Proinflammatory mediators of glomerular injury and mechanisms of activation of autoreactive T cells.
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Publications and source records attributed to C Zoja.
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We have recently reported that renal preproendothelin-1 gene is up-regulated in rats with renal mass reduction (RMR) and that time-dependent increase in urinary excretion of the corresponding peptide correlates with renal disease progression. Here we evaluated whether a specific endothelin subtype A (ETA) receptor antagonist, FR139317, reduced signs of disease activity in this model. Two groups of rats were given FR139317 or its vehicle (saline) from day 7 to day 60 after the surgical procedure. Sham-operated animals were the control group. Blood pressure, urinary protein excretion and serum creatinine were evaluated at days 0, 7 (before FR139317 or saline administration), 30, 45 and 60. At sacrifice, histological evaluation of renal tissue was performed. The results showed that ETA receptor blocker reduced the abnormal permeability to proteins, limited glomerular injury and prevented renal function deterioration thus confirming the working hypothesis. These findings suggest that this class of compounds may eventually prove useful in the treatment of human progressive nephropathies.
We previously demonstrated that urinary endothelin excretion is increased in rats with extensive renal mass reduction, a model of progressive renal disease. Here we explored whether the increased urinary endothelin in this model were due to induction of renal pre-pro-endothelin-1 gene and whether changes in endothelin synthetic pathway correlated with the development of glomerulosclerosis. Four groups of rats with renal mass reduction and four groups of sham-operated control rats were studied 7, 30, 60 and 120 days after the surgical procedure. Urinary protein excretion in renal mass ablation animals did not differ from controls at seven days, but was already significantly elevated (P < 0.01) 30 days after surgery. Then proteinuria progressively increased in rats with remnant kidney at values above 400 mg/day at day 120. Serum creatinine concentration also progressively increased with time in renal mass ablation rats, unlike sham-operated animals, and values were significantly different (P < 0.01) at each of the points considered. Rats with renal mass reduction, unlike sham-operated animals, developed focal glomerulosclerosis that affected 8% of glomeruli at day 30, and 24% of glomeruli at day 120. Seven days after renal mass reduction renal pre-pro-endothelin-1 (pre-pro ET) mRNA was comparable to that of sham-operated rats, while a 2.5-, 5- and fourfold increase in 2.3 Kb pre-proET-1 transcript was observed at 30, 60 and 120 days, respectively. Urinary excretion of endothelin was significantly elevated (P < 0.01) in rats with renal mass reduction with respect to sham-operated rats, starting from 30 days after surgery and increased further thereafter.(ABSTRACT TRUNCATED AT 250 WORDS)
Advances in cell and molecular biology have generated fresh insights into the mechanisms of glomerular injury, a field with very few substantial advances in the past 20 years. Currently, the nature of renal antigens involved in the immune reaction is being identified, as in the case of Goodpasture antigen. Many recent studies focus on T-cell and macrophage functions in glomerulonephritis that initiate acute inflammatory events and determine glomerular disease progression. Recent data established that after inflammatory cell migration to the glomerulus, subsequent damage depends on cell adhesion to cytokine-activated endothelial cells, a process mediated by a variety of specialized molecules. It seems easy to predict that within the next few years these studies will have a major impact on the way these diseases are treated. Already, evidence indicates that, in experimental animals, monoclonal antibodies blocking adhesive molecules prevent or reduce glomerular damage. Cytokines and growth factors, by promoting resident cell proliferation and modulating extracellular matrix synthesis and metabolism, modulate acute glomerular injury and subsequent scarring. Recent studies have established that glomerular injury is related to urinary protein excretion, an issue that has been approached in humans by combining studies on barrier size selectivity with morphometry. An emerging concept suggests that leaking of proteins through the glomerular capillary has an intrinsic renal toxicity that is likely due to proximal tubular over-reabsorption of the abnormally filtered macromolecules. Data are also accumulating that may soon link the degree of tubulointerstitial injury with glomerular damage and subsequent development of renal scarring.
