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Alterations in the sialic acid content of the rat glomerular filter in aminonucleoside nephrosis.

A daily injection protocol with puromycin aminonucleoside (PAN) causes loss of sialic acid from the glomerular filter. These changes have been studied previously by colloidal iron staining, but we have recently shown that phosphotungstic acid (PTA) at low pH allows the demonstration of sialic acid groups in the glomerular basement membrane in ultrathin sections of glycolmethacrylate(GMA)-embedded rat kidney. With this technique the slit diaphragm is seen as a continuation of the luminal cell coat and the method also gives an idea of the sialic acid distribution at the podocyte plasma membrane. The availability of this method made it possible to reevaluate the results obtained earlier in aminonucleoside (PAN) nephrosis indicating a decrease in the sialic acid content of the glomerulus. Although there are changes in the epithelial architecture, the ultrastructural appearances of the basement membrane are only slightly altered in PAN nephrosis. Detachment of epithelial cells was variable in different animals. Seven days after the first injection of PAN, staining with PTA revealed local defects in the lamina rara externa which later became more extensive. In PAN-treated animals the luminal cell coat showed reduced staining and large areas of the plasma membrane were completely devoid of a cell coat. These changes coincided with the onset of heavy proteinuria. The results indicate that both the basement membrane and the epithelial plasma membrane are affected in PAN nephrosis, as revealed by decreased staining for sialic acid-containing molecules in the basement membrane and by changes in the epithelial cell coat. The defects in the cell coat material point to functional alterations at the level of the slit pores and it is suggested that the decrease in sialic acid content of the lamina rara externa may be partly responsible for defects in the size-selective filtration barrier in PAN nephrosis.

Animals↗

Altered expression of NDST-1 messenger RNA in puromycin aminonucleoside nephrosis.

Sulfated portions of glycosaminoglycan (GAG) side chains in heparan sulfate proteoglycan (HSPG) are thought to play an important role in charge-dependent selectivity of glomerular filtration against plasma proteins. Heparan sulfate N-acetylglucosamine N-deacetylase/adenosine 3'-phosphate 5'-phosphosulfate: unsubstituted glucosamine N-sulfotransferase (NDST) is the key enzyme regulating sulfation of GAG chains. In this study we investigated transcriptional expression of NDST-1, 1 of 4 isozymes of NDST, in glomeruli of rats with puromycin aminonucleoside (PAN) nephrosis. Nephrosis was induced in rats with a single intraperitoneal injection of 150 mg/kg PAN. On days 10 and 35, expression of NDST-1 messenger RNA (mRNA) in glomeruli was analyzed with the use of Northern-blot analysis. Immunohistochemical studies were also performed with the use of monoclonal antibodies that react specifically with the N-sulfated portion of the GAG chain of HSPG and agrin, a major core protein of HSPG in glomerular basement membrane (GBM). In addition, we studied the expression of NDST-1 mRNA in cultured glomerular epithelial cells (GECs) and glomerular mesangial cells in the presence of PAN. On day 10, when significant proteinuria developed, the ratios of glomerular expression of NDST-1 mRNA against glyceraldehyde-phosphate dehydrogenase mRNA in PAN-treated rats were decreased to 48% +/- 6% of those in controls (P<.05). Immunohistochemical studies revealed that staining for N-sulfated GAG chains of HSPG on GBM was markedly reduced on day 10 in PAN-treated rats but that staining for agrin was unchanged. In contrast, on day 35, when PAN-treated rats recovered from proteinuria, we noted no differences in glomerular expression of NDST-1 mRNA and staining intensity for N-sulfated GAG chains on GBM between PAN-treated rats and controls. Incubation of GECs for 24 hours in the presence of 50 ng/mL PAN resulted in the reduction of the expression of NDST-1 mRNA (67% +/- 12% of those in controls, P<.05). In summary, we found alteration of the expression of NDST-1 mRNA, accompanying a loss of N-sulfated GAG chains of HSPG on GBM without changes in the core protein agrin, in the course of PAN nephrosis. These data suggest an important role for this enzyme in heparan sulfate assembly in GBM and GEC and in the pathogenesis of proteinuria in PAN nephrosis.

