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T Oite

Publications and source records attributed to T Oite.

At least 55 records · Page 3Linked to original sources

Monocytes secrete factors regulating glycosaminoglycan synthesis in mesangial cells in vitro.

The present study was conducted to determine the manner in which monocytes increase mesangial matrices, particularly glycosaminoglycans (GAGs) which interact with various other matrix components such as collagens, laminin, fibronectin and lipoproteins. A supernatant of human peripheral blood monocyte cultures activated by lipopolysaccharide (LPS) contains stimulating factors for glycosaminoglycan synthesis in rat mesangial cells (MCs). The culture supernatant in this study was concentrated and fractionated by gel chromatography and the GAG-stimulatory factor was found to have a molecular weight of 10-17 kD. This factor was shown to be present in fractions different from that of IL-1. Gel and ion-exchange chromatography studies of GAGs synthesized by MCs indicated the elution patterns of GAGs in the presence and absence of the monocyte culture supernatant to be essentially the same. Local infiltration of monocytes into the glomerulus, often seen in various types of glomerular injury, may be an important factor in the accumulation of the mesangial matrix.

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Nephrotoxic serum nephritis in nude rats: the roles of host immune reactions.

A description is made of renal lesions in rats induced by heterologous (rabbit) nephrotoxic serum with or without subsequent host immune reactions against it and the effects of immune reactions on the course of classical nephrotoxic serum (Masugi) nephritis are discussed. The disease was induced by injecting congenitally athymic ACI nude rats (rnu/rnu) and their normal heterozygous littermates (rnu/+) with rabbit anti-rat glomerular basement membrane (GBM) antiserum. In the autologous phase, rat IgG and immunoglobulins were localized in a linear pattern along capillary walls only in nephritic heterozygous rats. In the indirect plaque-forming cell (PFC) assay against rabbit immunoglobulins in the autologous phase, significantly more PFC could be detected in nephritic heterozygous rats than in nephritic nude rats. The nude and heterozygous rats were essentially the same with respect to the amount of urinary protein, histological change and clinical course. At least in classical nephrotoxic serum nephritis in rats, host immune reactions against GBM bound heterologous nephrotoxic serum were concluded to have no effect on the course of the disease.

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Modulation of mesangial cell proliferation by endothelial cells in coculture.

The effects of direct cell contact between endothelial (ECs) and mesangial cells (MCs) on MCs proliferation were examined in a coculture system in vitro. Mitomycin C treated ECs (M-ECs) were plated on culture dishes and MCs were cocultured with these M-ECs. Cell number was measured at the end of days 1, 3, and 5. In the coculture system with direct contact, the growth of cocultured MCs was modulated as follows: 1) the growth of MCs was inhibited up to day 3, and 2) a high level of proliferation was observed between days 3 and 5. This biphasic pattern of growth could not be detected in coculture of fibroblasts with MCs. In coculture without direct contact, using intercup chambers, the kinetics in cell proliferation between cocultured MCs and MCs alone were essentially the same. Conditioned media derived from cocultures up to day 3 in a contact-dependent manner inhibited the 3H-thymidine uptake of MCs. From these results, it would thus appear that MCs proliferation is regulated by intercellular contact with ECs.

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Mechanism of formation of subepithelial electron-dense deposits in active in situ immune complex glomerulonephritis.

The influences of the epitope density on cationic antigens on the fate of immune reactants and the formation of subepithelial electron dense deposits (EDD) were studied in a model of active in situ immune complex glomerulonephritis (ICGN), using a hapten-carrier system. Three weeks after immunization with trinitrophenol conjugated bovine serum albumin (TNP17.3-BSA), the left kidneys of rats were perfused with 500 micrograms of TNP6.2-cationized human immunoglobulin G (C-HIgG) or TNP31.3-C-HIgG. The renal tissues were then examined at intervals by light, immunofluorescence, and electron microscopies. The perfused kidneys of rats given high-valency antigens (TNP31.3) showed marked subepithelial EDDs with foot process retraction associated with proteinuria. In contrast, those of rats given low-valency antigens (TNP6.2) showed only small subepithelial EDDs beneath the slit membrane, which consisted of apparently normal epithelial cells, and did not develop proteinuria. Kinetic studies on immunofluorescence showed that glomerular depositions of immune reactants (TNP-carrier conjugate, rat IgG, and C3) were present longer in rats treated with high-valency antigens than in those treated with low-valency antigens. We conclude that the epitope density on cationic antigens strongly influences the retention of immune reactants and the formation of subepithelial EDDs, as well as development of glomerular injury.

