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Inhibition of glomerular visceral epithelial cell endocytosis during nephrosis induced by puromycin aminonucleoside.

Puromycin aminonucleoside (PA), injected intravenously into rats in a single dose, causes proteinuria and ultrastructural pathology reminiscent of human lipoid nephrosis (puromycin aminonucleoside nephrosis (PAN]. Glomerular epithelial cell (GEC) endocytosis was studied in this model and in rats with protein-overload proteinuria using ultrastructural morphometry. Disappearance curves were constructed for protamine-heparin aggregates (PHA), which localized in the subepithelial region of the glomerular basal lamina following intravenous injection of protamine followed by heparin. Five groups were studied: (a) preproteinuric PAN, 4 days after PA (mean 4.5 +/- 1.5 mg of urinary protein/24 hours); (b) proteinuric PAN, 10 days after PA (mean 128 +/- 9.6 mg/24 hours); (c) recovery from PAN (mean 12.5 +/- 1.5 mg/24 hours); (d) protein-overload proteinuria, induced by injecting albumin intraperitoneally (mean 211 +/- 15.9 mg/24 hours); and (e) saline-injected controls (mean 1.2 +/- 0.2 mg/24 hours). Only the proteinuric PAN animals (group 2) had altered GEC endocytosis with a PHA half-disappearance time different from the group 5 saline controls (143.2 versus 72.6 minutes, p less than 0.05). The half-disappearance times in groups 1, 3, and 4 were 74.6, 80.7 and 86.5 minutes, respectively. Altered GEC function was further characterized by comparing PHA disappearance with the abundance of albumin-filled vacuoles in the GEC. Prolongation of PHA disappearance in group 2 correlated with the virtual absence of vacuoles; they were abundant in nonproteinuric phases of PAN and in animals with overload proteinuria. We conclude (a) GEC endocytosis is reduced only during the proteinuric phase of PAN, (b) GEC endocytosis is active during the preproteinuric phase of PAN and is a factor that may account for the absence of protein in the urine despite abnormal GBM permeability, (c) decreased GEC endocytosis during proteinuric PAN reflects abnormal cell metabolism due to PA and is not simply a consequence of albuminuria, as overload proteinuria did not produce diminished PHA or albumin uptake.

Animals↗

The role of protein kinase C in the increased generation in isolated rat hepatocytes of the hydroxyl radical by puromycin aminonucleoside.

Puromycin aminonucleoside (PAN) has been known to induce proteinuria. The increased generation of reactive oxygen species (ROS) has been implicated in this toxicity of PAN. We have reported that PAN increases the synthesis of methylguanidine (MG) and creatol which are the products of the reaction of creatinine and the hydroxyl radical in isolated rat hepatocytes. However, the mechanism for the increased ROS induced by PAN is still unclear. In this paper, we investigate the role of protein kinase C (PKC) on the PAN induced reactive oxygen generation in isolated rat hepatocytes. Isolated hepatocytes were incubated in Krebs-Henseleit bicarbonate buffer containing 3% BSA, 16.6 mM creatinine and tested reagents. MG and creatol were determined by high-performance liquid chromatography using 9,10-phenanthrenequinone for the post-labeling. PAN increased MG and creatol synthesis in isolated rat hepatocytes by 60%. 1-(5-Isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride (H-7), a PKC inhibitor, at 10 and 100 microM significantly inhibited MG and creatol synthesis with or without PAN. The inhibition rate is dose dependent from 10 to 100 microM. H1004, a reagent used as control for H-7, did not affect (at 10 microM) or increased little (at 100 microM) the synthesis of MG and creatol. Ro31-8425, a potent PKC inhibitor, significantly inhibited (at 10 microM) MG synthesis in the presence of PAN. PKC in the membrane fraction, a marker of PKC activation, increased over the initial concentration by a factor of 1.65-fold at 60 min incubation and 2.16-fold at 120 min with PAN, while it changed little without PAN. These results indicate that PAN activates PKC resulting in increased hydroxyl radical generation in isolated rat hepatocytes.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Podocytic cytoskeletal disaggregation and basement-membrane detachment in puromycin aminonucleoside nephrosis.