Amidohydrolases↗

Dipyridamole and dilazep suppress oxygen radicals in puromycin aminonucleoside nephrosis rats.

BACKGROUND: Reactive oxygen species (ROS) are involved in the pathophysiology of puromycin aminonucleoside (PAN) nephrosis. To elucidate further the role of radicals in PAN nephrosis and the to determine the particular radical species scavenged by dipyridamole (DPM) and dilazep (DZ), we applied chemiluminescence and electron spin resonance (ESR) techniques. METHODS: Chemiluminescence of glomeruli, which were isolated on day 7 from rats injected with 100 mg kg-1 PAN, was measured with or without scavengers. The inhibitory effects of DPM and DZ on hydroxyl radical adduct formation in the Fenton's reaction were evaluated using ESR. RESULTS: Chemiluminescence was greater in glomeruli from rats with PAN nephrosis than in the the glomeruli of control rats. This increase was suppressed by superoxide dismutase, catalase, dimethylthiourea and also by DPM and DZ. ESR indicated that DPM and DZ inhibited hydroxyl radical adduct formation with a second-order rate constant of 2.9 x 10(10) and 1.6 x 10(10) (mol L(-1) s(-1) respectively, similar to that of dimethylthiourea. CONCLUSION: DPM and DZ scavenge hydroxyl radicals, thereby alleviating PAN nephrosis.

Animals↗

Renal structural abnormalities following recovery from acute puromycin nephrosis.

BACKGROUND: Rats that recover from acute puromycin nephrosis later develop widespread glomerular and tubulointerstitial injury. The current study sought to identify structural changes present in the recovery phase that could precipitate progressive renal disease. METHODS: Stereologic studies were performed 10 weeks after administration of puromycin (PAN) or saline (Cont). Serial sections were examined to assess glomerular structure. RESULTS: Rats receiving puromycin developed heavy proteinuria that returned nearly to control levels at 10 weeks. Kidneys in these animals were moderately enlarged and exhibited expansion of the interstitium (PAN, 254 +/- 47 mm3; Cont, 152 +/- 23 mm3; P < 0.05). The average glomerular volume was not different from control (PAN, 1.90 +/- 0.38 x 10(6) microm3; Cont, 2.07 +/- 0.47 x 10(6) microm3), but a subpopulation of glomeruli of about half normal size was found in PAN rats. Serial sections revealed that most of these glomeruli were not connected to normal tubule segments. Serial sections also revealed that more than 90% of glomeruli in rats recovering from nephrosis had synechias joining the tuft to Bowman's capsule. Synechias occupied an average of 8 +/- 11% of the Bowman's capsule surface in PAN animals versus less than 1% of the surface in controls. The appearance of synechias was not associated with a reduction in the mean number of visceral or parietal epithelial cells per glomerulus. CONCLUSIONS: Acute puromycin nephrosis does not cause a notable reduction in visceral epithelial cell number. However, widespread glomerular injury characterized by synechia between the tuft and Bowman's capsule is present following remission of proteinuria. Progression of this residual glomerular injury could contribute to the late development of glomerular segmental sclerosis following recovery from acute nephrosis.

Acute Disease↗

Aminonucleoside nephrosis. I. Electron microscopic study of the renal lesion in rats.

