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Biomedical subjects

B Rodríguez-Iturbe

Publications and source records attributed to B Rodríguez-Iturbe.

At least 19 recordsLinked to original sources

Participation of the interstitium in acute immune-complex nephritis: interstitial antigen accumulation, cellular infiltrate, and MHC class II expression.

Bovine serum albumin (BSA) injected into the rabbits induces acute immune complex glomerulonephritis. Since albumin is filtered and reabsorbed in the tubules, we investigated whether tubulointerstitial cells participate in the pathogenesis of this experimental condition. For this purpose, we induced immune-complex nephritis in 45 rabbits with the injection of 125I-BSA and urinary BSA excretion, glomerular and tubulointerstitial BSA accumulation, lymphocyte infiltration, proliferative activity and MHC class II antigens were examined 2, 4-5 and 6-8 days after immunization. Proteinuria developed day 6-8. BSA was found in urine from day 2 (mean +/- SE; 1089 +/- 339 micro g/24 h) and peaked on day 4 after immunization (2249 +/- 1106). BSA content (cpm/g tissue) in tubulointerstitium (TI) and glomeruli were similar at day 2 (457 +/- 45 and 407 +/- 75, respectively), but afterward increased significantly in TI, reaching a peak level on day 5 (1026 +/- 406) while remained unchanged in glomeruli (388 +/- 95). At the same time, preceding the onset of proteinuria, maximal intensity of the lymphocyte infiltration, proliferative activity and MHC class II antigen expression in tubular cells, monocytes/macrophages and interstitial cells were observed. Our study shows that antigen is excreted in the urine and concentrated in TI in association with overexpression of MHC class II molecules and lymphocyte infiltration. These findings occur prior to the development of proteinuria and suggest that the tubulointerstitial cells play a critical role in the pathogenesis of this model.

Animals↗

Melatonin prevents oxidative stress resulting from iron and erythropoietin administration.

Intravenous iron (Fe) and recombinant human erythropoietin (rHuEPO) are routine treatments in the management of anemia in patients with chronic renal failure. We investigated the oxidative stress acutely induced by these therapies and whether pretreatment with oral melatonin (MEL) would have a beneficial effect. Nine patients (four women) were studied within 1 month of entering a chronic hemodialysis program in the interdialytic period. Plasma malondialdehyde (MDA), red blood cell glutathione (GSH), and catalase (CAT) activity were measured in blood samples obtained before (baseline) and 1, 3, and 24 hours after the administration of Fe (100 mg of Fe saccharate intravenously over 1 hour) or rHuEPO (4,000 U intravenously). One hour before these treatments, patients were administered a single oral dose of MEL (0.3 mg/kg) or placebo. Each patient was studied on four occasions, corresponding to studies performed using either placebo or MEL in association with intravenous Fe and rHuEPO administration. Baseline data showed increased oxidative stress in patients with end-stage renal failure. Increments in oxidative stress induced by Fe were more pronounced at the end of the administration: MDA, baseline, 0.74 +/- 0.09 nmol/mL; 1 hour, 1.50 +/- 0.28 nmol/mL (P: < 0.001); GSH, baseline, 2.51 +/- 0.34 nmol/mg of hemoglobin (Hb); 1 hour, 1.66 +/- 0.01 nmol/mg Hb (P: < 0.001); and CAT activity, baseline, 27.0 +/- 5.7 kappa/mg Hb; 1 hour, 23.3 +/- 4.2 kappa/mg Hb (P: < 0.001). rHuEPO-induced increments in oxidative stress were more pronounced (P: < 0.001) at 3 hours (MDA, 1.24 +/- 0.34 nmol/mL; GSH, 1.52 +/- 0.23 nmol/mg Hb; CAT activity, 18.0 +/- 3.1 kappa/mg Hb). MEL administration prevented the changes induced by Fe and rHuEPO and had no adverse side effects. These studies show that intravenous Fe and rHuEPO in doses commonly used to treat anemia in chronic hemodialysis patients acutely generate significant oxidative stress. Oral MEL prevents such oxidative stress and may be of clinical use.

Adult↗

Mycophenolate mofetil prevents salt-sensitive hypertension resulting from angiotensin II exposure.

