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Biomedical subjects

C Mandet

Publications and source records attributed to C Mandet.

At least 55 records · Page 3Linked to original sources

Distinct phenotypic composition of diffuse interstitial and perivascular focal infiltrates in renal allografts: a morphometric analysis of cellular infiltration under conventional immunosuppressive therapy and under cyclosporine A.

Phenotypic analysis of interstitial mononuclear cell infiltrates was undertaken in 40 transplant renal specimens obtained from 38 patients in order to assess the influence of immunosuppressive therapy. Thirteen patients were given conventional immunosuppressive treatment (azathioprine and prednisone) and the other 25 received cyclosporine. The immunostaining was performed using seven antileucocyte antibodies by alkaline phosphatase-anti-alkaline phosphatase method. Interstitial infiltrates were distributed in two patterns: diffuse infiltrates and periglomerular/perivascular aggregates. The phenotypic composition was distinct in these two patterns: in diffuse infiltrates, monocytes/macrophages (EBM 11) represented the predominant inflammatory cell and were associated with a minor component of T cells (T 11). In contrast, aggregates had a major T lymphocyte phenotype in addition with few foci of B cells. T4 subset of T lymphocytes always predominated over T8 subset. The repartition and the proportion of each cell type were not significantly different in rejecting and not rejecting grafts and were not affected by the immunosuppressive regimen.

Administration, Oral↗

Mercury-induced autoimmune glomerulonephritis: requirement for T-cells.

Mercury-induced autoimmunity in Brown-Norway rats has been shown previously to be due to polyclonal activation of B lymphocytes, requiring the presence of T lymphocytes. Autoimmunity in that strain is characterised by the appearance of an autoimmune glomerulonephritis, by the production of a host of autoantibodies, and by an increase in total serum IgE. In the present study, T-cell deprived rats were tested to assess the role of T cells in the appearance of autoimmune abnormalities in vivo. It will be shown that both BN rnu/rnu and BN 'B' rats, who have virtually no T cells, do not develop autoimmunity following HgCl2 injections. In contrast BN 'B' rats reconstituted with normal T cells, and BN rnu/+ rats, exhibit autoimmune manifestations, including autoimmune glomerulonephritis, quite similar to those observed in Brown-Norway rats. These data demonstrate that T cells are essential for mercury-induced autoimmunity to occur in Brown-Norway rats.

Animals↗

Effect of methylprednisolone and cyclophosphamide in mercury-induced autoimmune glomerulonephritis.

The effects of methylprednisolone and of cyclophosphamide were tested in mercury-induced autoimmune disease in Brown-Norway rats. Survival, proteinuria, presence of antiglomerular basement membrane bound antibodies and of immune complex type deposits, amounts of circulating immune complexes, and total serum IgE were studied. Serum IgE represents the most sensitive marker in this drug-induced autoimmune disease. Methylprednisolone alone (1.5 mg/kg per day) affected the course of the disease only slightly. Cyclophosphamide (20 mg/kg every other day) given from day 0 completely prevented all the autoimmune manifestations, but the rats were profoundly immunosuppressed. The same protective effect was obtained with lower cyclophosphamide dosage (15 mg/kg on day 0 and then 2 mg/kg per day). More interestingly, cyclophosphamide given from day 10 or 15 (20 mg/kg twice a week or every other day), at a time when the disease was already expressed, resulted in partial or complete recovery, provided that the rats had not exhibited heavy proteinuria before initiation of treatment. Cyclophosphamide is therefore a powerful agent, able to prevent and even to reduce the consequences of polyclonal activation in this model.

Animals↗

Immunohistochemical demonstration of parietal epithelial cells and macrophages in human proliferative extra-capillary lesions.

The cellular composition of crescents in diffuse crescentic glomerulonephritis is still controversial. Ten renal biopsies were studied on serial sections by using antikeratin antibodies as specific markers of epithelial cells of Bowman's capsule and both anti-macrophage and anti-lymphocyte antibodies. Semiautomatic morphometry showed that cellular crescents consisted of epithelial cells of Bowman's capsule (24-61%), of macrophages (19-34%) and of unlabelled cells (12-53%). In each biopsy, parietal epithelial cells outnumbered macrophages within crescents.