Puromycin aminonucleoside--(PAN) treated rats develop acute nephrotic syndrome, mimicking human minimal lesion disease. In PAN nephrosis, podocyte detachment from the glomerular basement membrane (GBM) is the most likely cause of massive proteinuria in this model. To elucidate further the mechanisms of PAN-induced cellular dysfunction, new methods were employed to visualize podocyte cytoskeletal aggregation and to measure fibrillar attachment to the GBM. Adult Sprague-Dawley rats (n = 4/group) received a single tail-vein injection of PAN (75 mg/kg). On days 1, 2, 3, and 5 following injection, 24-hour urine collections were obtained for creatinine clearance, albuminuria, and total proteinuria. Then kidneys from each group were fixed by perfusion. Podocytic cytoskeleton was visualized by scanning electron microscopy. Subepithelial GBM staining and attachment fiber number, observed on digitized images of transmission electron micrographs, were quantitated with computer-based density analysis. A significant reduction in attachment fiber number in the GBM lamina rara externa occurred by day 5. On scanning electron micrographs, the secondary and tertiary podocytic processes were observed to be formed by highly aggregated cytoskeleton, which became partially disaggregated by day 3, was totally absent by day 5, and normalized by day 20. Immunogold staining revealed that actin and vinculin localized to the tertiary podocytic processes in the normal state were dispersed into the cell body following PAN. Podocyte cytoskeletal disaggregation precedes, and detachment from the GBM occurs simultaneously with, the onset of massive proteinuria in the PAN model.

Actins↗

An adenosine deaminase inhibitor prevents puromycin aminonucleoside nephrotoxicity.

Puromycin aminonucleoside (PAN) toxicity was totally inhibited in the rat in vivo and in cultured glomerular epithelial cells (GECs) in vitro using the adenosine deaminase (ADA) inhibitor, 2'-deoxycoformycin (DCF). DCF completely inhibited ADA activity in glomeruli and protected against the development of PAN nephrosis; the 24-h urinary protein excretion of treated rats compared with controls (PAN rats) 9 days after PAN injection was 16 +/- 2 mg and 524 +/- 55 mg, respectively (p < .01). Morphological examination also demonstrated that the glomerular epithelial cells were protected against PAN-induced damage. Furthermore, when DCF was added to the first passage of GECs simultaneously with PAN, the adenosine triphosphate contents of remnant GECs on culture substrata increased in a dose-dependent manner, and PA toxicity was completely inhibited by 10(-4) M DCF. The order of ADA activity in glomeruli from various species was as follows: rat > monkey > guinea pig > dog > rabbit > mouse. High activity of ADA in the glomerulus was limited to species in which PAN induced nephrosis. Additionally, DCF increased glomerular cyclic AMP contents, resulting from enhanced adenosine accumulation in the pericellular space. These results indicate that the pathogenesis of PAN toxicity is closely related to adenosine metabolism and that ADA plays a key role in this model. Furthermore, we speculate that DCF contributes to the inhibition of reactive oxygen metabolites by decreasing the substrate of xanthine oxidase and/or increasing pericellular adenosine accumulation.

Adenosine↗

Does captopril change oxidative stress in puromycin aminonucleoside nephropathy?