BACKGROUND: Interstitial mononuclear cell infiltration is a feature of experimental models of salt-sensitive hypertension (SSHTN). Since several products of these cells are capable of modifying local vascular reactivity and sodium reabsorption, we investigated whether mycophenolate mofetil (MMF), a drug known to inhibit infiltration and proliferation of immune cells, would modify the SSHTN induced by angiotensin II (Ang II) infusion. METHODS: Sprague-Dawley rats received Ang II for two weeks using subcutaneous minipumps. A high-sodium (4% NaCl) diet was started on the third week and was maintained until the eighth week. MMF (30 mg/kg, N = 15), an immunosuppressive drug, or vehicle (N = 15) was given daily by gastric gavage during the initial three weeks. Sham-operated rats (N = 9) were used as controls. Body weight, blood pressure (tail-cuff plethysmography), and serum creatinine were determined weekly. Urinary malondialdehyde (MDA) excretion, renal histology, and immunohistology, including the presence of Ang II and superoxide-producing cells, were analyzed at the end of Ang II infusion and at eight weeks. RESULTS: MMF treatment did not modify hypertension induced during exogenous Ang II infusion, but prevented the subsequent SSHTN. Tubulointerstitial injury resulting from Ang II infusion was significantly reduced by MMF treatment, as were proliferative activity, T-cell infiltration and activation (interleukin-2 receptor expression), superoxide-producing cells, and urinary MDA excretion. Ang II-producing cells were present in the renal tubulointerstitium of rats with SSHTN (60 +/- 30 Ang II-positive cells/mm(2) at 8 weeks) and were reduced by two thirds in the MMF-treated group. Forty percent of lymphocytes infiltrating the tubulointerstitium stained positive for Ang II. The expression of Ang II receptors in the kidney was unmodified. CONCLUSIONS: SSHTN resulting from Ang II infusion is associated with infiltration and activation of immune cells that produce Ang II. MMF treatment reduces these features and prevents the development of SSHTN.

Angiotensin II↗

Tubular stress test detects subclinical reduction in renal functioning mass.

BACKGROUND: To develop a test that would disclose subclinical impairment in renal function, we studied the increment in tubular secretion of creatinine (TS(Cr)) induced by intravenous creatinine administration. METHODS: Studies were done in 14 normal individuals, 7 kidney donors (KDs), and 11 transplant recipients (Tx), all of whom had normal creatinine levels (P(Cr) <133 micromol/L). Creatinine infusion studies determined that maximal stimulation of TS(Cr) resulted from P(Cr) levels of 500 to 700 micromol/L. Therefore, in the tubular stress test, clearances, urinary excretion of creatinine (U(Cr)V) and TS(Cr) were determined before and after (15 to 105 min) a single bolus injection of 88.4 mmol/kg body wt, which resulted in the target P(Cr) levels. RESULTS: Baseline determinations of P(Cr), U(Cr)V, and TS(Cr) were not significantly different in the study groups. Stimulated U(Cr)V (nmol/kg/min) was higher in normals (426 +/- 82) than in KDs (338 +/- 72, P < 0.05) and Tx patients (311 +/- 66, P < 0.01). Similarly, TS(Cr) (nmol/kg/min) was higher (P < 0.001) in normals (180 +/- 60) than in KDs (155 +/- 54) and Tx patients (86 +/- 35). Furthermore, the transplanted kidney responded worse than the solitary normal kidney (P < 0.05), despite having similar levels of glomerular filtration rate (GFR). The tubular stress test increased TS(Cr) 11.3 +/- 6.2 times in normals, 4.3 +/- 1.2 times in KDs (P < 0.01), and 2.5 times in Tx (P < 0.001). CONCLUSIONS: Impaired tubular secretory response to a creatinine load is a more sensitive index of reduced functioning renal mass than levels of P(Cr) and GFR. The tubular stress test may be useful in following the natural history of kidney disease and the results of therapeutic interventions.

Adult↗

Role of immunocompetent cells in nonimmune renal diseases.

