Efficient isolation of rat aortic endothelial cells by elimination of contaminating cells with a monoclonal antibody.
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Publications and source records attributed to T Oite.
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A new animal model of progressive glomerulosclerosis was developed by administering a single i.v., injection of MoAb 1-22-3 to unilaterally nephrectomized rats. Renal morphological analysis revealed that glomerular lesions characterized by mesangial cell proliferation and mesangial matrix expansion were induced in about 95% of the glomeruli. Approximately 20% of the glomeruli of the unilaterally nephrectomized rats showed sclerosis or segmental sclerosis by week 6 after MoAb injection and crescent formation was observed in some glomeruli (ca 4%). Cellular infiltration was also noted in some parts of the interstitium. Increased expression of transforming growth factor-beta (TGF-beta) was observed in the unilaterally nephrectomized rats treated with MoAb 1-22-3, but we could not demonstrate pathological involvement of platelet-derived growth factor (PDGF), even though early-stage mesangial cell proliferation was observed. The mechanism of mesangial cell proliferation in this model remains to be elucidated. The relatively short period of time needed to induce the sclerotic changes in considered to be a great advantage of this model for clarifying the mechanisms involved in the chronic progression of mesangial proliferative glomerulonephritis.
Susceptibility to the development of MoAb 5-1-6-induced proteinuria was investigated in four different rat strains, i.e. Brown-Norway (BN), Lewis (LEW), Sprague-Dawley (SD) and Wistar. An intravenous injection of 5 mg of MoAb 5-1-6 to female 7-week-old rats of a given strain induced massive proteinuria in BN, LEW and Wistar rats. However, SD rats developed almost no proteinuria. A similar tendency was observed in the second experiment, in which the injected dose of MoAb was adjusted according to the body weight of each rat (3 mg/100 g body weight). Immunofluorescence (IF) and immunoelectron microscopy (IEM) revealed no differences between the binding patterns of the MoAbs to normal rat kidneys derived from each strain. Quantitative study using 125I-labelled MoAb showed that there was no significant difference in the amount of antibody bound to the kidney 1 h and 5 days after injection between two rat strains, LEW and SD. Localization of 5-1-6 in vivo and its kinetics were investigated. In IF a linear-like pattern along capillary walls was observed 2 h after injection in both LEW and SD strains. This linear-like pattern was shifted to a granular pattern in proteinuric LEW rats 6 days after injection, whereas it remained linear-like in non-proteinuric SD rats. IEM confirmed this difference in the localization of injected MoAb 6 days after injection to LEW and SD rats also at the ultrastructural level. We conclude that there is a clear-cut strain difference in the development of proteinuria induced by MoAb 5-1-6. SD rats were less susceptible to MoAb-induced glomerular injury than BN, LEW and Wistar rats. Although the exact reason for strain variation in susceptibility to MoAb-induced proteinuria remains to be clarified, the movement of bound MoAb, presumably together with corresponding antigenic molecule along the glomerular epithelial cell surface followed by endocytosis into the epithelial cell, seems to be closely related to the induction of proteinuria.
The purpose of this study was to examine whether transforming growth factor-beta (TGF beta) acts as an autocrine cytokine in cultured mesangial cells. Measangial cell conditioned media (CM) were prepared and tested for their effect on mesangial cell proliferation. CM showed a concentration dependent inhibition on mesangial cell proliferation and the activity was enhanced by treating conditioned media with acid. Gel filtration analysis showed peak inhibitory activity to reside in fractions with an estimated molecular weight range of 16-30 KD. The activity was partially blocked by anti-TGF beta antibody, but not nonimmune control IgG. The presence of TGF beta was confirmed using the mink lung epithelial cell assay. Furthermore, the addition of anti-TGF beta antibody directly into culture media significantly enhanced mesangial cell proliferation. These results demonstrate that measangial cell produce both active and latent forms of TGF beta, which functions as an autocrine growth inhibitor for mesangial cells.