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The charge-dependent materno-fetal barrier in the rat.

The charge-dependent materno-fetal barrier of near-term rats was examined with two pairs of radiolabelled proteins differently charged. When the proteins were injected intra-arterially, the maternal blood concentrations of the two cationized proteins (BSA and human IgG) exceeded those of native proteins in the chorioallantoic placenta and fetus during the period of examination (15-180 min). In the yolk sac placenta, these percentages were essentially the same as those of native proteins. Following intra-placental injection, the amounts of the cationized proteins in the chorioallantoic placenta and fetus were significantly (p less than 0.01) greater than those of native proteins at the particular times examined (5 and 60 min). In contrast, the amounts of cationized proteins in the yolk sac placenta were basically the same as those of native proteins. The data presented above indicate the charge on proteins that considerably influenced their materno-fetal transfer, particularly via the chorioallantoic placenta.

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Ultrastructural studies in passive in situ immune complex glomerulonephritis. A rat model for membranous glomerulonephritis.

Morphologic studies were performed in a passive model of in situ immune complex glomerulonephritis in rats. The formation and fate of subepithelial immune complexes as well as the role of glomerular polyanion in the induction of disease were examined. Unilateral in situ immune complex glomerulonephritis was induced in rats by perfusion of cationised horse spleen ferritin (pI greater than 9.5) (400 micrograms/rat) into the left kidney followed by systemic injection of 0.2 ml (= 400 micrograms precipitating antibody) of sheep anti-ferritin antiserum 2 h later. This schedule induced glomerulonephritis with proteinuria (mean maximum 100 mg/24 h between the 5th and the 12th day). Rats were sacrificed at intervals between 1 h and 42 days after induction of glomerulonephritis, samples of renal tissue were examined by light, immunofluorescence and electron microscopy (including staining of anionic sites by polyethyleneimine). The lesion induced closely resembled that of membranous glomerulonephritis in man as massive subepithelial deposits were seen with very little cellular infiltration or proliferation. The antigen (ferritin) deposits were initially located subepithelially; from 2 weeks onwards intramembranous deposits in the thickened basement membrane were present, the apparent translocation being due to excessive newly synthesised basement membrane material which encloses the deposits. A loss of anionic sites in the lamina rara interna, lamina rara externa and on the epithelial cell surface coat preceded the development of proteinuria.

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Hapten-specific cellular immune response producing glomerular injury.

A new model of experimental glomerulonephritis (GN) in which a cell-mediated (delayed-type) reaction predominated was established. Cationized TNP-BSA conjugates were planted in the kidney of rats by perfusion via the renal artery. Rats which had been sensitized with the TNP hapten 7 days previously revealed marked exudative and proliferative changes in their glomeruli, accompanied by transient proteinuria. A cellular influx was seen without deposition of any autologous antibody. The resulting data are compatible with the idea that cell-mediated immune reactions can participate in tissue damage in glomerular disease.

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Ultrastructural alterations of glomerular anionic sites in IgA nephropathy.

The ultrastructural alterations of glomerular anionic sites were studied in biopsy specimens from 34 patients with IgA nephropathy using polyethyleneimine (PEI). Prominent common findings in the glomeruli of the patients were few PEI particles in electron dense deposits in the mesangial and subepithelial area and marked reduction in glomerular anionic sites covered with deposits. The anionic sites of the glomerular basement membrane (GBM) and epithelial cell surface coat (ESC) appeared unaltered in the patients with hematuria and/or mild proteinuria. But in patients with proteinuria in the nephrotic range, focally discrete loss of anionic sites in the lamina rara externa (LRE) was seen and the number of anionic sites of the ESC were decreased with retraction of the foot processes. The anionic sites of the lamina rara interna showed much less change in these patients. Subepithelial deposits were often seen concomitantly with focal loss of anionic sites in the LRE at the site of the deposits, but subendothelial deposits had little influence on the anionic sites of the neighboring GBM. The anionic sites of GBM that showed focal thinning with small GBM projections were appreciably decreased in number, but those in split GBM were not decreased. These results suggest that either loss of the negative charge on the glomerular capillary wall associated with subepithelial immune deposition or morphological changes of the GBM contribute to the progression of proteinuria in IgA nephropathy.