Experimental renal disease was produced in young rats by daily subcutaneous injections of 6-dimethylamino purine, 3-amino-d-ribose (aminonucleoside). The physiologic, biochemical, and light microscopic changes were similar to those observed in human nephrosis. Electron microscopy of the glomeruli from animals which received seven or more daily injections of aminonucleoside revealed characteristic abnormalities of the epithelial cells of the glomerular capillaries. These changes consisted of swelling, coalescence, and eventual obliteration of the epithelial cell foot processes and an increase in the number and the size of epithelial cytoplasmic vacuoles. The serial development of the ultramicroscopic pathologic changes in the epithelial cells, as observed by study of animals through the course of the disease, indicated that the smudging of the foot processes occurred at the time of onset of severe proteinuria. Further changes, consisting of hypercellularity due primarily to an increase in the number of endothelial cells and an increase in the amount of basement membrane-like material, were regularly observed by the 12th day after injections were begun. These abnormalities were correlated with the development of uremia in the later stages of the disease process. The distal and proximal renal tubules were abnormal by the 7th day after injections were begun, and showed localized swelling between the cristae of the mitochondria and a decrease in over-all cytoplasmic density, described as hydropic change. Electron microscopy of glomeruli from animals which had partially recovered from aminonucleoside nephrosis revealed areas of normal epithelial cell morphology. This observation was interpreted as evidence of partial reversal of the ultramicroscopic changes in the recovery phase of the disease. These observations of the fine structure of pathologically altered glomeruli and tubules in aminonucleoside nephrosis are similar to our findings in human nephrosis as revealed by electron microscopy of serial renal biopsies.

Animals↗

The role of aciduria in the development of hemoglobinuric nephrosis in dehydrated rabbits.

The effect of acid diets, fasting, and dehydration on the urine pH and the kidneys was determined in 11 control animals. Hyaline casts in the collecting tubules and interstitial medullary edema were observed in the 8 that survived. The test rabbits were subjected to the same treatment as the controls but, in addition, received 1.8 gm./kilo of intravenous homologous hemoglobin. Eleven of 18 animals died of hemoglobinuric nephrosis. The rabbits which died of hemoglobinuric nephrosis exhibited significant alterations in two or more of the following: kidney weight, pigment cast accumulation, and elevations of NPN. The theories which have been advanced to explain the pathogenesis of hemoglobinuric nephrosis are evaluated in the light of the present observations. It is proposed on the basis of them that antecedent tubular damage is of primary importance in the pathogenesis of hemoglobinuric nephrosis.

Administration, Intravenous↗

Early light microscopic changes in chronic progressive nephrosis in several strains of aging laboratory rats.

The kidneys of 441 full-lifespan rats of Wistar (WAG/Rij) and Brown Norway (BN/Bi) strains and a Sprague-Dawley stock were evaluated histologically for chronic progressive nephrosis. Age- and strain-related susceptibility to chronic progressive nephrosis, in terms of degree of lifetime pathological change, was characterized for male and female WAG/Rij and BN/Bi and female Sprague-Dawley rats. Criteria for minimal chronic progressive nephrosis included thickening of the basement membrane of a glomerular capsule, cast formation, and atrophy of a segment of a proximal convolution with thickened basement membrane. The focal and segmental changes in increasing numbers of nephrons were criteria for severity of the disease. Sprague-Dawley rats showed comparatively rapid development of chronic progressive nephrosis during their second year of life, in contrast to the BN/Bi rats that were affected only slightly prior to 28 and 31 months of age, after which the disease progressed slowly. WAG/Rij rats appeared to assume an intermediate position between the other strains, the latter probably representing the extremes in the expression of this disease.

Aging↗

Treatment of idiopathic nephrosis by immunophillin modulation.