We investigated the effects of culture medium conditioned with endothelial cells exposed to hemodynamic shear forces on modulation of mesangial cell (MC) growth. Confluent monolayers of bovine aortic endothelial cells, grown in medium containing 10% fetal calf serum, were exposed to static or to laminar flow conditions for 24 h using a cone-and-plate device. Endothelial cell-conditioned medium was used to study the growth of bovine MC by [3H]thymidine uptake. The proliferative response of MC to fresh medium (containing 10% fetal calf serum) and to culture medium from endothelial cells under static flow [66.7 +/- 34.1 vs. 73.9 +/- 30.0 counts/min (cpm) x 10(-3)] was comparable. In contrast, medium conditioned with endothelial cells exposed to laminar shear stress of 8 dyn/cm2 almost completely abolished MC proliferation (5.8 +/- 6.9 cpm x 10(-3), P < 0.01). To establish whether this effect is due to endothelial cell production of a substance that inhibits MC proliferation or simply to metabolization of serum growth factors in the culture medium, we performed shear stress experiments using serum free medium and we added 10% fetal calf serum after shear exposure just before the proliferation assay. In this condition a significant antiproliferative effect of endothelial cell supernatant under laminar flow was obtained (27.7 +/- 23.4 vs. 68.8 +/- 45.8 cpm x 10(-3), laminar vs. static, P < 0.05), suggesting that endothelial cells under shear stress effectively produce a factor that inhibits MC proliferation. These results would suggest that local glomerular capillary blood flow could play a role in the regulation of MC mitogenesis.
Aging in rats with intact kidneys is associated with changes in selective glomerular permeability to macromolecules resulting in proteinuria and progressive glomerular sclerosis. We have previously reported that angiotensin-converting enzyme (ACE) inhibition in Munich Wistar Fromter/Ztm (MWF/Ztm) rats resulted in a significant reduction of proteinuria, in respect to untreated animals, and that treated animals were protected against the development of glomerular sclerotic lesions. The present study was designed to establish whether ACE inhibition protects against glomerular injury in male Sprague-Dawley rats, which develop spontaneous proteinuria and glomerulosclerosis with age. The effect of ACE inhibition was tested when proteinuria was already present. Four-month treatment with the ACE inhibitor perindopril prevented the increase in systolic blood pressure, compared with vehicle-treated animals, and significantly decreased urinary protein excretion of aging rats. Partial protection of the development of glomerular sclerosis was also observed.
We have previously documented that cyclosporine exerts a direct cytotoxic effect on endothelial cells and causes an increase in renal vascular resistance (RVR) in the rat. In the present study we investigated whether FK506, a novel immunosuppressive agent thought to be less nephrotoxic than CsA, impairs endothelial cell function in vitro and affects RVR in vivo. In vitro eicosanoid release and endothelin release were measured in bovine aortic endothelial cells in culture exposed for 1, 6, and 24 hr to increasing concentrations of FK506 (1 nM to 10 microM) or CsA (0.5, 10 microM). No significant changes in TxB2 and 6-keto-PGF1 alpha (the stable breakdown products of TxA2 and PGI2, respectively) and endothelin release were found after 1 and 6 hr of incubation with all the concentrations of FK506 and CsA considered. FK506 did not affect endothelin release even after 24 hr of incubation. In contrast, cell exposure to CsA was associated with a dose-dependent increase in TxB2, 6-keto-PGF1 alpha, and endothelin release that reached statistical significance after incubation with 10 microM CsA. FK506 did not induce cell detachment or lysis at any concentration and time considered, while 10 microM CsA induced a significant reduction in cell count accompanied by cell lysis. In vivo studies showed that a single i.v. injection of FK506 to rats within a broad range of doses (28 ng/kg to 2.8 micrograms/kg) did not modify RVR. This was true even for a dose as high as 20 mg/kg, while 20 mg/kg CsA caused a dramatic increase in RVR. We conclude that FK506, unlike CsA, does not induce endothelial cell injury in vitro. Whether this explains the differences in renovascular resistance observed in vivo after acute injection of FK506 and CsA is an attractive possibility that needs to be further explored.