Puromycin aminonucleoside (PAN) nephropathy in rats has been induced by the intraperitoneal injections of PAN. One group of animals which received PAN has been treated simultaneously with captopril (angiotensine converting enzyme-ACE-inhibitor) with the aim to test whether continuing treatment with captopril along with PAN injections would be able to modulate the toxic effects of PAN. The third group of rats was given only captopril. Morphological changes in the kidney were evaluated by scanning electron microscopy that showed the loss of podocyte foot processes in the kidney of PAN treated animals but also in the kidney of captopril treated ones as well as in the animals treated with both drugs simultaneously. Reduced glutathione content, catalase, superoxide dismutase (SOD), glutathione peroxidase (GSH-Px), xanthine oxidase activities as well as lipid peroxides were investigated in rat blood and kidney. Captopril given alone produced a significant decrease of plasma lipid peroxides, but it did not show any significant effect on investigated antioxidative factor levels neither in blood nor in the kidney. PAN given alone produced a significant depletion of plasma lipid peroxides, kidney catalase and erythrocyte GSH-Px activity as well as a significant increase of plasma catalase and erythrocyte SOD activity. Treatment of animals with both drugs simultaneously resulted in a significant increase of erythrocyte SOD activity and a significant decrease of plasma lipid peroxides, erythrocyte GSH-Px and kidney SOD activities. Kidney xanthine oxidase activity showed a significant increase in both PAN and PAN plus captopril treated animals in comparison with the values of captopril treated rats. These data suggest that PAN changes the antioxidative factor pattern in rat blood and kidney. Contrary to our expectations that captopril may protect the toxic effects of PAN it only to a certain extent modifies these effects showing protective effect only on tissue catalase activity.

Angiotensin-Converting Enzyme Inhibitors↗

Increased apoptosis in acute puromycin aminonucleoside nephrosis.

Acute puromycin aminonucleoside nephrosis (PAN) in rats is characterized by heavy proteinuria associated with renal hypercellularity. The role of apoptosis in the resolution of renal hypercellularity was investigated in PAN. To study the participation of apoptosis in PAN, renal tissues were collected from nephrotic and control rats on weeks 1, 2 and 7 after a single puromycin aminonucleoside injection. Apoptosis was evaluated by light and electron microscopy. Apoptotic DNA fragmentation was detected by TUNEL staining. Renal tissues were also evaluated by the presence of leukocyte common antigen (LCA), ED1 (macrophages) and proliferating cell nuclear antigen (PCNA) with corresponding monoclonal antibodies. An increased number of apoptotic (TUNEL+) cells was observed in the glomerulus at week 1. Electron microscopy analysis showed glomerular apoptosis mainly in endothelial cells. In the interstitium and tubules, increased apoptosis was observed at weeks 1 and 2. Increased apoptosis was accompanied with increased LCA+, ED1+ and PCNA+ cells in the interstitium and with increased PCNA+ cells in tubules. There was a high significant correlation between the number of apoptotic cells and the number of interstitial LCA+, ED1+ and PCNA+ cells. Tubular PCNA expression was correlated with tubular apoptosis. We also observed significant correlation between glomerular, interstitial and tubular apoptosis with proteinuria during the nephrosis. Double staining analysis showed that about 13% of interstitial or tubular apoptotic cells were positive for PCNA. All these values returned to normal by week 7. These results indicate that apoptosis is involved in the repairing process of this disease model.

Acute Disease↗

Dietary vitamin E supplementation ameliorates renal injury in chronic puromycin aminonucleoside nephropathy.

Chronic puromycin aminonucleoside nephropathy (PAN) is an experimental analog of focal segmental glomerulosclerosis. Progressive renal damage in this model is partly mediated by excessive production of oxidant species. Whether dietary supplementation with vitamin E, an endogenous lipophilic antioxidant, ameliorates the severity of chronic PAN was tested. PAN was induced by seven serial injections of the glomerular epithelial cell toxin puromycin aminonucleoside, 2 mg/100 g body wt per dose, over a 12-wk period. Experimental animals (N = 8) received vitamin E-enriched chow (100 IU/kg), whereas control PAN rats (N = 10) were fed standard rodent diet containing vitamin E (30 IU/kg of chow). The administration of vitamin E had no effect on somatic growth or blood pressure; however, rats with PAN fed the vitamin E-enriched diet had an increased hematocrit. In addition, the experimental diet resulted in a 50% reduction in urinary total protein and albumin excretion and stabilization of the serum albumin, cholesterol, and triglyceride concentrations (P < 0.01). The inulin clearance was 69% higher in the vitamin E-supplemented animals (P < 0.001). Tubular function, namely, phosphate reabsorption and beta 2-microglobulin excretion, was improved in rats with chronic PAN treated with the vitamin E-enriched diet. There was a significant decrease in glomerulosclerosis and glomerular planar area, and tubulointerstitial scarring was diminished in vitamin E-treated animals with chronic PAN (P < 0.01). These beneficial effects on renal structure and function were associated with reduced malondialdehyde content in the kidney and liver.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Impact of cyclosporin on podocyte ZO-1 expression in puromycin aminonucleoside nephrosis rats.