Until 1985, glucocorticoids and cytotoxic drugs were the only treatments available for idiopathic nephrotic syndrome (nephrosis), that is, minimal change disease (MCD) and focal segmental glomerulosclerosis (FSGS). Trials of cyclosporine (CsA) treatment of nephrosis, the rationale of which was based on pathophysiologic considerations, have shown that this immunophillin modulator is effective in inducing and maintaining remission in patients suffering from idiopathic nephrotic syndrome. It appears that the best results, in the order of 80% remission rate, are obtained in steroid-sensitive cases, essentially MCD, and that in steroid-resistant FSGS the drug obtains remission in no more than 20% of the cases. Addition of glucocorticoids increases the success rate to approximately 30% of cases. Renal toxicity is proportional to previous impairment of renal function, primary renal disease (FSGS vs MCD) dosage >5.5 mg/kg/day and duration of treatment. The better bioavailability of the new formulation of CsA (Neoral), implies that the former dosage recommendations be reconsidered for distinctly lower figures. Repeat renal biopsy after 1 year of continuous CsA treatment is advisable, as stable serum creatinine levels may be falsely reassuring. CsA dependency is the rule during the first year of treatment. However, in some 25% of cases stable remission may be maintained after slow tapering off following 3-4 years of treatment. Other immunophillin modulators have been tried in the treatment of idiopathic nephrotic syndrome. Despite few preliminary reports indicating some success of tacrolimus the effects of this drug do not seem convincingly superior to CsA in terms of remission rate, toxicity and dependency. Rapamycin has not been tried in the treatment of nephrosis. Anecdotal cases of de novo FSGS induced by rapamycin in transplanted patients might indicate that this drug is in fact contraindicated in the treatment of nephrosis.

Cyclosporine↗

Fertility diminution in female rats with experimental chronic nephrosis.

Chronic aminonucleoside nephrosis in rats is an experimental analogue of human focal segmental glomerulosclerosis. This study was undertaken to define the effects of chronic nephrosis on the pituitary-ovarian axis and on fertility. Chronic nephrosis was induced by puromycin aminonucleoside and followed for 112 days. The estrous cycle was evaluated daily in all rats, whereas biochemical parameters, hormonal concentrations, and fertility were measured on Days 7, 14, 28, 56, 84, and 112 (n = 8). Animals were divided in four experimental groups: A, B, C, and D. Group A was used to determine LH, FSH, progesterone, and estradiol concentrations. Group B was used to evaluate fertility, and groups C and D were added to clarify the role of male rats in the fertility of nephrotic female rats. The results showed a persistent proteinuria in nephrotic rats; the estrous cycle of nephrotic animals was disrupted. The LH and estradiol concentrations were significantly low at all time points evaluated, whereas no significant changes were noted in FSH or progesterone values. In addition, fertility and litter size were diminished in nephrotic female rats. Interestingly, the presence of a male rat or its urine resulted in a positive influence on serum estradiol concentrations of nephrotic female rats. These data indicate that experimental chronic nephrosis results in a pituitary-ovarian dysfunction that is characterized by low LH concentration, hypoestrogenism, failure of the hormonal feedback control, and diminution of fertility. In addition, they show the positive effect of a male rat on the fertility of a nephrotic female, which strongly suggests the participation of pheromones.

Animals↗

Elevation of plasma angiotensinogen in rats with experimentally induced nephrosis.

In order to determine the activity of the renin-angiotensin system in the nephrotic syndrome, the plasma concentration of angiotensinogen was measured in rats with puromycin aminonucleoside (PA)-induced nephrosis using two different methods: a direct radioimmunoassay, which measures both angiotensinogen and des-angiotensin I-angiotensinogen, and an indirect assay, which measures angiotensin I liberated from angiotensinogen by excess renin. The plasma concentration of angiotensinogen as measured by the direct assay increased before the appearance of PA-induced hypoproteinemia or proteinuria and subsequently decreased to normal levels simultaneously with the appearance of proteinuria. The indirect assay of angiotensinogen also demonstrated an increased concentration of plasma angiotensinogen before the development of nephrosis, but the level decreased to below normal after the appearance of proteinuria. Both plasma renin concentration and renin activity also increased simultaneously with the increase in plasma angiotensinogen. The difference between the concentrations of plasma angiotensinogen determined by these methods increased before and during the early phase of PA-induced nephrosis, suggesting the increased consumption of angiotensinogen by renin during this period. Measurement of plasma corticosterone and serum interleukin-6 revealed that these circulating factors were not involved in the elevation of plasma angiotensinogen in rats with PA-induced nephrosis. These results indicate that the renin-angiotensin system is activated before the appearance of PA-induced nephrotic syndrome.