We have recently shown that interleukin-1 is a potent stimulus of gene expression and production of leukocyte chemotactic factors, colony-stimulating factors, and interleukin-6 in human mesangial cells in culture. Here, we sought to determine whether interleukin-1 induces its own gene expression in human mesangial cells. Interleukin-1 mRNA levels were quantitated by Northern blot analysis with total cellular RNAs isolated from human mesangial cells exposed for 6 h to medium alone or in the presence of human recombinant interleukin-1 beta (1 to 100 ng/mL). Interleukin-1 induced interleukin-1 mRNA expression in a dose-dependent manner. An additional finding of this study was that human mesangial cells constitutively express the 80 kd interleukin-1 receptor type 1 gene. When human mesangial cells were exposed to interleukin-1, interleukin-1 receptor expression was not modified. Similarly, other stimuli like tumor necrosis factor, transforming growth factor beta, or interleukin-6 did not modulate interleukin-1 receptor expression. Recombinant interleukin-1 receptor antagonist blocked the interleukin-1 mRNA as well as interleukin-6 and interleukin-8 mRNA accumulation induced by interleukin-1 beta. Lipopolysaccharide, which is a known stimulus for interleukin-1 transcription in several cell types, also induced interleukin-1 mRNA accumulation, thus indicating that lipopolysaccharide mediates interleukin-1 gene activation in human mesangial cells through an interleukin-1-independent pathway. These data support the pivotal role of interleukin-1 in regulating mesangial cell cytokine genes and may be taken to indicate the existence of an interleukin-1-mediated positive feedback loop that might control the secretion of active cytokines within the glomeruli when an immunological or inflammatory injury takes place.
Infection with verotoxin-producing Escherichia coli has been implicated in the cause of hemolytic-uremic syndrome. Cases of thrombotic thrombocytopenic purpura and verotoxin infections have been also described. In this study we sought to determine the following: (1) whether verotoxin induces microvascular lesions in the rabbit, (2) the organ distribution of such lesions, and (3) the distribution of verotoxin glycolipid receptors in the various organs. Rabbits challenged with verotoxin-1 purified from E. coli O157:H7 had anorexia, lethargia, and limb paralysis; renal function, however, was normal. Central nervous system lesions found included pericellular and perivascular edema, focal hemorrhage, vascular lesions, and severe alterations of Purkinje cells. Histologic changes were also seen in the colon, with mucosal and submucosal edema and hemorrhage, and in the lung, with interstitial fibrosis and focal lymphohistiocitic infiltration. No lesions were detected in kidney, heart, liver, and spleen. Screening of various tissues for the presence of the verotoxin receptors revealed galabiosyl ceramide in the central nervous system and globotriosyl ceramide in the gastrointestinal tract, lung, and spleen. No receptors for verotoxin were found in the heart, liver, and kidney. These results indicate that organ localization of the disease in rabbits is dependent on the distribution of verotoxin receptors.
BACKGROUND: Extracellular matrix components are known to modulate mesangial cell functions as adhesion, motility and proliferation. Among other extracellular matrix components, mesangial cells have been recently described to secrete thrombospondin (TSP), a high molecular weight glycoprotein, produced by several cell types, and known to play a role in embryogenesis, wound healing, angiogenesis, and tumorigenesis. The aim of this work was the functional and molecular characterization of TSP interactions with mesangial cells. EXPERIMENTAL DESIGN: Adhesion of mesangial cells to TSP-coated plastic, and chemotaxis in the Boyden chamber assay were tested. In order to identify TSP active domains, heparin, known to bind to the amino-terminal region of TSP, four monoclonal antibodies directed against specific domains of the molecule, and TSP fragments obtained by enzymatic digestion were used. RESULTS: We found that TSP induces mesangial cell adhesion and chemotaxis, in a dose dependent manner. Adhesion was inhibited by antiserum against TSP, and by an anti-CD36 monoclonal antibody tested in the presence of heparin, but not by the peptide Gly-Arg-Gly-Asp-Ser. We have also found that only the carboxy-terminal end of TSP retains the adhesive properties of the molecule, while all the fragments tested showed some degree of chemotactic activity. CONCLUSIONS: We conclude that TSP modulates mesangial cell adhesion and motility, thus acting as a potential autocrine and paracrine regulator of mesangial cell functions in normal and pathologic conditions.