Puromycin aminonucleoside (PAN)-induced nephrosis is a well-described model of human idiopathic nephrotic syndrome, but the mechanism of PAN's effect is not completely understood. To investigate whether proteinuria in the PAN model is associated with an alteration of zonula occludens-1 (ZO-1) expression within the glomeruli, and whether cyclosporin A (CsA) has an effect on proteinuria and ZO-1 expression in this model, eighteen Sprague Dawley (SD) rats were assigned into three groups. Twelve rats received a single intraperitoneal injection of PAN (15 mg/100 g). The other six rats received an equal volume of saline (normal control group; control). CsA solution was administered intraperitoneally once a day for 20 days after the PAN injection (n=6, PAN+CsA). The remaining six rats received PAN, but they didn't receive CsA (n=6, PAN). Compared to control rats (35.1+/-5.4 mg/day), the 24-hour urinary protein excretion on day 18 was significantly higher in the PAN rats (1021.9+/-128.9 mg/day, p<0.01), and the CsA treatment partly reversed the increase in proteinuria in the PAN rats (556.4+/-102.3 mg/day, p<0.05). Glomerular ZO-1 protein expressions were significantly increased in the PAN rats as compared to the control group on day 20 (176%, p<0.01). CsA treatment for 20 days in the PAN rats inhibited the increase in ZO-1 protein expression by 71.1% (p<0.05). CsA treatment significantly diminished the glomerular ZO-1 expression in the PAN rats as assessed by immunohistochemistry. CsA treatment significantly reduced proteinuria and the diminished glomerular ZO-1 expression in a PAN nephrosis rat model. These findings suggest the potential role of the slit diaphragm associated proteins in the development of the nephrotic syndrome, and CsA decreased the proteinuria probably by a direct action on the expression of these proteins in podocytes. Further investigations are needed to clarify the role of slit diaphragm associated proteins in the development of PAN nephrosis.

Animals↗

Effect of indomethacin on lymphocyte response to mitogens in puromycin aminonucleoside nephrosis in the rat.

The mitogen response of peripheral blood lymphocytes to phytohaemagglutinin is depressed in rats with nephrotic syndrome induced by the administration of the aminonucleoside of puromycin. The mitogen response is normal after the administration of aminonucleoside of puromycin, but before the nephrotic syndrome develops. Nephrotic syndrome serum depresses the mitogen response of normal lymphocytes. This effect is attenuated by treatment of nephrotic rats with indomethacin, independently of any change in plasmas albumin concentration. Indomethacin in vitro has no effect. These studies suggest that the impaired response of nephrotic lymphocytes to phytohaemagglutinin is a secondary consequence of the nephrotic state, probably attributable, at least in part, to increased prostaglandin production in the nephrotic syndrome.

Animals↗

Cytotoxicity of sera from rats with puromycin aminonucleoside nephrosis.