Antibodies, Monoclonal↗

Immunohistochemical study of the C5b-9 complex of complement in human kidneys.

The presence and localization of the C5b-9 neoantigens of the terminal complement sequence, of antigens expressed by cleavage fragments of C3, and of Factor H antigens have been studied by immunohistochemical techniques in morphologically normal adult human kidneys and in biopsy specimens from patients with a wide range of renal diseases with and without immune deposits. In morphologically normal kidneys, C5b-9 neoantigens were observed within all connective matrices (arteriolar media, glomerular basement membrane (GBM), mesangial matrix and tubular basement membrane). The C3d and C3g antigens of the C3dg, and C3bi cleavage fragments of C3 and Factor H antigens were found in similar locations. None of the matrices stained for immunoglobulins. Immunoelectron microscopy demonstrated that C3d, C3g, H antigens and the C5b-9 neoantigens were localized on membranous and vesicular structures embedded in the connective matrices. These structures represent cell membranes shed from adjacent cells as evidenced by their ultrastructural appearance and by the fact that those which were in close vicinity to pedicles within the GBM expressed the C3b receptor antigen, a specific marker for podocyte membranes. Formation of C5b-9 complexes in the shielded environment of connective matrices may explain their persistence over long periods of time in the absence of apparent immunopathological consequences. Biopsies from pathological kidneys were classified into three groups based on the pattern of glomerular staining with anti-C5b-9 antibodies. In the first group, a sparse mesangial labeling was seen, similar to that observed in normal kidneys. In the second group, abundant clusters of C5b-9 were seen in the same location as immune deposits. Activation of the complement system to completion could be documented in the absence of detectable C3 (C3c) antigen in glomeruli. Immunoelectron microscopy demonstrated that C5b-9 neoantigens were present on cell remnants in connective matrices in all specimens that were studied. Labeled cell remnants were present in large amounts in sclerotic matrices. C5b-9 neoantigens were constantly found on old and large immune deposits, and absent or occasionally present on recent and small immune deposits. In membranous nephropathy stage I, proteinuria appeared to be independent of the presence or absence of detectable C5b-9 neoantigens on immune deposits. Thus, the presence of C5b-9 neoantigens in pathological renal tissue does not have an univocal significance, and requires analysis of the localization of the antigens and appropriate controls in order to assess the potential role of C5b-9 in tissue damage.

Adult↗

Immunohistochemical analysis of C3 cleavage fragments, factor H, and the C5b-9 terminal complex of complement in de novo membranous glomerulonephritis occurring in patients with renal transplant.

Fifteen renal biopsies from 13 transplanted patients with de novo membranous nephropathy (DNMN) were investigated by immunofluorescence for the presence of C5b-9 neoantigens of the terminal sequence of complement and for antigens expressed by C3 cleavage fragments. DNMN lesions were classified as stage I, II or III upon light and electron microscopy examination. Seven biopsies were classified as stage I DNMN and 8 stage II-III. All patients were proteinuric. In six biopsies with stage I DNMN, staining for C5b-9 neoantigens was restricted to a fine granular labeling in mesangial areas which was analogous to that seen in normal kidneys in contrast with extensive parietal labeling for IgG, C3d and factor H antigens. In eight biopsies with stage II-III DNMN, the pattern of staining with anti-C5b-9 neoantigens antibodies was similar to that obtained with anti-IgG, anti-C3d and anti-factor H antibodies. These results suggest that in situ activation of the whole complement sequence throughout C5b-9 only occurs on large immune deposits (stage II-III DNMN).

Adolescent↗

Immunohistochemical study of Ia antigen in the normal and diseased human kidney.