We developed an experimental protocol for planting exogenous antigens with different molecular weights and charges on the constituents of the renal tubulointerstitium. The cationized antigens were injected selectively into the left renal arteries of Wistar rats. Antigen localization was documented by immunohistochemistry on frozen sections. Cationized bovine serum albumin (BSA; 68 kDa, isoelectric point = 9.5) localized almost exclusively along the glomerular capillary wall. After application of highly cationic polyethyleneimine, cationized BSA given subsequently was found in a linear distribution along the glomerular capillary wall and along the peritubular capillaries. The fate of highly cationized ovalbumin conjugated with trinitrophenol (TNP-OA), subjected to gel filtration to obtain monomers (42 kDa, isoelectric point > 10) differed; it was deposited in a linear pattern on the tubular basement membrane (TBM) and Bowman's capsule, and remained up to 36 h after injection. Noncationized, monomeric TNP-OA (42 kDa, isolectnic point = 4.6) showed fine granular deposition in the tubular epithelium exclusively. These findings indicate that the barrier of the glomerular BM acts selectively on antigens with different molecular weights. They either settle on the peritubular capillaries, after passing the glomerular, or reach the urinary space, after which they are reabsorbed by the tubular epithelial cells to reach the TBM.
The effects of traditional Chinese medicine (Sairei-to) on monoclonal antibody (mAb) inducing proteinuria were examined. Four hundred, 200 and 100 mg/kg body weight (BW) of Sairei-to and phosphate-buffered saline (PBS) as a control were injected intraperitoneally into four groups of female Wistar rats every day from 5 days before intravenous injection of mAb to the end of the experimental period. The amount of urinary protein excretion was significantly suppressed in roughly a dose-dependent manner. For example, 116.6 +/- 89.7 mg/day of proteinuria was observed in control groups compared to 4.2 +/- 15.2 mg/day in the 400 mg/kg BW of Sairei-to treated group 2 days after mAb injection (P < 0.01). Statistically significant (P < 0.01) differences were again observed in a repeat experiment (122.1 +/- 53.7 vs 10.2 +/- 10.1 mg/day on the 2nd day) without affecting the glomerular filtration rate. No significant difference was recognized between the total amount of mAb bound to glomeruli 1 h after mAb injection in Sairei-to-treated and non-treated rats, indicating that Sairei-to pretreatment has no effects on the number or quality of antigenic molecules. The effect of Sairei-to on a non-immunological model of proteinuria was also examined. No significant reduction of proteinuria by similar Sairei-to treatment was observed in aminonucleoside of puromycin nephropathy. The authors conclude that mAb-induced proteinuria in rats is significantly suppressed by the traditional Chinese medicine, Sairei-to.
The role of T cell-mediated immunity in the early phase of nephrotoxic serum nephritis (NTN) was examined by transfer of pan T, CD8-positive, and CD4-positive cells. The disease was induced by transferring rabbit gamma-globulin (RGG)-sensitized T cells to nude (rnu/rnu) rats pretreated with a subnephritogenic dose (a dose insufficient to cause proteinuria) of nephrotoxic serum. Mild but abnormal proteinuria was detected, and macrophages showed significant accumulation in glomeruli. Transfer of not only RGG-sensitized CD4-positive cells but also CD8-positive cells separated by the T cell markers OX8 and OX38 using the panning method caused an increased accumulation of macrophages in isolated glomeruli. No host antibody against rabbit immunoglobulins was demonstrated either in glomeruli by immunofluorescence or sera by ELISA in the early disease phase. These findings support a pathological role of T cells in initiation of glomerular injury in NTN.
By immunization with rabbit immunoglobulins and the injection of a subnephritogenic dose of rabbit nephrotoxic serum (NTS), accelerated-type nephrotoxic serum nephritis (NTN) was induced in heterozygous (rnu/+) rats but not in athymic nude (rnu/rnu) rats. By transferring rat antibody against rabbit immunoglobulins, marked proteinuria was induced also in nude rats (202.0 +/- 98.4 mg/day on day 3) as in rnu/+ rats (122.6 +/- 35.3 mg/day on day 3). No marked differences in histological findings could be found between both groups. The most marked increase in the number of intraglomerular infiltrating cells was observed in heterozygous rats indicating that the presence of thymus-derived cells leads to the accumulation of more cells in glomeruli. We conclude that humoral immunity alone is enough to accelerate the pathogenic mechanism which induces glomerular injury with heavy proteinuria in this model.
