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K J Assmann

Publications and source records attributed to K J Assmann.

At least 73 records · Page 4Linked to original sources

Anti-nucleosome antibodies complexed to nucleosomal antigens show anti-DNA reactivity and bind to rat glomerular basement membrane in vivo.

Histones can mediate the binding of DNA and anti-DNA to the glomerular basement membrane (GBM). In ELISA histone/DNA/anti-DNA complexes are able to bind to heparan sulfate (HS), an intrinsic constituent of the GBM. We questioned whether histone containing immune complexes are able to bind to the GBM, and if so, whether the ligand in the GBM is HS. Monoclonal antibodies (mAbs) complexed to nucleosomal antigens and noncomplexed mAbs were isolated from culture supernatants of four IgG anti-nuclear mAbs. All noncomplexed mAbs showed strong anti-nucleosome reactivity in ELISA. One of them showed in addition anti-DNA reactivity in noncomplexed form. The other three mAbs only showed anti-DNA reactivity when they were complexed to nucleosomal antigens. After renal perfusion a fine granular binding of complexed mAbs to the glomerular capillary wall and activation of complement was observed in immunofluorescence, whereas noncomplexed mAbs did not bind. Immuno-electron microscopy showed binding of complexes to the whole width of the GBM. When HS in the GBM was removed by renal heparinase perfusion the binding of complexed mAb decreased, but did not disappear completely. We conclude that anti-nucleosome mAbs, which do not bind DNA, become DNA reactive once complexed to nucleosomal antigens. These complexed mAbs can bind to the GBM. The binding ligand in the GBM is partly, but not solely, HS. Binding to the GBM of immune complexes containing nucleosomal material might be an important event in the pathogenesis of lupus nephritis.

Animals↗

Monoclonal antibodies against the protein core and glycosaminoglycan side chain of glomerular basement membrane heparan sulfate proteoglycan: characterization and immunohistological application in human tissues.

We raised monoclonal antibodies (MAb) against the core protein and the heparan sulfate (HS) side chain of heparan sulfate proteoglycan (HSPG) from glomerular basement membranes (GBM). Anti-HSPG-core MAb were obtained after immunization of mice with HSPG purified from human GBM and the anti-HS MAb after immunization of mice with HSPG from rat glomeruli, which crossreacted with human HS and GBM HSPG. The specificity of the MAb was demonstrated by ELISA studies, Western blotting, inhibition experiments, and indirect immunofluorescence (IF) on kidney cryostat sections pre-treated with glycosaminoglycan (GAG)-degrading enzymes. Indirect IF on normal human kidney tissue showed prominent GBM staining for both MAb, with variable staining of the other renal basement membranes (BMs). By indirect immunoelectron microscopy (IEM), most intense staining was observed at the endothelial side of the GBM for both MAb, although the staining patterns were not identical. Both MAb were used to localize HSPG in human tissues by indirect IF. They bound to antigens present in the BMs of most tissues examined, including those of epithelia and endothelia. Differences between both MAb were observed for BMs of muscle cells, since the anti-HSPG core protein MAb (JM-72) staining was negative, whereas the anti-HS MAb (JM-403) clearly stained these structures. Comparison of our staining patterns in human tissues with the distribution of other anti-BM HSPG antibodies suggests that there are at least two types of BM HSPG, which have common epitopes on the HS side chains recognized by JM-403.

Animals↗

Characterization of a 43 kD protein associated to aminopeptidase A from murine kidney.

SDS-PAGE of affinity-purified APA under reducing conditions showed in addition to the specific APA band of M(r) 130 kD, a second band of M(r) 43 kD. Internal amino acid sequencing of three tryptic peptides from this second band, that was cut out of the polyacrylamide gel, matched the actin sequence. The identity of the 43 kD band was also confirmed by Western blotting.

Actins↗

Renal artery stenosis in moyamoya syndrome.

Extracranial manifestations of vascular occlusive disease, such as renovascular hypertension, are rare in moyamoya syndrome. Histopathological examination suggests a common denominator. Surgical or endoluminal correction of these lesions is feasible. Moyamoya syndrome is not considered to be a contraindication for organ donation for transplantation.

Adult↗

Lack of albuminuria in the early heterologous phase of anti-GBM nephritis in beige mice.