The presence and distribution of Ia antigen in normal human kidneys and biopsy specimens from patients with renal disease were investigated by immunohistochemical techniques using two monoclonal antibodies to the nonpolymorphic determinants of human HLA-DR molecules. Ia antigen was found on the endothelium of glomerular and peritubular capillaries and of veins and vasa recta. Loss of endothelial staining was found in necrotic and sclerotic glomerular and tubulointerstitial lesions. Staining or decreased staining was also not found in the severe proliferative nephritis of systemic lupus erythematosus although endothelial cells could still be identified upon light microscopic examination of the same biopsy specimen. Resting and proliferating cells in mesangial areas did not stain with anti-Ia antibody and extracapillary proliferating cells did not express Ia antigen except for occasional cells in anti-GBM crescentic glomerulonephritis, suggesting that Ia-bearing cells are not involved in mesangial and most extracapillary proliferations in human glomerulonephritis. All clustered mononuclear cells infiltrating the renal interstitium stained with anti-Ia antibody regardless of the type of nephritis where infiltrates occurred.

Antibodies, Monoclonal↗

Immunohistochemical study of the human glomerular C3b receptor in normal kidney and in seventy-five cases of renal diseases: loss of C3b receptor antigen in focal hyalinosis and in proliferative nephritis of systemic lupus erythematosus.

The presence and distribution of C3b receptors in normal human kidneys and in biopsies from 75 patients with renal disease were investigated by immunohistochemical techniques using monospecific rabbit antibody to the 205,000-mol wt glycoprotein that is the C3b receptor of human peripheral blood cells. Anti-C3b receptor bound exclusively to podocytes in normal renal cortex, and was homogeneously distributed on the plasma membrane of these cells. Biosynthesis of the receptor by the podocyte was suggested by the presence of antigenic activity in the Golgi apparatus. Although occupancy of receptor sites following the interaction of kidney sections with aggregated IgG preincubated with normal serum inhibited binding to glomeruli of C3b coated cells, the C3b receptor remained accessible to anti-C3b receptor antibody. No staining of podocytes was found in extra-capillary proliferating cells in rapidly progressive glomerulonephritis (GN). Segmental loss of staining was found in focal hyalinosis, nodular diabetic glomerulosclerosis, and amyloidosis while no detectable C3b receptor antigen was found in severe proliferative nephritis of systemic lupus erythematosus (SLE). Normal staining of podocytes was found in other nephropathies with endocapillary proliferation such as acute GN and mesangial GN and in renal diseases associated with immune deposits containing C3 such as mesangial proliferative and membranous SLE nephritis, idiopathic membranous GN, membranoproliferative GN types I and II, mesangial GN with IgA or C3 deposition and Henoch Schönlein's purpura. Loss of C3b receptor antigen in the diffuse proliferative nephritis of SLE distinguishes it both from nonproliferative lupus nephritis and other immunologically mediated proliferative GN.

Complement C3↗

Spontaneous circulating immune complex like material in Brown-Norway rats. Role of environmental factors.

Brown-Norway rats maintained under conventional housing conditions showed a significant increase in the C1q binding activity of serum and to a lesser extent of the Raji cell assay whereas no change was observed, in BN rats maintained under specific pathogen free (SPF) conditions. Glomerular IgG deposits were encountered among rats with circulating immune complexes (CIC). This suggests that microbiological environment is a major factor in the spontaneous appearance of CIC which could be of pathogenic significance.

Animals↗

Immune complex type disease induced by HgCl2 in Brown-Norway rats: genetic control of susceptibility.

Mercuric chloride induces a biphasic autoimmune glomerulonephritis in Brown-Norway (BN) rats but not in Lewis (LEW) rats. The genetic control of susceptibility to both phases was investigated by testing the response of segregants between BN and LEW rats and of congenic LEW.1N rats. It was confirmed that susceptibility to the first phase, characterized by the appearance of anti-glomerular basement membrane antibodies, depends on several genes one of which is RT1 linked. Susceptibility to the second phase, which is an immune complex type glomerulonephritis, was found to depend on one major RT1 linked gene or cluster of genes with a role for other(s) non-RT1 linked gene(s) controlling the magnitude of the response. However, congenic LEW.1N rats were found to be resistant. This suggests that the disease gene has been lost during the strain derivation. The question of whether both phases are two different diseases or expression of the same process cannot be definitely answered; data however indicate a dissociation of both disease processes.

Animals↗

Immune complex-mediated lung injury produced by horseradish peroxidase (HRP) and anti-HRP antibodies in rats.