The effect of chlorpromazine, one of several calmodulin antagonists that inhibit cytoskeletal movement, on the local kinetics of injected proteinuria-inducing MoAb 5-1-6 was examined to test the hypothesis that proteinuria is inhibited if the antigen recognized by MoAb 5-1-6 or injected MoAb remains on the surface of epithelial foot processes. MoAb 5-1-6 was injected into both chlorpromazine-treated (5 mg/100 g body weight) and untreated rats. As a positive control for the chlorpromazine treatment, anti-Fx1A serum was also injected into other chlorpromazine-treated and untreated rats. Chlorpromazine inhibited neither the change in localization of injected MoAb 5-1-6 nor proteinuria, although it showed an inhibitory effect on redistribution of immune complex and the fixation of complement in passive Heymann glomerulonephritis induced by injection of anti-Fx1A serum. We conclude that the kinetics of bound MoAb 5-1-6 are regulated by a system different from that operating in passive Heymann glomerulonephritis.
Murine MoAb 1-22-3 has already been reported to bind to the mesangial cell surface and to cause transient proteinuria and mesangial morphological changes characterized by mesangiolysis, subsequent mesangial cell proliferation and mesangial matrix increase by a single i.v. injection. In this study, MoAb-induced glomerulopathy was quantitatively analysed. No correlation between the severity of mesangial morphological changes and the degree of proteinuria was detected (r = 0.190). The minimum dose injected to induce abnormal proteinuria was 25 micrograms. This dose corresponded to 1.79 micrograms/2 kidneys 30 min after MoAb injection. The highest average level of proteinuria was observed in rats injected with 500 micrograms of MoAb, and less proteinuria was observed in rats injected with 10.0, 5.0 and 2.0 mg. Although the amounts of kidney-fixing MoAb and the subsequent deposition of rat C3 in the high-dose-injected group were larger than in the 500 micrograms injected group, the numbers of infiltrating inflammatory cells were the same in both groups. No correlations between the degrees of such mediators and proteinuria were observed.
A single i.v. injection of 3 mg of the F(ab')2 fragment of MoAb 5-1-6 into rats induced immediate proteinuria (128.1 +/- 80.7 mg/24 h on day 1) which lasted 1-2 days. In contrast, rats administered 10 mg of the corresponding Fab fragment did not develop abnormal proteinuria even though an equivalent dose of the intact MoAb 5-1-6 far exceeded the nephritogenic dose. The total kidney binding of 125I-Fab fragment was 209.5 +/- 34.3 micrograms/2 kidneys. This exceeded that obtained by injection of 3 mg MoAb 5-1-6 IgG1 (58.9 +/- 12.5 micrograms/2 kidneys at 1 h) and was similar to that obtained following injection of 3 mg F(ab')2 fragment (235.3 +/- 16.9 micrograms/2 kidneys). Immunofluorescence (IF) showed a linear pattern along the glomerular capillary wall at 1 h after the administration of MoAb 5-1-6 IgG1, F(ab')2 or Fab fragment. On day 5, fine to coarse granules were observed scattered in F(ab')2-injected rat glomeruli, whereas granules were densely localized in Fab-injected rat glomeruli. Complement-depleted rats injected with 3 mg of MoAb 5-1-6 IgG1 developed proteinuria with the same time course as non-depleted rats. This observation, together with the ability of F(ab')2 to induce proteinuria, indicates that proteinuria induced by MoAb 5-1-6 is complement-independent. This study suggests that MoAb 5-1-6-induced proteinuria is initiated by cross-linking of the epitopes by divalent MoAb 5-1-6 and is independent of complement activity.