Passive anti-glomerular basement membrane (GBM) nephritis in the mouse is accompanied by acute massive albuminuria in the early heterologous phase. As we have previously shown, this albuminuria does not occur in the beige mutant of the C57BL/6J strain which is deficient for the leukocytic neutral proteinases elastase and cathepsin G. To address the question whether an intrinsic defect in the polymorphonuclear granulocyte (PMN) or local factors in the beige kidney are responsible for the lack of albuminuria in the beige mouse strain, we conducted reciprocal bone marrow transplantations (BMT) in beige and congenic control mice. Injection of anti-GBM antibody resulted in only slight albuminuria (89 +/- 47 micrograms/18 hours; N = 6) in normal (that is, non-irradiated, non-reconstituted) beige mice. By contrast, in beige mice, reconstituted with bone marrow (BM) from control mice, acute albuminuria developed (3032 +/- 1408 micrograms/18 hours; N = 8), to a degree comparable to that in non-irradiated control mice (4411 +/- 3405 micrograms/18 hours; N = 6, P < 0.01). Albuminuria in control mice, reconstituted with beige BM, was in the range of the normal beige mice (112 +/- 55 micrograms/18 hours; N = 9). Reconstitution with syngeneic bone marrow demonstrated that BMT by itself did not influence the level of albuminuria. All mice showed similar morphological lesions, with comparable influx of PMN in the glomeruli two hours after antibody injection. Elastase activities of PMN extracts in BMT groups were not different from those in donor mice. We conclude that the absence of albuminuria in beige mice is caused by an intrinsic defect in leukocytic neutral proteinase activity.

Albuminuria↗

Distribution of GBM heparan sulfate proteoglycan core protein and side chains in human glomerular diseases.

Using monoclonal antibodies (mAbs) recognizing either the core protein or the heparan sulfate (HS) side chain of human GBM heparan sulfate proteoglycan (HSPG), we investigated their glomerular distribution on cryostat sections of human kidney tissues. The study involved 95 biopsies comprising twelve different glomerulopathies. Four normal kidney specimens served as controls. A homogenous to linear staining of the GBM was observed in the normal kidney with anti-HSPG-core mAb (JM-72) and anti-HS mAb (JM-403). In human glomerulopathies the major alteration was a segmental or total absence of GBM staining with anti-HS mAb JM-403, which is most pronounced in lupus nephritis, membranous glomerulonephritis (GN), minimal change disease and diabetic nephropathy, whereas the HSPG-core staining by mAb JM-72 was unaltered. In addition we found HSPG-core protein in the mesangial matrix when this was increased in membranoproliferative GN Type I, Schönlein-Henoch GN, IgA nephropathy, lupus nephritis, diabetic nephropathy and in focal glomerulosclerosis. Also staining with the anti-HS mAb JM-403 became positive within the mesangium, although to a lesser extent. Furthermore, amyloid deposits in AL and AA amyloidosis clearly stained with anti-HSPG-core mAb JM-72, and to a lesser degree with anti-HS mAb JM-403. Finally, in membranous GN (stage II and III), the GBM staining with anti-HSPG-core mAb JM-72 became irregular or granular, probably related to the formation of spikes. In conclusion, major alterations were observed in the glomerular distribution of HS and HSPG-core in various human glomerulopathies. The mAbs can be useful to further delineate the significance of HSPG and HS for glomerular diseases.

Antibodies, Monoclonal↗

Antigen-specificity of antibodies bound to glomeruli of mice with systemic lupus erythematosus-like syndromes.