Administration of puromycin aminonucleoside (PAN) to rats induces acute nephrosis with hyperlipidemia, and, in some experimental conditions, it results in chronic focal glomerulosclerosis. In this study, we examined the cytotoxicity of serum from rats with PAN-induced nephrosis, since hypercholesterolemia is considered to cause injury to vascular walls in atherosclerosis, the mechanism of which is analogous to that of glomerulosclerosis. About half of the tested sera from nephrotic rats (9 out of 17) were cytotoxic to cultured aortic endothelial cells. The toxic substance(s) was heat-stable and was extracted in the lipid fraction. Serum levels of triglyceride and cholesterol were markedly higher in the group of rats with cytotoxic serum than in the group with noncytotoxic serum. No cytotoxicity was associated with sera from control rats or the corresponding lipid fractions. Cytotoxic sera were also effective against cultured glomerular epithelial and mesangial cells. These results indicate that cytotoxic lipid is produced in rats with PAN nephrosis and the results raise the possibility that the cytotoxic lipid in nephrotic serum might contribute to lipid-mediated glomerular injury which may induce glomerulosclerosis at a subsequent stage.

Animals↗

Roles of active oxygen species in glomerular epithelial cell injury in vitro caused by puromycin aminonucleoside.

The mechanism of puromycin aminonucleoside (PAN)-induced nephrosis has not yet been well defined. In the present study, we examined the protective effect of active oxygen scavengers on the PAN-induced injury of cultured rat glomerular epithelial cells (GECs) and the generation of active oxygen species in PAN-treated GECs. When exposed to PAN (greater than or equal to 25 micrograms/ml), cellular damage occurred in a time- and dose-dependent manner as evaluated by both the LDH release and MTT colorimetric assays. Concomitant addition of either the hydrogen peroxide (H2O2) scavenger, catalase, or the iron chelating agent, deferoxamine, to the culture medium caused a striking reduction of cellular injury. This suggested a role for H2O2 and for hydroxyl radicals (OH.) generated via the iron-catalyzed breakdown of H2O2 in PAN nephrosis. Using the scopoletin fluorescence assay, the release of H2O2 into the culture medium by GECs exposed to PAN (greater than or equal to 50 micrograms/ml) was shown to increase dose-dependently (greater than or equal to 57 +/- 11 pmol/4.4 x 10(6) cells per h, P less than 0.01) as compared with control cells (14 +/- 2 pmol/4.4 x 10(6) cells per h). These results strongly suggested that active oxygen species, especially H2O2 and OH., might play an important role in PAN-induced GEC injury in vitro as well as in vivo.

Animals↗

Renal purine efflux and xanthine oxidase activity during experimental nephrosis in rats: difference between puromycin aminonucleoside and adriamycin nephrosis.

1. The hypothesis was tested that the renal xanthine oxidase system provides a source of oxygen free radicals in puromycin aminonucleoside and adriamycin experimental nephrosis by generating uric acid from hypoxanthine and xanthine. 2. The concentrations in renal tissue of the putative intermediary products of puromycin aminonucleoside metabolism, hypoxanthine and xanthine, and of their precursors, adenosine and inosine, were lower in rats treated with puromycin aminonucleoside than in normal controls, whereas concentrations of the metabolites were normal after adriamycin intoxication. Their daily urinary excretion was lower in the 24 h after puromycin aminonucleoside administration compared with the baseline values and returned to near normal levels within 5 days. After adriamycin the 24 h urinary excretion of xanthine and uric acid was double the baseline levels (P less than 0.001). 3. When equimolar amounts of hypoxanthine were injected instead of puromycin aminonucleoside, the concentration of all bases increased slightly in renal tissue and their urinary efflux was double the baseline level: allantoin, uric acid, the unmodified nucleotide and xanthine were the most represented compounds in urine. 4. The enzymatic activities relative to xanthine oxidase (EC 1.1.3.22) and xanthine dehydrogenase (EC 1.1.1.204) in renal tissues were unchanged 1 day after puromycin aminonucleoside or hypoxanthine intoxication and only moderately increased in both groups at 13 days (the time of appearance of heavy proteinuria in the puromycin aminonucleoside-treated group). In contrast, xanthine oxidase and xanthine dehydrogenase activities were higher in adriamycin-treated rats at 1 and 15 days after the treatment (P less than 0.001). 5. Feeding rats with normoprotein diets containing tungsten induced a marked and constant decrease of renal xanthine oxidase and xanthine dehydrogenase activities to 20% of the baseline values in both puromycin aminonucleoside- and adriamycin-treated rats. Inhibition of renal xanthine oxidase and xanthine dehydrogenase activities by tungsten was associated with a marked reduction (P less than 0.001) of proteinuria in adriamycin-treated rats and the same occurred with allopurinol, a specific inhibitor of xanthine oxidase activity. In contrast, tungsten treatment did not reduce the proteinuria associated with puromycin aminonucleoside, which reached a maximum 13 days after puromycin aminonucleoside intoxication. Hypoxanthine-treated rats were normoproteinuric after 2 months of observation. 6. These data demonstrate an activation of renal xanthine oxidase and xanthine dehydrogenase after adriamycin intoxication which is relevant to the induction of proteinuria. They also argue against the involvement of the renal xanthine oxidase system as a source of free radicals in puromycin aminonucleoside nephrosis and suggest that the nucleotide cycle is not a normal route for puromycin aminonucleoside degradation.(ABSTRACT TRUNCATED AT 400 WORDS)