Renal endothelin (ET) production was investigated in rats after renal mass ablation, a model of progressive renal disease characterized by glomerular hemodynamic alterations and capillary thrombosis, and in sham-operated animals. Thrombin stimulation of renal cortical tissue from rats with renal mass reduction, 45 but not 7 days after surgery, generated significantly (P less than 0.01) more ET than tissue from sham-operated animals. Exposure to thrombin of isolated glomeruli from remnant but not sham kidneys also significantly (P less than 0.01) increased ET production compared with unstimulated glomeruli. At day 45, in rats with renal mass ablation ET plasma levels were numerically lower, whereas urinary excretion rate of ET was significantly (P less than 0.01) increased compared with sham-operated animals. After a 50-min intravenous infusion of 125I-ET to normal rats and animals with renal mass ablation, less than 0.3% and 0.03%, respectively, of total infused radioactivity was recovered in urine. These results indicate that thrombin-stimulated ET production by renal cortical tissues is increased in rats with renal mass reduction. Despite normal or low-normal plasma ET levels, urinary excretion of the peptide is markedly increased in this model. The exogenously labeled ET added to circulation is not excreted by the kidney, suggesting that enhanced urinary excretion rate would reflect an increased renal production of the peptide in rats with remnant kidney.
We have reported previously that conjugated estrogens that are effective in shortening the prolonged bleeding time in uremic patients are also effective on bleeding time in a rat model of uremia. Using such a rat model we have recently demonstrated that nitric oxide (NO), an endothelium-derived vasodilator, is involved in mediating the bleeding tendency of uremia. With the present study we wanted to investigate whether conjugated estrogen mixture or its active component, 17 beta-estradiol, reduce uremic bleeding by interfering with the NO pathway. Our results showed that the shortening effect of conjugated estrogen and 17 beta-estradiol on bleeding time of uremic rats was completely reversed by giving the animals the NO precursor L-arginine, but not D-arginine, which is not a precursor of NO. Dexamethasone which at variance to progesterone inhibits the process of induction of NO-forming enzyme, shortened the prolonged bleeding time of uremic rats within 4 hours from injection. This effect was eliminated by L-arginine but not D-arginine administration. The glucocorticoid receptor antagonist cortexolone prevented the shortening of bleeding time induced by dexamethasone, suggesting that a receptor-mediated mechanism is involved in the hemostatic effect of dexamethasone as previously reported for estrogens. Unlike conjugated estrogens and dexamethasone, progesterone had no effect on bleeding time. All these findings would indicate that the effect of estrogens and dexamethasone on primary hemostasis in uremia might be mediated by changes in NO synthetic pathway.
The present study was designed to assess whether human glomerular mesangial cells in culture express preproendothelin gene and whether endothelin gene expression in the mesangium is regulated by factors potentially released by inflammatory cells and platelets infiltrating the glomerular tuft during the course of various types of glomerulonephritis. For this purpose mesangial cells were incubated for 6 hours in the presence of absence of interleukin 1 beta (IL-1 beta), transforming growth factor-beta (TBF-beta), the thromboxane A2 analogue U-46619, and thrombin. Resting mesangial cells expressed a 2.3-kilobase mRNA on blot hybridization analysis with a human cDNA preproendothelin probe, indicating that this type of cells, in addition to glomerular endothelial cells, constitutively expresses endothelin gene. IL-1 beta did not change endothelin mRNA levels in respect to unstimulated mesangial cells. At variance, TGF-beta, U-46619, and thrombin had a marked effect on endothelin mRNA, stimulating a 3- to 8-fold increase over basal levels. Quantification of actin mRNA and analysis of the autoradiographic signals provided validation of the difference in the endothelin mRNA levels. Expression of preproendothelin mRNA in either resting or stimulated mesangial cells was associated with synthesis and release of the corresponding peptide in the cell supernatant as determined by a specific radioimmunoassay for endothelin. Endothelin production from IL-1 beta stimulated mesangial cells was not different from that of unstimulated cells, whereas a significant (p less than 0.01) increase in endothelin production was observed after cell stimulation with TGF-beta, U-46619, and thrombin. The demonstration that mesangial cells constitutively express mRNA for preproendothelin and release endothelin into culture medium, together with the finding that endothelin gene expression and production in mesangial cells are regulated by molecules potentially released at glomerular level during an inflammatory reaction may suggest that endothelin participates in the complex process of glomerular disease progression.