BACKGROUND: MRL/l mice with diffuse proliferative glomerulonephritis, and graft-versus-host (GVH) mice with membranous glomerulonephritis, are both regarded as models for human systemic lupus erythematosus. In these two models, the specificity of the nephritogenic antibodies was analyzed. EXPERIMENTAL DESIGN: The nephritogenic antibodies were eluted from isolated glomeruli with an acid buffer. The antibodies were purified from these eluates on protein-A sepharose under high salt conditions to exclude the presence of antigens potentially bound to the antibodies. The specificities of the antibodies were analyzed towards components of the glomerular basement membrane (GBM), nuclear antigens and brush border of proximal epithelial cells in the indirect immunofluorescence (IF), enzyme linked immunosorbent assay, and Crithidia luciliae assay. Furthermore, we studied the glomerular binding by IF and immunoelectron microscopy after intravenous injection of the eluted antibodies into control mice. RESULTS: Glomerular eluates of both MRL/l and GVH mice showed nuclear staining and linear to homogeneous binding to GBM and tubular basement membrane in IF on normal mouse kidney. In enzyme linked immunosorbent assay, both eluates reacted not only with DNA, but also with histones and laminin, an important component of the GBM, however not with brush border. Reactivity with dsDNA was also found in the Crithidia luciliae assay for both eluates. In vivo binding was determined by injection of eluates into control MRL/n and F1 hybrid mice. The GVH eluate showed linear to homogeneous binding to the GBM 1.5 hour after injection which changed into a granular, membraneous pattern after 5 days, as determined by IF and immunoelectron microscopy. The MRL/l eluate also demonstrated linear to homogeneous binding to the GBM 1.5 hour after intravenous injection, that had decreased after 5 days, but did not change into a granular pattern. CONCLUSIONS: In these two models of systemic lupus erythematosus nephritis not only antibodies to DNA and histones, but also antibodies to laminin are involved in the induction of murine systemic lupus erythematosus nephritis. The latter antibody specificity has not been identified before in renal or glomerular eluates obtained from diseased MRL/l mice.

Animals↗

A nephritogenic rat monoclonal antibody to mouse aminopeptidase A. Induction of massive albuminuria after a single intravenous injection.

Antibodies directed against antigens present on renal epithelial cells can cause membranous glomerulonephritis in experimental animals, which closely resembles the human form of this disease. However, most antibodies produced so far fail to cause the persistent and severe proteinuria that is seen in humans. In our search for new antibodies of this kind, we have now produced a monoclonal antibody (mAb) against mouse aminopeptidase A, a hydrolase that is present in the mouse kidney. The mAb (ASD-4) was prepared by fusion of mouse myeloma cells with splenocytes of Lou rats immunized with brush border (BB) membranes from mouse kidneys. ASD-4 is of the IgG1 subclass and reacts with a 140-kD protein as demonstrated by immunoprecipitation on radiolabeled BB membranes. In indirect immunofluorescence and immunoelectronmicroscopy of normal mouse kidneys, ASD-4 was diffusely present on the BB of the S1 and S2 segments of the proximal tubules, and on the cell membranes of the glomerular visceral epithelia. It also bound to cell membranes of nonglomerular endothelia, smooth muscle cells of arteries, and juxtaglomerular cells. After injection of ASD-4 into normal mice, an immediate homogeneous binding to the capillary wall was seen that gradually changed into a fine granular pattern after 1 d. This glomerular binding was followed by binding to the BB and basolateral membranes of the convoluted proximal tubules. Immediately after injection of ASD-4, a dose-dependent albuminuria occurred that lasted for at least 16 d. ASD-4 is thus a new rat mAb against a well-defined renal epithelial antigen that causes not only membranous glomerulonephritis after a single injection in the mouse, but also severe albuminuria.

Albuminuria↗

Detection of interstitial increase in macrophages, characteristic of acute interstitial rejection, in routinely processed renal allograft biopsies using the monoclonal antibody KP1.

Acute interstitial rejection (AIR) of renal allografts is accompanied by a characteristic peritubular increase in macrophages, which can be identified with the CD14 monoclonal antibody (mAb) WT14 in cryostat sections. Since frozen tissue is not always available, we tested whether this increase can also be demonstrated in Bouin-fixed, paraffin-embedded biopsies, using the CD68 antimacrophage mAb KP1, which can also be applied to paraffin sections. Sections of 16 biopsies with AIR and 11 controls were stained with KP1. In 25 of the 27 biopsies, macrophages were strongly positive for KP1. Two AIR biopsies were completely negative, probably due to prolonged fixation. In the remaining 14 AIR biopsies, the number of KP1-positive cells was significantly higher than in the controls [1184 +/- 410 per mm2 (mean +/- SD) vs 112 +/- 126 per mm2]. We conclude that, especially in cases in which frozen tissue is not available, the demonstration of increased numbers of monocytes/macrophages with mAb KP1 can be a helpful adjunct in the histological diagnosis of AIR in routinely processed renal biopsies.