We have investigated the effects of various extracellular matrix (ECM) components on the behaviour of human mesangial cells (HMC) in a gel culture system using a modified MTT assay method. When cultured on a reconstituted basement membrane, Matrigel (M gel), HMC aggregated and formed isolated colonies initially, then extended an array of cell processes to form a dendritic network structure and proliferated very slowly as the culture period progressed. On type I collagen gel (CI gel), however, HMC developed elongated bipolar shapes, migrated into the gel, and showed rapid cell growth. Next, separate ECM components, such as type III and IV collagens, laminin, heparin and heparan sulphate, were incorporated into CI gel and HMC proliferation was assessed. Although attachment of HMC to each gel did not differ significantly, HMC proliferation was inhibited markedly on gels containing type III collagen, heparin and heparan sulphate; type IV collagen suppressed HMC proliferation slightly; and laminin had no significant effect. These data suggest that interstitial type I and III collagens, which are often observed in diseased glomeruli, as well as the basement membrane components, may play important roles in the regulation of HMC proliferation under pathophysiological conditions in vivo. We conclude that HMC behaviour is affected by the surrounding ECM constituents, which appear to function as a refined modulator.
We have identified a unique mesangial matrix protein of the human glomerulus by using a monoclonal antibody, 1G10, generated against culture human glomerular cells. By immunofluorescence, the antigen recognized by 1G10 (1G10 antigen) is present in mesangium and smooth muscle tissue and cannot be detected in any other tissue examined. Immunoelectron microscopy of glomeruli indicated that 1G10 antigen is present exclusively in the mesangial matrix at the endothelial-mesangial interface. The 1G10 antigen is also expressed by cultured mesangial cells, but not by cultured glomerular epithelial cells, umbilical endothelial cells or fibroblasts. 1G10 did not react with the mesangial matrix proteins [fibronectin (FN), laminin (LAM), collagen types I, III, IV, V, and VI (Col I, III, IV, V, VI), heparin sulfate proteoglycan (HSPG), or thrombospondin (TS)] present under normal and diseased states or smooth muscle antigens (myosin, actin), but did react with a 4 M urea extract of renal cortex and a 0.3% deoxycholate extract of isolated glomeruli. Two dimensional immunoblot analysis using the urea extract demonstrated the binding of 1G10 to an approximately 200 KDa polypeptide with pI 6.0. On one dimensional immunoblot this band did not show cross react with polyclonal antisera to FN, LAM, Col IV, V, VI, HSPG or TS. This mesangial matrix component is trypsin and periodate sensitive, suggesting that it has the character of glycoprotein. In renal biopsy specimens from patients with mesangial proliferative glomerulonephritis (GN) and membranoproliferative GN, the expression of the 1G10 antigen increased along with mesangial hypercellularity or increased accumulation of mesangial matrix, but decreased in completely sclerosed glomeruli. No significant changes in 1G10 antigen expression was observed in membranous GN or minimal change nephrosis compared to normal glomeruli. This study suggests that the 1G10 antigen may not only be a useful marker for the clinical assessment of GN, but may also serve as a potential tool for the study of the pathogenesis of glomerular diseases characterized by cellular proliferation and mesangial matrix expansion.
Murine monoclonal antibody (MoAb) 5-1-6 was already reported to bind to epithelial cell foot processes and to cause proteinuria in rats. In vivo kinetics of the injected MoAb 5-1-6, relationship between the quantity of kidney-binding antibody and proteinuria, and changes in the amount of antigenic molecule recognized by this MoAb in the proteinuric state were studied. The amount of total kidney-binding antibody (TKAb) as determined 1 h after a 2 mg administration was 50.8 +/- 10.4 micrograms/2 kidneys, and TKAb declined to 1.9 +/- 0.4 at day 15. The minimum dose of MoAb required to induce proteinuria was 125 micrograms as the injected dose. This dose corresponded to 12.8 micrograms of TKAb at 1 h and 0.34 micrograms of TKAb at day 5. The amount of MoAb 5-1-6 binding to isolated normal glomeruli was also shown to exceed 147.7 micrograms/76,000 glomeruli, indicating proteinuria to be induced provided more than 8.7% (= 12.8/147.7) of the critical epitopes is specifically occupied by MoAb. The total amount of MoAb 5-1-6 bound to glomeruli in vivo and in vitro was assayed with [125I]-labelled anti-mouse IgG. The amount of [125I] anti-mouse IgG bound to glomeruli was 6.93 +/- 0.45 micrograms/10,000 glomeruli from rat 5 days after this MoAb injection and 26.58 +/- 0.66 micrograms/10,000 control glomeruli, indicating the decrease in the number of MoAb 5-1-6-recognized antigen molecules in glomeruli isolated from the rat in proteinuric state induced by this MoAb. Thus, the MoAb 5-1-6-recognized molecule itself may principally function to regulate the permeability of the glomerular capillary wall and the decrease of the molecule may lead to proteinuria.