Horseradish peroxidase (HRP) was administered intratracheally to rats with circulating autologous or heterologous anti-HRP antibodies. Intrapulmonary immune complexes containing HRP, anti-HRP antibodies, but no C3, were detected by immunofluorescence from 1 hour to 48 hours with a maximum of 6 hours after antigenic challenge. The concomitant hemorrhagic alveolitis characterized by fibrin deposits and infiltration by polymorphs and macrophages was also maximal after 6 hours. At the ultrastructural level, HRP was easily detected, and HRP-containing immune deposits were demonstrated along the basement membrane in subepithelial and subendothelial localization and in interstitial spaces. These findings suggest a C3 independent mechanism for lung injury mediated by immune complexes formed in situ.

Animals↗

Immune-type glomerulonephritis induced in the Brown-Norway rat with mercury-containing pharmaceutical products.

It has been shown that Brown-Norway rats develop an immune-type glomerulonephritis after treatment with various mercury-containing drugs. Anti-GBM antibodies were involved, at least in some animals. This glomerulonephritis induced a proteinuria. Strong evidence is given, suggesting that most mercury compounds, some of which, such as mercurial antiseptics, are widely used, could induce an immune-type glomerulonephritis. The question therefore arises, whether these drugs can be used any longer.

Animals↗

Demonstration of a passive Heymann nephritis-like mechanism in a human kidney transplant.

The underlying mechanism of human extramembranous glomerulonephritis (EMGN) is generally thought to involve circulating immune complexes. Data presented here suggest that "in situ" formation of immune deposits may also be important in the pathogenesis of EMGN. We describe a patient with a "de novo" EMGN in a kidney transplant a few months after the graft placement. Before transplantation, the patient's serum contained antibodies reacting in vitro with rat kidney brush-border, but serum concentration of these antibodies rapidly decreased prior to the onset of proteinuria. No circulating immune complexes were detected on serial serum samples from the patients. Antibodies which were eluted from the kidney transplant biopsy were shown to react with the brush-border of the proximal convoluted tubule of rat kidney. We postulate that "in situ" formation of immune complexes within the glomerular capillary walls, and not circulating immune complexes, is the pathogenic mechanism responsible for the glomerular lesions of this case of EMGN.

Adult↗

Induction of susceptibility to HgCl2 immune glomerulonephritis in the Lewis rat by immunocompetent cells from susceptible F1 hybrids.

Susceptibility to HgCl2-induced glomerulonephritis was transferred to resistant Lewis (LEW) rats, irradiated and reconstituted with (LEW X BN)F1 hybrid immunocompetent cells. This glomerulonephritis was similar to that observed in Brown-Norway (BN) rats with a first stage characterized by anti-glomerular basement membrane antibodies and a second stage with immune complex-type deposits in the glomerular tufts and in the small renal arteries.

Animals↗

Distribution of blood group antigen A in normal and pathologic human kidneys.

We tested this distribution with an indirect immunofluorescent technique using purified rabbit anti-A antiserum on 21 whole normal kidneys (a group, N equal to 18; AB group, N equal to 1; O group, N equal to 2) and on 349 kidney biopsy samples (A group, N equal to 140; AB group, N equal to 14; O or B group, N equal to 195) representing a large spectrum of renal diseases. In normal kidneys from A and AB groups, the A antigen was detected in the whole vascular endothelium and in the convoluted distal tubules. In secretors, collecting tubules were brightly positive. Epithelial staining was more diffuse in the inner part than it was in the outer part of the medulla. The basement membrane of the inner collecting tubules was positive in frozen sections but not in paraffin sections. In pathologic kidneys, modifications were obvious: (1) The thickened basement membrane of atrophic convoluted distal tubules was brightly stained. (2) Endothelial staining allowed a precise appreciation of the glomerular and interstitial vasculature. (3) In proliferative changes such as arterial intimal proliferation, proliferative glomerulonephritis, and interstitial cell infiltration, endothelial cells do not proliferate. This routine staining technique of endothelial cells by anti-A antiserum provide information not obtainable with light microscopy.

ABO Blood-Group System↗