Adolescent↗

Massive proteinuria induced in rats by a single intravenous injection of a monoclonal antibody.

A single i.v. injection of a mAb 5-1-6 to rats was found to cause massive though transient proteinuria. This mAb 5-1-6, IgG1 was produced by immunization of BALB/c mice with collagenase-treated Wistar rat glomeruli and was highly organ and species specific. Immunoelectron microscopy using immunoperoxidase with the avidin-biotin complex and immunogold staining indicated mAb 5-1-6 to bind in vitro to the surface of glomerular epithelial foot processes, mainly to slit diaphragms. The recognized antigenic molecule was not susceptible to neuraminidase treatment and its Mr was about 51 kDa by immunoprecipitation. A one-shot i.v. injection of this mAb induced proteinuria in rats starting immediately, reaching the peak on day 8 (mean value of 150 mg/24 h), then gradually decreasing to normal level on day 18. The in vivo localization of administrated mAb 5-1-6 changed with time. Linear binding along glomerular capillary walls was observed 2 h after injection. However, 3 days later, it partially shifted to a fine granular pattern. The linear pattern disappeared and the size as well as intensity of the fluorescent granules decreased on day 12 to trace positive on day 18. Immunoelectron microscopy revealed the binding pattern of in vivo injected mAb 5-1-6 after 2 h to be similar to that in vitro. Three days later, injected mAb was observed within multivesicular bodies in glomerular epithelial cells as well as along the surface of foot processes and around slit diaphragms. Twelve days after injection, mAb along the surface of the foot processes and around slit diaphragms decreased but those in multivesicular bodies were observed more frequently. Rat IgG and C3 could not be detected throughout the period of observation. No histologic abnormalities were noted except for partial retraction of epithelial foot processes at the peak of proteinuria on day 8. This mAb thus provides a valuable means for examining the mechanism of proteinuria.

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Monoclonal antibodies to human glomerular antigens.

Using cultured human fetal kidney cortical cells as antigen, two monoclonal antibodies (moAbs) against human glomeruli were produced. One of these moAbs, H-4, recognized the cell surface of glomerular epithelial cells, and the other, H-13, recognized the extracellular matrix present in the mesangial area. Both also reacted with liver, H-4 recognizing antigen present on the hepatocyte, and H-13 recognizing antigen distributed along the sinusoid. Species specificity for these moAbs was examined using mouse, rat, guinea pig and rabbit glomeruli, which revealed that H-4 reacted with rat glomerular epithelial cells and H-13 stained guinea pig glomerular mesangium. In the human fetal kidney, H-13 reacted with the mesangium, glomerular and tubular basement membrane and Bowman's capsule, and H-4 with the glomerular and tubular epithelial cells. Dot immunobinding assay of fibronectin purified from glomerular culture supernatant and plasma revealed that H-13 recognized both plasma and cellular fibronectin. Immunoblot analysis of 2.0 M guanidine HCl extract after dissociation in sodium dodecyl sulfate and electrophoresis demonstrated binding of H-4 to a 125 kd polypeptide. Immunoblot analysis of thermolysin-digested fibronectin exhibited binding of H-13 to 145 kd and 110 kd fragments, but not to 38 kd-29 kd fragments. In renal biopsy specimens from patients with membranous nephropathy. H-13 stained the glomerular basement membrane (GBM), but not the mesangium, whereas anti-fibronectin antisera stained both the GBM and the mesangium. In those from patients with minimal change nephrotic syndrome (MCNS), IgA glomerulonephritis (IgAGN) and membranoproliferative glomerulonephritis (MPGN), the staining pattern with H-13 was similar to that with polyclonal anti-fibronectin antisera. These results indicate that H-4 recognizes a 125 kd polypeptide constituent of the glomerular epithelial cell membrane and that H-13 recognizes the cell binding domain of fibronectin as well as revealing structural alterations in the mesangium and GBM.