Allantoin↗

Focal and segmental glomerulosclerosis following a single intravenous dose of puromycin aminonucleoside.

Focal and segmental glomerulosclerosis (FSGS) represents a final pathologic pattern of a number of human renal disorders. Among laboratory models, repeated intraperitoneal injections of the aminonucleoside of puromycin (PA) produces a histologic pattern not unlike the human process. A single intravenous dose of this drug usually results in glomerular morphologic changes in rats resembling those in human nephrotic syndrome with minimal changes. This report describes acute and chronic glomerular injury that begins as early as 8 days after a single central administration of PA and progresses to FSGS within an 18-week period. It seems likely that minimal change disease and FSGS are two pathologic processes in the same continuum of disease. In this model, the severity and persistence of the glomerular lesion may represent irreversible glomerular epithelial cell (GEC) injury secondary to the toxic effects of PA.

Animals↗

Reactive oxygen species and antioxidant defense in puromycin aminonucleoside glomerulopathy.

Results from several radical scavenger studies indirectly suggested an involvement of reactive oxygen species in the pathogenesis of puromycin aminonucleoside glomerulopathy. In this study, generation of reactive oxygen species was examined directly in glomeruli isolated from rats in the acute phase of puromycin aminonucleoside nephrosis and related to the changes in the glomerular antioxidant defense. Five and nine days after puromycin aminonucleoside injection, gross proteinuria, reduced creatinine clearances, and typical changes of glomerular morphology were present. Levels of reactive oxygen species were increased eightfold in glomeruli isolated 15 min after puromycin aminonucleoside injection, returned to baseline levels on days 1 and 5 after injection, and rose again to 14-fold on day 9 after injection, as determined by chemiluminescence with luminol. Further analysis of increased glomerular radical generation, using the chemiluminescence enhancer lucigenin and different radical scavengers, suggested a predominant involvement of hydroxyl radical and hydrogen peroxide in the initial increase in reactive oxygen species 15 min after puromycin aminonucleoside. Nine days after induction of nephrosis, primarily superoxide anion and hydroxyl radical were found to contribute to increased reactive oxygen species. Despite oxidative stress, antioxidant enzymes were not induced in the course of nephrosis. On the contrary, catalase and glutathione peroxidase activities declined 9 d after puromycin aminonucleoside injection. The results indicate that a transient increase in glomerular reactive oxygen species is sufficient to induce the oxidative glomerular injury observed in this model and that the glomerulus may not necessarily respond to oxidative stress with an induction of antioxidant enzymes.