Angiotensinogen↗

Intraglomerular fibrin, platelet aggregation, and subendothelial deposits in lipoid nephrosis.

We have investigated the formation of fibrin, platelet aggregates, and subendothelial deposits in lipoid nephrosis. Fibrin formation was found in 10 cases of active lipoid nephrosis. Platelet aggregates were found in eight cases and subendothelial deposits in nine. Fibrin and platelets were also found in cases of nephrotic syndrome due to other causes, and in glomerulonephritis. Fibrin was generally absent in lipoid nephrosis in remission and in benign recurrent hematuria. It is suggested that what seems to be a lower incidence in females is more apparent than real and that fibrin or related material may be present in a less easily identifiable form. Steroid therapy apparently had no effect on the presence or absence of fibrin. Most instances were associated with elevated serum cholesterol and alpha(2)-globulin. It is suggested that elevated serum lipids as well as the disease process in the kidney play a role in this phenomenon. It is further suggested that intraglomerular fibrin formation could lead to irreversible renal damage in lipoid nephrosis.

Adolescent↗

Studies on antinephritic effect of TJ-8014, syo-saiko-to-kyo-shyokyo-ka-ouren-bukuryou (5): Effects on puromycin aminonucleoside nephrosis and its mechanisms.

The effect of TJ-8014, a lyophilized extract of Syo-Saiko-To without Zingiberis rhizoma, annexing Coptidis rhizoma and Hoelen, on puromycin aminonucleoside (PAN) nephrosis in comparison with the effect of dipyridamole was evaluated. PAN nephrosis was induced in rats by intraperitoneal injections of PAN, once daily for 6 days. When TJ-8014 was given from the initial day of PAN treatment (just before PAN injection) at 2.0 g and 4.0 g/kg/day, p.o., it was markedly inhibited urinary protein excretion and elevation of serum cholesterol content-throughout the experimental periods. In addition, the mild adhesion of Bowman's capsule to capillary walls in glomeruli was also improved by TJ-8014 at 2.0 g and 4.0 g/kg/day, p.o. Dipyridamole was also effective in inhibiting the urinary protein excretion as well as histopathological changes. TJ-8014 at 4.0 g/kg/day, p.o. inhibited the decrease in superoxide dismutase (SOD-like), catalase and glutathione peroxidase activities in the renal cortex and SOD-like activity in the glomeruli in PAN-induced nephrosis. Dipyridamole failed to inhibit the decrease in scavenger activities. These results suggest that TJ-8014 is effective against PAN-induced nephrosis, and they suggest that the mechanisms of action of this medicine may be partly due to the enhancing activities of scavengers in the renal cortex and glomeruli.

Animals↗

Dual effects of lisinopril on puromycin aminonucleoside nephrosis in unilaterally nephrectomized rats.

The therapeutic effects of angiotensin converting enzyme inhibitor, lisinopril, on puromycin aminonucleoside (PAN)-induced nephrosis were investigated using unilaterally nephrectomized rats. Lisinopril showed potent dual effects on PAN nephrosis. Lisinopril treatment (50 mg/l in drinking water) from day 5 or day 9 reduced urinary protein excretion and suppressed the development of glomerular sclerosis at 8 weeks after PAN injection (150 mg/kg, i.p.), indicating a therapeutic effect on the nephrosis. Recovery of decreased anionic charge sites on the glomerular basement membrane was involved, at least in part, in the therapeutic action of lisinopril against proteinuria. On the other hand, oliguria and progressive azotemia derived from continuous deterioration of the renal function was induced if the treatment of lisinopril was started on the same day as PAN injection. The renal dysfunction induced by simultaneous administration of lisinopril with PAN could be abolished by combination dosing with sarcosine, an angiotensin II (AII)-receptor agonist. These results indicate that lisinopril treatment attenuates proteinuria by ameliorating the anionic charge barrier on the glomerular basement membrane and that it also protects against the development of chronic renal disease with segmental glomerular sclerosis, although AII depletion during the acute nephrotic stage exacerbates the renal damage in PAN nephrosis of unilaterally nephrectomized rats.