Antibodies, Monoclonal↗

The glycosaminoglycan content of renal basement membranes in the congenital nephrotic syndrome of the Finnish type.

A decrease in the concentration of heparan sulphate proteoglycan (HSPG) in the glomerular basement membrane (GBM) is supposed to cause the increased GBM permeability in the congenital nephrotic syndrome (CNS). Therefore, we analysed the glycosaminoglycan (GAG) content and composition of the GBM and tubular basement membrane (TBM) from 3 patients with CNS of the Finnish type (FCNS) and 16 control infants. The GAG content, determined by spectrophotometric assay after papain digestion, was not significantly different in FCNS patients compared with controls. In addition, the GAG composition was comparable in the two groups, with heparan sulphate (HS) constituting at least 75% of the total GAG content. The urinary GAG content (expressed as mg GAG/mmol creatinine) was age dependent, but similar in both groups. Indirect immunofluorescence studies on kidney tissue from normal human infants, using monoclonal or polyclonal antibodies against the core protein of human GBM HSPG, showed linear staining of almost all renal basement membranes. A monoclonal antibody directed against the HS chain of HSPG showed strong GBM and a weak TBM staining. Kidney tissue from three patients with FCNS displayed no discernible differences in the distribution or quality of staining with the same antibodies. These biochemical and immunohistochemical results are in contrast to the decrease in anionic sites (by polyethyleneimine staining) and the replacement of GBM HS by chondroitin sulphate, observed by others in CNS of the diffuse mesangial sclerosis type.

Basement Membrane↗

A monoclonal antibody against GBM heparan sulfate induces an acute selective proteinuria in rats.

After immunization of mice with partially-purified heparan sulfate proteoglycan (HSPG) isolated from rat glomeruli, a monoclonal antibody (mAb JM-403) was obtained, which was directed against heparan sulfate (HS), the glycosaminoglycan side chain of HSPG. In ELISA it reacted with isolated human glomerular basement membrane (GBM) HSPG, HS and hyaluronic acid, but not with the core protein of human GBM HSPG, and not with chondroitin sulfate A and C, dermatan sulfate, keratan sulfate and heparin. Furthermore, it did not bind to laminin, collagen type IV or fibronectin. Specificity of JM-403 for HS was also suggested by results of inhibition studies, which found that intact HSPG and HS, but not the core protein, inhibited the binding of JM-403 to HS. In indirect immunofluorescence on cryostat sections of rat kidney, a fine granular to linear staining of the GBM was observed, along with a variable staining of the other renal basement membranes. Pretreatment of the sections with heparitinase completely prevented the binding of mAb JM-403, whereas pretreatment with chondroitinase ABC or hyaluronidase had no effect. The precise binding site of mAb JM-403 was investigated by indirect immunoelectron microscopy. It revealed a diffuse staining of the whole width of the GBM. One hour after intravenous injection of JM-403 into rats, the mAb was detected along the glomerular capillary wall in a fine granular pattern, which shifted towards a more mesangial localization after 24 hours. No binding was observed anymore by day 15. Intravenous injection induced a dose-dependent, transient and selective proteinuria that was maximal immediately after the injection.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Anti-DNA antibodies can bind to the glomerulus via two distinct mechanisms.

It is generally assumed that antibodies to double stranded DNA (anti-DNA) play a pivotal role in the pathogenesis of SLE nephritis. Recently, we reported that anti-DNA antibodies can bind to heparan sulphate proteoglycan (HSPG), a constituent of the glomerular basement membrane (GBM), via histones and DNA. We postulated that these histone/DNA/anti-DNA complexes can bind via their histone part to the glomerulus in vivo. To test this hypothesis we performed in vitro binding studies with isolated GBM loops and renal perfusion studies in the rat using histones, DNA and an anti-DNA monoclonal antibody (mAb) with high avidity for dsDNA. A strong granular binding of anti-DNA mAb to isolated GBM loops occurred via histones and DNA and a moderate granular binding was found via DNA alone. Anti-DNA mAb alone did not bind to the GBM loops. After perfusion of histones, DNA and immediately thereafter anti-DNA, we found with immunoelectron microscopy (IEM) a strong binding to endothelial cells in the glomerulus and to a lesser extent in the GBM. When the anti-DNA mAb was injected i.v. one hour after perfusion of histones and DNA, we observed a strong fine granular binding to the capillary wall by immunofluorescence (IF) in a membranous pattern along with some minor mesangial deposits. After perfusion of DNA alone followed by anti-DNA mAb, binding in the glomerulus was less than with histones and DNA, and was more restricted to the mesangium. No direct binding to the glomerulus was observed after perfusion with anti-DNA mAb alone, histones and anti-DNA mAb, or histones, DNA and a control mAb.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Accelerated nodulosis during low dose methotrexate therapy for rheumatoid arthritis. An analysis of ten cases.

