell lymphoproliferative disorders.

DNA, Neoplasm