Renal infiltration with macrophages and monocytes is a well-recognized feature of not only immune, but also nonimmune kidney disease. This review focuses on the investigations that have shown accumulation of immunocompetent cells in experimental models of acute and chronic ischemia, protein overload, hypercholesterolemia, renal ablation, obstructive uropathy, polycystic kidney disease, diabetes, aging, murine hypertension, and nephrotoxicity. We examine the mechanisms of infiltration of immunocompetent cells and their participation in the self-perpetuating cycle of activation of the angiotensin system, generation of reactive oxygen species, and further recruitment of monocytes and lymphocytes. We also discuss the possibility of antigen-dependent and antigen-independent mechanisms of immune cell activation in these animal models. Finally, we review the recent studies in which suppression of cellular immunity with mycophenolate mofetil has proven beneficial in attenuating or preventing the progression of renal functional and histologic damage in experimental conditions of nonimmune nature.

Animals↗

Mycophenolate mofetil prevents salt-sensitive hypertension resulting from nitric oxide synthesis inhibition.

Recent studies have suggested that subtle microvascular and tubulointerstitial injury in the kidney can cause salt-sensitive hypertension. To test this hypothesis, we determined whether the mild renal disease induced by transient blockade of nitric oxide (NO) synthesis would result in salt-sensitive hypertension and whether prevention of the renal injury by coadministration of the immunosuppressive agent mycophenolate mofetil (MMF) would block the development of salt sensitivity. N(omega)-nitro-L-arginine-methyl ester (L-NAME; 70 mg/100 ml in the drinking water) was administered for 3 wk to rats with or without MMF (30 mg x kg(-1) x day(-1) by gastric gavage), followed by a 1-wk "washout" period in which the MMF was continued, which was followed in turn by placement on a high-salt (4% NaCl) diet for an additional 4 wk. Renal histology was examined at 3 and 8 wk, and blood pressure was measured serially. L-NAME treatment resulted in acute hypertension and the development of mild renal injury. During the washout period, blood pressure returned to normal, only to return to the hypertensive range on exposure of the animals to a high-salt diet. MMF treatment prevented the development of hypertension in response to a high-salt diet. This correlated with the ability of MMF to inhibit specific aspects of the renal injury, including the development of segmental glomerulosclerosis, the infiltration of T cells and ANG II-positive cells, and the thickening of afferent arterioles.

Animals↗

Renal Doppler sonographic and histologic findings in post-transplant primary cytomegalovirus disease.

Cytomegalovirus (CMV) infections frequently develop in renal transplant patients. The transplanted kidney may be not only the source of infection but also the target for it. We report a case of primary CMV infection in a seronegative patient who received a graft from a seropositive cadaveric donor. The onset of CMV was clinically apparent on post-transplant day 22. Interestingly, soon after transplantation, the patient developed a long-lasting graft dysfunction episode for which diffuse endothelial-cell swelling was the most relevant finding at biopsy. On sonography, renal graft vascular impedance deteriorated and improved repeatedly during the follow-up period. We postulate that the patient had CMV-induced immunogenic-mediated endothelial-cell injury.

Adult↗

Mycophenolate mofetil treatment reduces cholesterol-induced atherosclerosis in the rabbit.