Animals↗

Puromycin aminonucleoside nephropathy: ultrastructure, glomerular polyanion, and cell surface markers.

Puromycin aminonucleoside nephropathy with heavy proteinuria and oedema was induced in rats by 10 consecutive daily subcutaneous injections of aminonucleoside (1.67 mg/100 g of body weight). The main ultrastructural lesions were vacuolation of podocytes and total fusion of foot processes with loss of colloidal iron-reactive polyanion layer on the epithelial surface adjacent to the basement membrane. On the other hand the outer surface of podocytes and intravacuolar granular substance stained with colloidal iron. In scanning electron microscopy of freeze-fractured tissue the swollen podocytes and the urinary spaces displayed granular and filamentous precipitates. Seven cell surface antigens were examined by indirect enzyme immunohistochemistry with a series of MRC OX monoclonal antibodies. Glomeruli of control rats exhibited rare isolated Ia- positive endocapillary cells, possibly monocytes; these elements were significantly reduced in puromycin aminonucleoside nephropathy but there was an increase in Ia- positive cells in the cortical interstitium. Control kidneys harboured scanty interstitial T lymphocytes. These latter, especially the T8- positive cytotoxic/suppressor subpopulation, were markedly augmented in puromycin aminonucleoside nephropathy. The expression of class I histocompatibility antigens and of differentiation antigens (Thy 1) was not altered by aminonucleoside.

Animals↗

Morphometric study of myocardial changes during puromycin aminonucleoside induced nephropathy in rats.

Puromycin aminonucleoside (PAN)-treated rats developed a severe nephrotic syndrome. Morphometric analysis of the hearts revealed significant differences between treated and control rats regarding nuclear index, reticulin index, nuclear and myocellular transsectional area, capillary number and transsectional area of capillaries. These differences were comparable with those induced by adriamycin. It is suggested that PAN can induce morphometrically measurable abnormalities in hearts of rats comparable to the morphometric changes seen after adriamycin treatment. The question of whether nephropathy, a result of both DOX and PAN treatment of rats, adds to or perhaps even causes doxorubicin - induced cardiomyopathy remains unclear.

Animals↗

Effect of dietary antioxidants on puromycin aminonucleoside nephrotic syndrome.

Several studies indicate the pathophysiological importance of reactive oxygen species in rats with nephrotic syndrome induced by puromycin aminonucleoside, an experimental model of the human minimal change disease. The role of reactive oxygen species in these rats was further evaluated, examining the effect of dietary deficiency and supplementation of antioxidants (vitamin E and selenium) on biochemical and renal ultrastructural alterations induced by puromycin aminonucleoside. Male Wistar rats, weaned at 3 weeks, were placed on diets normal, deficient or supplemented in vitamin E and selenium for 4 weeks. At the end of this period, rats were divided in two groups: control (sacrificed without any further treatment) and nephrotic (injected with puromycin aminonucleoside and sacrificed 7 and 22 days later). In control rats, the dietary deficiency or supplementation of antioxidants resulted in no significative differences in renal function, proteinuria or kidney ultrastructure. However, kidney lipoperoxidation, kidney glutathione peroxidase activity and circulating levels of vitamin E changed according to the amount of antioxidants in the diet. Seven days after the injection of puromycin aminonucleoside, rats fed normal, deficient or supplemented diets, developed nephrotic syndrome. However, proteinuria, hypoproteinemia, renal dysfunction and ultrastructural alterations were higher in rats fed a deficient diet. In contrast, proteinuria and kidney ultrastructural alterations were lower in rats fed a supplemented diet. Kidney lipoperoxidation and glutathione peroxidase activity increased on day 7 in rats fed a normal or a deficient diet, but not in rats fed a supplemented diet. This study shows that nephrotic syndrome induced by puromycin aminonucleoside in rats is modified by dietary antioxidants (vitamin E and selenium). Dietary supplementation ameliorates it and dietary deficiency exacerbates it.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