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The electrophoretic pattern of urinary protein in in situ immune complex glomerulonephritis.

Urinary protein excreted in active in situ immune complex glomerulonephritis (ICGN) was qualitatively analyzed by the comparison of sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) patterns of urinary proteins from rats with Masugi GN, active Heymann GN (AHGN), and chronic serum sickness GN (CSSGN). In the SDS-PAGE analysis of urinary protein excreted in the active in situ ICGN and Masugi GN models, 200- and 145-kD macromolecules and low molecular weight components around 12 kD were excreted in large quantities at the full development stage (greater than 100 mg/24 h urinary protein). These findings, however, were obscure or lacking in CSS-GN and AHGN at the peak of proteinuria. Electrophoretic patterns of urinary proteins including lower molecular weight proteins could be divided into two groups: either active in situ ICGN and Masugi GN or AHGN and CSSGN. These two groups corresponded to the differences of morphologic expression such as proliferative changes rather than degree of proteinuria. The location of immune complex formation and deposition, probably different among the experimental models, may play an important role for determining the mediation and nature of glomerular injury.

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Active in situ immune complex glomerulonephritis using the hapten-carrier system: role of epitope density in cationic antigens.

The role of epitope density in cationic antigen was investigated in an active model of in situ immune complex glomerulonephritis (ICGN) using the hapten-carrier system. Trinitrophenol (TNP) was conjugated with variable density to cationic human immunoglobulin (C-HIgG) to yield TNP6.2-C-HIgG (low-valency antigen) and TNP31.3-C-HIgG (high-valency antigen). In rats preimmunized with TNP17.3-bovine serum albumin (BSA), endocapillary proliferative GN with proteinuria developed in rats receiving high-valency antigen. In contrast, no significant abnormalities in renal histology or urinalysis were observed when a low-valency antigen was injected. These results indicate that glomerular injury produced by hapten-specific immune reaction is affected by the number of haptenic groups conjugated to the carrier molecule (epitope density) in active in situ ICGN.

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Nephritogenicity of anti-Engelbreth-Holm-Swarm sarcoma antibody.

We have examined the antibody activity and nephritogenicity of anti-Engelbreth-Holm-Swarm (EHS) sarcoma antiserum in order to analyze the pathogenesis of the EHS nephropathy which has already been reported by us. An increased amount of urine protein was not recognized in rats injected with a large quantity of anti-EHS sarcoma antiserum. In addition, rats immunized with rabbit IgG before anti-EHS sarcoma antiserum injection developed no abnormal proteinuria, despite positive fluorescent staining for rat IgG as well as rabbit IgG in the glomeruli. From these results we concluded that nephritogenic antibodies could not be produced in rabbits by immunization with EHS sarcoma, which could induce the EHS nephropathy in an active model.

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Sclerotic lesions in the glomeruli of Buffalo/Mna rats.

Spontaneously developing focal and segmental glomerulosclerosis (FGS) in Buffalo/Mna rats was studied. There were no differences in the occurrence of the disease between male and female rats. Plasma macromolecules were detected in the urine samples of 2-month-old rats using sodium dodecyl sulphate polyacrylamide gel electrophoresis. All 4-month-old animals had proteinuria in excess of 30 mg/24 h. At the age of 4 months, sclerotic glomeruli were rarely observed. At the age of 6 months, all animals had a few sclerotic glomeruli in every kidney section examined. Animals which were 22 months old had sclerotic lesions in 37.8-52.1% of the glomeruli. Ultrastructural examination revealed that alterations in epithelial cells, such as effacement of foot processes, vacuolization, and a podocytic membrane-like structure, were found at the age of 2 months. The animals examined were neither uremic nor hypertensive. Our present study showed that female as well as male Buffalo/Mna rats had an earlier onset of the disease than the other strains of rats and that alterations in glomerular epithelial cells were first detected in the early stage of the disease.

Aging↗

The effect of protamine sulfate on the course of immune complex glomerulonephritis in the rat.