Immunosuppressive therapy has been shown to either improve or, more frequently, enhance the development of atherosclerosis. We tested the effect of mycophenolate mofetil (MMF), an inhibitor of nucleotide synthesis widely used in transplant therapy, in diet-induced atherosclerosis in the rabbit. Two groups (n=10 each) of New Zealand White (NZW) rabbits were fed a 1% cholesterol diet for 12 weeks. One group received MMF (CHOL+MMF group) by gastric gavage (30 mg/kg daily) and the other group (CHOL) received the same volume of saline by the same route. There were no differences in the serum cholesterol (mean values > or =30 mmol/l in both groups after 2 weeks) or in the triglyceride, blood sugar, total protein, and albumin serum levels and weight gain in both groups of animals. The cholesterol-fed untreated rabbits had atherosclerotic plaques covering 43.9.1+/-SD 16.40% of their thoracic aorta and 41.9+/-22. 59% of their abdominal aorta, while the MMF treated group had 18. 5+/-7.17% and 17.7+/-9.71%, respectively (P<0.01). The cholesterol content of the aorta (mg/g) in the cholesterol-fed untreated group was 4.61+/-SD 1.21 in the thoracic aorta and 4.54+/-2.07 in the abdominal aorta, whereas the MMF treated group had and 2.83+/-0.84 and 2.77+/-1.44, respectively (P<0.01). Infiltrating macrophages (RAM 11 positive cells/100 nuclei) in the intimal layer of the aorta were 58.4+/-SD26.16 in the CHOL group and 8.5+/-5.51 in the CHOL+MMF group: (P<0.001). CD18 positive cells/100 nuclei were 27.4+/-17.6 in the CHOL group and 5.3+/-3.82 in the CHOL+MMF group (P<0.01), and the intima/media ratio was 0.66+/-0.11 in the CHOL group and 0. 30+/-0.09 in the MMF treated rabbits (P<0.001). MMF also reduced proliferating smooth muscle cells (HHF35 positive) infiltrating between the macrophages. These results indicate that MMF ameliorates importantly the atherogenic potential of a high cholesterol diet and this effect is associated with a reduction in macrophage and foam cell infiltration and smooth muscle cell proliferation and infiltration. Since chronic treatment with this drug is given routinely in various clinical conditions with relatively minor side effects, consideration may be given to its use as adjuvant therapy in atherosclerotic cardiovascular disease.

Analysis of Variance↗

Cyclosporin A reduces expression of adhesion molecules in the kidney of rats with chronic serum sickness.

Treatment with cyclosporin A (CsA) improves proteinuria and reduces renal cellular infiltration in chronic serum sickness (CSS). We examined if these effects were associated with a reduced renal expression of CD54 and its ligands, interferon-gamma (IFN-gamma), tumour necrosis factor-alpha (TNF-alpha) and MHC class II molecules. We studied two groups of rats in which CSS was induced by daily injections of ovalbumin (OVA): a group treated with CsA (OVA.CsA group, n = 11) and a group that received no treatment (OVA.CSS group, n = 11). An additional group of five rats (control group) received only phosphate buffer. Immunostaining techniques were used to follow CSS and to study the expression of CD54, CD18, CD11b/c, IFN-gamma, TNF-alpha and MHC class molecules. Proteinuria (mg/24 h) was reduced from 248.2 +/- 73.1 (OVA.CCS group) to 14.5 +/- 13.1 with CsA treatment (P < 0.0001). The renal expression of CD54 and its ligands (CD18 and CD11b/c) was reduced by 50% to 75%. Correspondingly, there was a 60% to 85% reduction in the number of infiltrating leucocytes. The number of cells expressing TNF-alpha, IFN-gamma and MHC II molecules was also reduced. CsA reduces expression of CD54 and its ligands. This effect is associated with a reduction of cellular infiltration, IFN-gamma, TNF-alpha-producing cells and with MHC II expression in the kidney. These findings suggest that expression of adhesion molecules plays a critical role in CSS and underline the importance of cellular immunity in this experimental model.

Animals↗

Melatonin attenuates acute renal failure and oxidative stress induced by mercuric chloride in rats.

We evaluated the effect of melatonin (Mel), a potent scavenger of reactive oxygen species, in the course of HgCl(2)-induced acute renal failure. Rats received by gastric gavage 1 mg/kg of Mel (n = 21) or vehicle (n = 21), 30 min before the subcutaneous injection of HgCl(2) (2.5 mg/kg). Rats were killed at 24, 48, and 72 h, and plasma creatinine (S(cr)), renal histology, proliferative activity, apoptosis, and superoxide-producing cells were studied. We also determined the renal content of malondialdehyde (MDA) and glutathione (GSH) and the activities of glutathione peroxidase and catalase. Mel pretreatment (Mel plasma levels of 3.40 +/- 3.15 microgram/ml at the time of HgCl(2) injection) prevented the increment in S(cr) and reduced tubular necrosis from 41.0 +/- 10.5 to 4.2 +/- 5.1% of proximal tubules (P < 0.01). Apoptosis and postnecrotic proliferative activity were twice more intense in the group untreated with Mel. Increment in renal content of MDA and decrease in GSH resulting from HgCl(2) toxicity were prevented by Mel. Mel also induced an important reduction in superoxide-positive cells. In contrast to the beneficial effects of pretreatment with Mel, the administration of Mel in conjunction with HgCl(2) had no effect on the oxidative damage and did not prevent nephrotoxicity. We conclude that the beneficial effects of pharmacological doses of Mel are due to its antioxidant properties.