OBJECTIVE: To obtain information on the occurrence of accelerated nodulosis during methotrexate (MTX) for rheumatoid arthritis (RA), localization, size and presence in heart and lungs of these nodules, predisposing factors, relationship with other extraarticular manifestations (EAM) and their histological features. METHODS: Ten patients with accelerated nodulosis were studied. Four participated in a double blind study of MTX and azathioprine. Patient characteristics, localization, size and histopathology of new nodules were determined. Echocardiography and chest roentgenograms were performed. RESULTS: Accelerated nodulosis occurred exclusively during treatment with MTX in our double blind study. The estimated incidence was 8%. One patient reported was rheumatoid factor negative. Newly developed nodules were small, and located in the fingers in all patients and in additional sites in 7. Pretreatment nodules were not found in the fingers. In one patient nodules on the mitral valve were found, but this was not likely to be associated with the use of MTX. No new pulmonary nodules were found. Other EAM developed concurrently in 4 patients. Histopathology revealed typical rheumatoid nodules. In 3 patients nodulosis regressed after MTX was stopped. In 2 of them they recurred after a rechallenge. CONCLUSIONS: Accelerated nodulosis during MTX for RA is not rare, and occurs despite good clinical response of polyarthritis. Rheumatoid factor positivity is not a prerequisite. New nodules are small and preferentially located in the fingers. Recurrence after rechallenge with MTX suggests causality.

Aged↗

Sjögren's syndrome complicated by cryoglobulinaemia and acute renal failure.

A patient is described with Sjögren's syndrome and an IgM-kappa gammopathy. With time cryoglobulins, the cause of acute renal failure, could be detected. The kidney biopsy showed a proliferative glomerulonephritis as is frequently seen with mixed cryoglobulinaemia. Plasmapheresis and immunosuppression resulted in long-term improvement of kidney function. The differential diagnosis of acute renal failure of glomerular origin in a patient with Sjögren's syndrome is discussed. This case report illustrates once more the consequences of monoclonal B-cell lymphocyte activation in Sjögren's syndrome.

Acute Kidney Injury↗

Production and characterization of a monoclonal antibody against human glomerular heparan sulfate.

After immunization with heparan sulfate proteoglycan (HSPG) isolated from human glomeruli, two mouse monoclonal antibodies (mAbs) against heparan sulfate (HS) were obtained. Both mAbs were of the IgM isotype and showed identical specificity. One of these, mAb JM-13 is described in detail. In enzyme-linked immunosorbent assay and Western blotting, reactivity was found with human glomerular basement membrane HSPG and HS. No binding occurred to the core protein of HSPG obtained after removal of HS with trifluoromethanesulfonic acid. In enzyme-linked immunosorbent assay, mAb JM-13 did neither bind to other proteoglycans, nor to other basement membrane components like collagen type IV, laminin, or fibronectin. In indirect immunofluorescence on cryostat sections of human kidneys, a restricted staining of tubular basement membranes was observed along with staining of the vascular basement membranes. In the glomerulus, a weak, fine granular staining was seen along the capillary wall and in the mesangium. MAb JM-13 bound also to the basolateral cell membranes of proximal tubular cells, to the cell membranes of cultured human and rat glomerular visceral epithelial cells, rat mesangial cells, human hepatocytes in culture, and in liver cryostat sections, indicating also a recognition of cell surface-associated HS. Pretreatment of the sections with heparitinase abolished binding of JM-13, whereas treatment with chondroitinase ABC had no effect. Inhibition studies in enzyme-linked immunosorbent assay as well as in indirect immunofluorescence corroborated the HS specificity of mAb JM-13. In conclusion, mAb JM-13 binds to an epitope on the HS chains of glomerular, tubular, and cell surface-associated HSPG.

Animals↗