Irreversible mesangial changes with persistent proteinuria were induced in rats given two consecutive injections 2 weeks apart of a MoAb 1-22-3 to rat mesangial cell. The characteristics of the resulting lesions were investigated and compared with those of the reversible change induced by a single injection. At 24 h after the second injection, mesangiolytic changes similar to those after a single injection were evident. The accumulation of macrophage-like cells in glomeruli observed at 1 week after the first injection was not evident during the experimental period after the second injection. Hypercellularity with the characteristics of intrinsic mesangial cell and increased mesangial matrix were already present 1 week after the second injection. And mesangial sclerotic change progressed up to 6 months. Deposition of collagen type I and type III and accumulation of collagen fibril at the ultrastructural level were evident in rats 6 months after the second injection. Proteinuria started immediately and continued for more than 6 months after the second injection. The mesangial sclerotic change with persistent proteinuria described here is considered to be a better model for investigating the mechanism of chronic progression of human mesangial proliferative glomerulonephritis.
A MoAb 1-22-3 (IgG3) was produced in mice immunized with rat glomeruli. A blotting study indicated the antigen molecule recognized by this MoAb has a molecular weight of about 25 kD, which is the same as that of the Thy 1.1 molecule. This MoAb is capable of inducing the morphological changes similar to those induced by anti-thymocyte serum or the anti-Thy 1.1 MoAb, ER4 and massive proteinuria in rats by a single i.v. injection. Proteinuria started immediately after MoAb 1-22-3 injection and peaked on day 5. Reaction products were detected by immunoelectron microscopy in vitro on the limited mesangial cell surface facing endothelial cells and in vivo in partially lysed mesangial cells 30 min after injection. Unlike the proteinuria-inducing MoAb ER4, reactivity of MoAb 1-22-3 was detected neither on endothelial cells, epithelial cells, nor along the glomerular basement membrane in vivo and in vitro. There is a difference in reactivity toward guinea-pig and rabbit materials between MoAb 1-22-3 and the commercial anti-Thy 1.1 MoAb (OX7). The antigenic determinant of MoAb 1-22-3 is concluded to be a new epitope and only the binding of MoAb 1-22-3 to this epitope proved to lead to an abnormal increase of glomerular capillary wall permeability.
Change in the localization of the antigen recognized by the proteinuria-inducing monoclonal antibody (MA) 5-1-6 in experimental nephrosis was studied by indirect and biotin-avidin immunofluorescence, and immunoperoxidase at light and electron microscopical levels. The proteinuric state was induced by the administration of the aminonucleoside of puromycin (PAN) or adriamycin. The antigen decreased in quantity and/or its distribution changed with an increase in the amount of protein excreted in both experimental models. Recovery from the alterations observed during the development and proteinuria appeared to occur when PAN-induced proteinuria subsided. This antigenic molecule may thus be essential for maintaining the normal permselectivity of glomerular capillary walls.
Conditioned media from human peripheral blood leucocytes treated with lipopolysaccharide (LPS) induced a marked increase in the 3H-thymidine incorporation of cultured mesangial cells at low serum concentration (four to six times higher than control). Two sizes (100-70 and 8-12 kD) of monocyte-derived mesangial cell proliferating factors (MDF) were separated by column chromatography. Their peaks were distinct from those of thymocyte proliferating activity. The addition of anti-human interleukin-1 (IL-1) or anti-recombinant human interleukin-6 (IL-6) antibody to the fractionated MDF failed to have any effect on the mitogenic activity toward mesangial cells. The addition of anti-human platelet-derived growth factor (PDGF) antibody to the low molecular weight fraction decreased mesangial cell mitogenic activity (40-60% of control), but addition to the higher fraction did not (80-100% of control). From these data it seems that a large portion of the monocyte-derived mesangial cell growth factor was not comprised of IL-1 or IL-6 but of PDGF-like molecules; and that there is an unknown mesangial cell proliferating factor (or factors) besides IL-1, IL-6 and PDGF.