Acute Kidney Injury↗

Expression of adhesion molecules in chronic serum sickness in rats.

Peripheral blood leukocytes infiltrate the kidney in chronic serum sickness (CSS). We therefore studied the expression of CD54 and its ligands CD18 and CD11b/c in CSS in 10 rats with CSS, 6 rats immunized similarly who did not developed proteinuria (no-CSS group), and 10 normal rats (control group). Intense (6 to 35 times more than controls) leukocyte infiltration was observed in CSS. The CSS group over-expressed CD54 in glomeruli and interstitium in association with increments in CD18- and CD11b/c-positive cells ranging 2.5 to 7 times the number found in controls. 75% of infiltrating leukocytes expressed CD18 and 87% expressed CD11b/c. The non-CSS group had leukocyte infiltration and expression of adhesion molecules similar to control group. Adherence of CD43-positive cells to renal tissues was 4 times higher in renal tissue from CSS rats than to normal kidney. Pretreatment with corresponding Mabs reduced adherence by half. We concluded that over-expression of CD54 and its ligands CD18 and CD11b/c in infiltrating leukocytes occur in CSS. Binding experiments suggest the functional relevance of these molecules.

Animals↗

Mycophenolate mofetil prevents the progressive renal failure induced by 5/6 renal ablation in rats.

BACKGROUND: Extensive renal ablation is associated with progressive sclerosis of the remnant kidney. Because lymphocytes and monocytes accumulate in the remnant kidney, it is likely that they play a role in the renal scarring. Therefore, we treated rats with 5/6 nephrectomy (5/6Nx) with mycophenolate mofetil (MMF), a drug that has an antiproliferative effect and that suppresses the expression of intercellular adhesion molecules. METHODS: Sprague-Dawley rats with 5/6Nx received MMF (30 mg. kg-1. day-1 by daily gastric gavage, N = 15) or vehicle (N = 16). Ten additional rats were sham operated. All rats were fed a 30% protein diet. Body weight, serum creatinine, and urinary protein excretion were determined weekly. Lipid peroxidation, as a measure of oxidative stress observed by urinary malondialdehyde determinations, was performed every two weeks. Histologic studies were done in the remnant kidney four weeks (9 rats from the vehicle-treated group, 7 rats from the MMF group, and 5 sham-operated rats) and eight weeks after surgery (the remaining rats). Glomerular volume, sclerosis in glomeruli (segmental and global) and interstitium (semiquantitative scale), infiltrating lymphocytes and macrophages (CD43- and ED1-positive cells), and expression of adhesion molecules (CD54, CD18, and CD11b) were analyzed. RESULTS: MMF treatment prevented the progressive increment in serum creatinine and the proteinuria observed in the 5/6 nephrectomized rats during the eight weeks of observation (P < 0.01). Weight gain was comparable in the MMF-treated and sham-operated rats, whereas weight gain was decreased in untreated 5/6 nephrectomized rats. Excretion of malondialdehyde increased after surgery but returned sooner to control levels in the MMF-treated rats. Increments in glomerular size and mean arterial blood pressure induced by renal ablation were not modified by MMF treatment. Eight weeks after surgery, segmental sclerosis was present in 48.4 +/- 8.35% (+/- sd) glomeruli in the vehicle-treated group versus 25 +/- 10.5% in the MMF-treated group (P < 0.001). Interstitial fibrosis was reduced significantly with MMF treatment (P < 0.001). Infiltration with CD43- and ED1-positive cells in glomeruli and interstitium was two to five times lower in MMF-treated rats (P < 0.01). Expression of adhesion molecules CD18 and CD11b was similarly reduced. CONCLUSION: MMF ameliorates the progressive renal damage in the remnant kidney after 5/6Nx. This effect is associated with a reduction in the infiltration of lymphocytes and monocytes, whereas glomerular hypertrophy and systemic hypertension are unchanged.

Animals↗