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The capacity of human cultured mesangial cells to produce soluble factors potentially relevant for mechanisms of inflammation and immunity at the glomerular site was analyzed. The nature of the secreted factors initially was investigated by Northern blot analysis using total cellular RNAs isolated from resting and activated mesangial cells. On exposure of mesangial cells to human recombinant interleukin-1 beta (IL-1 beta), high levels of interleukin-8 (IL-8) and monocyte chemotactic protein-1 (MCP-1) mRNAs were detected. Similar transcripts were found after stimulation with human recombinant tumor necrosis factor-alpha (TNF-alpha). Active secretion of IL-8 was documented by radioimmunoassay in supernatants of mesangial cells activated by either IL-1 beta or TNF-alpha. Using an in vitro migration assay, supernatants from resting mesangial cells were found to be devoid of any chemotactic activity for granulocytes or monocytes. On stimulation with IL-1 beta, however, mesangial cell supernatants expressed MCP-1 biologic activity detected as induction of a strong migratory response for human monocytes but not for granulocytes. In addition, IL-1 beta and TNF-alpha induced high levels of granulocyte-macrophage colony-stimulating factor (GM-CSF) and macrophage colony-stimulating factor (M-CSF) mRNAs. Similarly IL-1 beta and TNF-alpha induced the interleukin-6 (IL-6) gene and active secretion of its mature protein. These data strongly support an effector role for mesangial cells in modulating immune-inflammatory responses in glomeruli. Release of cytokines may activate not only infiltrating inflammatory cells through short paracrine pathways, but also mesangial cells themselves through an autocrine pathway.
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Intravenous conjugated estrogens reduce the prolonged bleeding time in uremic patients and in a rat model of uremia. However, estrogens have major side effects related to their hormonal activity. We investigated whether a beta-resorcylic acid lactone, zeranol (a compound with close spatial similarity to estrogens but with a weak estrogenic activity), improves primary hemostasis in uremic rats and whether the effect is mediated by estrogen receptors. The results showed that single oral administration of zeranol significantly (P less than 0.01) shortened the bleeding time of uremic rats, 20 mg/kg being the minimum effective dose. This effect was long-lasting (72 hours). The dose of 30 mg/kg zeranol reproduced the pattern observed after 20 mg/kg but bleeding time values were still significantly (P less than 0.01) shortened 96 hours after the administration. No changes in hematocrit, platelet and leukocyte count, and serum creatinine were detected after zeranol administration. When uremic rats were pre-treated orally with two estrogen receptor antagonists, tamoxifen and clomiphene (3 mg/kg), zeranol did not shorten the bleeding time, thus suggesting that the hemostatic effect of zeranol was due to an estrogen receptor-mediated mechanisms. These results might have important future implications for the management of uremic bleeding in humans.
We investigated the effect of endothelin on the generation of eicosanoids, which are known to regulate basal and stimulated mesangial cell tone. The results showed that endothelin is a potent stimulus of prostaglandin E2 (PGE2), prostacyclin (PGI2), and thromboxane A2 (TxA2) synthesis by bovine mesangial cells. Percentage increases in eicosanoid synthesis induced by endothelin (10(-10) to 10(-6) M), were 50 to 275% for PGE2, 28 to 168% for PGI2 and 42 to 111% for TxA2, respectively. Endothelin-induced eicosanoid synthesis in mesangial cells was concentration, but not time dependent. Aspirin (500 microM) completely prevented endothelin-induced eicosanoid synthesis. The calcium entry blocker nitrendipine (10(-8) M) failed to inhibit endothelin-induced eicosanoid synthesis. These data suggest that endothelin-induced changes in renal circulation and glomerular function in normal and disease conditions may be modulated by the concomitant stimulation of mesangial eicosanoid synthesis.