Angiotensin-Converting Enzyme Inhibitors↗

High-resolution ultrastructural study of the rat glomerular basement membrane in aminonucleoside nephrosis.

In the initial stages of aminonucleoside nephrosis, functional alterations in the glomerular basement membrane occur, as evidenced by the development of proteinuria. However, it has not been possible to observe important ultrastructural modifications at the level of the basement membrane, probably because the changes are taking place at the molecular level. In this study, by the use of high-resolution electron microscopy, an attempt was made to evaluate such changes in rat glomerular basement membrane during acute aminonucleoside nephrosis. As previously reported, in control animals the glomerular basement membrane is composed of a network of 4-nm-wide irregular anastomosing strands, referred to as "cords," which are known to contain a core filament of type IV collagen surrounded by a "sheath" of other components, such as laminin and heparan sulfate proteoglycan (HSPG). The most conspicuous ultrastructural alteration of the nephrotic glomerular basement membrane, recognizable only at high magnification, is that the cords were denuded leaving only the core filament through the loss of the sheath material. Thus, the cord network was transformed, with the progress of pathological conditions, into a network of fine filaments. On the other hand, abundance and distribution of HSPG molecules known to be present in the form of 4.5- to 5-nm-wide ribbon-like "double tracks," were found to be similar in control and nephrotic tissues. Since HSPG is one of the charge proteins of the basement membrane, the little changes observed for HSPG are difficult to interpret in view of reported decreases in basement membrane anionic sites in nephrosis. In conclusion, the glomerular basement membrane in aminonucleoside nephrosis loses its cord network components and replaces them with a more perforated network, which could be a cause for the increased permeability of this basement membrane.

Animals↗

Glomerular tumor necrosis factor and interleukin 1 during acute aminonucleoside nephrosis. An immunohistochemical study.

Acute aminonucleoside nephrosis progresses to glomerulosclerosis. The mechanisms for this phenomenon are not entirely known. Our objectives were to identify macrophage (m phi)-derived peptide growth factors (i.e., tumor necrosis factor and interleukin 1), using immunohistochemical means, in glomeruli of rats with acute aminonucleoside nephrosis. Recently, a role for glomerular m phi s has been suggested as one of the possible mechanisms responsible for this transition from acute glomerular injury to glomerulosclerosis. Since peptide growth factors are elaborated by m phi s and produce alterations in mesangial cell proliferation and protein biosynthesis, we investigated whether these cytokines were present in glomeruli during aminonucleoside nephrosis, which has been typically regarded as a nonimmune toxic glomerulopathy. Fourteen days after puromycin aminonucleoside (PA) delivery, nephrotic control rats (PA/control) and nephrotic animals that had been maintained on an essential fatty acid-deficient (EFAD) diet (PA/EFAD) for 8 weeks before PA, manifested cytoplasmic tumor necrosis factor and interleukin 1 within cells located in the glomerular mesangium as detected by immunohistochemical means. Despite equivalent levels of albuminuria and fasting total cholesterol during peak nephrosis, the PA/EFAD rats had significant reductions in the number of tumor necrosis factor-positive glomerular cells (1.8 +/- 0.1 versus 8.5 +/- 0.4, p less than .001) and interleukin 1-positive glomerular cells (1.5 +/- 0.1 versus 7.2 +/- 0.5, p less than .001) in comparison with the PA/control group. These data correlated with a reduction in the number of ED-1-positive cells (i.e. glomerular m phi s) in glomeruli of PA/EFAD animals as compared with PA/control rats (2.2 +/- 0.3 versus 10.9 +/- 1.4, p less than .001), suggesting that m phi-derived peptide growth factors may be important determinants in initiating a pathobiologic sequence culminating in glomerulosclerosis in this model.