In vivo studies in rats demonstrated that the binding of a highly cationic antigen (cationized human IgG, pI greater than 9.5) to glomerular polyanion could be significantly reduced by prior application of a small polycation, protamine sulfate. The degree of inhibition was dose dependent and the highest dose used, 4 mg/100 g body weight, reduced antigen binding by approximately 70%. In further experiments the ability of protamine sulfate to enhance elimination of cationic antigen-antibody immune complexes from the glomerular capillary wall was examined. Daily treatment with protamine sulfate, starting after induction of nephritis, produced a significant but only moderate reduction in the persistence of the antigen, without having any effect on proteinuria. Proteinuria could only be prevented when protamine sulfate was given immediately before induction of nephritis. Protamine sulfate had little influence on the course of established renal disease in the model employed. These results do not substantiate the concept of charge competition as a potentially useful therapeutic strategy.

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Monoclonal autoantibodies in Heymann nephritis.

We have developed hybridoma cell lines, each of which secretes a monoclonal antibody (MoAb) to rat renal and hepatic tissue antigens, from Lewis rat with Heymann's nephritis. Three antibodies bind to the brush border of proximal tubular epithelium (BB), one in a fine net-like pattern (no. 3-11), another one in a coarse granular pattern (no. 1-8) and the third one in a typical pattern (no. 3-9). Three antibodies bind to glomerulus in characteristic patterns but not to BB. After repeated intravenous injections of MoAb (no. 3-11), granular mesangial deposits of rat IgG were observed and of MoAb (no. 1-8), fine granular deposition along capillary walls. These monoclonal autoantibodies should be of value in research on the mechanism of autoimmune membranous nephropathy.

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Ultrastructural alterations of glomerular anionic sites in idiopathic membranous glomerulonephritis.

The relation of ultrastructural alterations of glomerular anionic sites to morphological changes of the glomerular basement membrane (GBM) was studied in biopsy specimens from patients with idiopathic membranous glomerulonephritis (MGN) using polyethyleneimine (PEI) as a cationic probe. The subepithelial deposits did not fix PEI, and only a very few anionic sites were found between subepithelial deposits and adjacent epithelial cells. Thus, anionic sites of the lamina rara externa (LRE) were markedly decreased in number and interrupted by subepithelial deposits in the earlier stages (stage I and II). As the deposits were incorporated into the GBM in the later stage (stage III), the anionic sites of the LRE were restored on the epithelial cell surface coat (ESC) covering the deposits, but foot process effacement persisted during the course of the disease. The anionic sites of the lamina rara interna (LRI) appeared much less altered in all stages of MGN. These findings suggest that subepithelial deposition of immune reactants is associated with focal loss and disorganization of anionic sites on the GBM, resulting in a defect of glomerular-barrier function.

Adolescent↗

Ultramicroscopic localization of cationized antigen in the glomerular basement membrane in the course of active, in situ immune complex glomerulonephritis.

The sequence of antigen localization and the interaction of immune deposits with the anionic sites of the glomerular basement membrane (GBM) were investigated in an active model of in situ immune complex glomerulonephritis using a cationized ferritin. Three weeks after immunization with native horse spleen ferritin, the left kidneys of rats were perfused with 500 micrograms of cationized ferritin through the left renal artery. One h after renal perfusion, most of ferritin particles localized subendothelially, corresponding to the anionic sites of the lamina rara interna. In the glomerular capillary loops, infiltrating polymorphonuclear leukocytes and monocytes were seen. Some of these monocytes were in direct contact with immune complexes containing ferritin aggregates associated with anionic sites of the lamina rara interna. At 24 h, numerous ferritin aggregates were present subepithelially, preferentially beneath the slit membrane. The subepithelial location of ferritin did not always correspond to the anionic sites of the lamina rara externa. From days 3 to 7, there was remarkable endocapillary cell proliferation in some loops and pronounced effacement of epithelial foot processes. Focal detachment of epithelium from the GBM was observed occasionally. From days 14 to 28, most of ferritin aggregates were located intramembranously and subepithelially. Membranous transformation has already begun around the subepithelial deposits. This morphological study provides insight into the fate of immune deposits and injury to the GBM in the glomerulonephritis.

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