Animals↗

Modulation of basement membrane component gene expression in glomeruli of aminonucleoside nephrosis.

The present studies were designed to analyze mRNA levels of basement membrane components including collagen IV, laminin, and heparan sulfate proteoglycan (HSPG) in the course of puromycin aminonucleoside (PAN) nephrosis. mRNA levels for alpha 1 (IV) chain; laminin A, B1, and B2 chains; and HSPG were measured in glomeruli of PAN nephrotic rats 0, 2, 8, 14, and 20 days after PAN injection. In the nephrotic stage of PAN nephrosis (on the 8th day), mRNA levels for alpha 1 (IV) chain and laminin A, B1, and B2 chains increased, whereas those for HSPG decreased. The anionic sites in glomerular basement membrane stained by polyethyleneimine were smaller in size and fewer in number in PAN nephrotic rats than they were in control rats. In the remission stage of PAN nephrosis (on the 20th day), however, mRNA levels for alpha 1 (IV) chain and laminin A, B1, and B2 chains decreased, whereas mRNA levels for HSPG increased. Polyethyleneimine aggregates in this stage appeared to be larger and more intense than those in the nephrotic stage. These results indicate that the expression of basement membrane genes for alpha 1 (IV), laminin, and HSPG was abnormally regulated in PAN nephrosis and that this abnormal gene regulation might contribute to the development of proteinuria.

Animals↗

Steroids and Adriamycin nephrosis.

Adriamycin induces a nephrotic syndrome in rats characterized by severe ultrastructural changes of visceral epithelial cells similar to those observed in puromycin aminonucleoside (PA) nephrosis and in human 'minimal changes' glomerulopathy. Since steroids have been shown to be effective in human 'minimal changes' glomerulopathy and in PA nephrosis, we undertook the present study to assess whether steroids had a therapeutic effect on adriamycin nephrosis. Groups of rats injected with different doses of adriamycin were subsequently treated with prednisolone. No significant differences were observed in proteinuria and in ultrastructural findings between the control and the steroid-injected animals. This study suggests that the mechanism underlying adriamycin-induced nephrotic syndrome might be different from that responsible for PA nephrosis or human 'minimal changes' glomerulopathy.

Animals↗

Phenotypic changes and cell cycle activation in early tubulointerstitial injury of rat adriamycin nephrosis.

Tubular response, including phenotypic changes against a variety of injuries, is an initial event that promotes tubulointerstitial injuries. Using the progressive kidney disease model of rat adriamycin (ADR) nephrosis, the present study focused on the cell cycle activation and phenotypic changes that occur in the tubuli in early tubulointerstitial injury in ADR nephrosis. At 12 weeks, experimental animals developed overt nephrosis with tubulointerstitial injury, which correlated well with the degree of proteinuria and incidence of glomerulosclerosis. Initial pathology of the tubuli showed a slight dilatation of tubuli, which tended to occur in individual nephrons. Immunohistochemistry demonstrated that vimentin-positive tubuli and osteopontin (OPN)-positive tubuli were associated mostly with proliferating cell nuclear antigen expression. Protein levels of OPN in the renal cortex were correlated with the level of proteinuria by western blotting. Vimentin- and OPN-expressing tubuli were tightly associated with a peritubular influx of alpha-smooth muscle actin (SMA)-positive cells or ED-1-positive cells. In addition, we found thrombomodulin+/ TUNEL+ (dUTP-biotin nick-end labeling) peritubular endothelial cells and ED-1+/alpha-SMA+ cells at an early stage among interstitial inflammatory cells. These results suggest that cell cycle activation in tubular cells forms the background for the phenotypic tubular changes that are involved in chronic tubulointerstitial injury in ADR nephrosis.

Actins↗