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Biomedical subjects

G Remuzzi

Publications and source records attributed to G Remuzzi.

At least 163 records · Page 9Linked to original sources

Long-term treatment with either enalapril or nitrendipine stabilizes albuminuria and increases glomerular filtration rate in non-insulin-dependent diabetic patients.

The effect of short- (98 days) and long-term (1 year) treatment with nitrendipine (10 to 40 mg/d) and enalapril (5 to 20 mg/d) on kidney function was studied prospectively in a parallel group design in 16 microalbuminuric non-insulin-dependent diabetic patients with mild hypertension and biopsy-proven diabetic glomerulopathy. At the end of the short-term treatment period diastolic blood pressure significantly decreased from 95.4 +/- 2.5 mm Hg to 83.5 +/- 3.5 mm Hg (P < 0.001) in the nitrendipine group and from 96.7 +/- 2.5 to 86.7 +/- 5.6 mm Hg (P < 0.001) in the enalapril group. Both overnight urinary albumin excretion rate and albumin fractional clearance tended to increase in the nitrendipine group and to decrease in the enalapril group, whereas the glomerular filtration rate and the renal plasma flow were similar to baseline in both study groups. At the end of the long-term treatment period diastolic blood pressure significantly decreased from 95.4 +/- 2.5 mm Hg to 86.0 +/- 6 mm Hg (P < 0.005) in the nitrendipine group and from 96.7 +/- 2.1 to 90.8 +/- 4.3 mm Hg (P < 0.05) in the enalapril group. Overnight urinary albumin excretion and albumin fractional clearance were similar to baseline in both study groups. The glomerular filtration rate significantly increased from 70.2 +/- 14.2 to 96.8 +/- 20.4 (P < 0.05) in the nitrendipine group and from 58.9 +/- 10.7 to 78.5 +/- 11.0 (P < 0.05) in the enalapril group. The renal plasma flow also significantly increased from 456.6 +/- 165.3 to 597.2 +/- 178.9 (P < 0.01) in the nitrendipine group.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Treatment of idiopathic membranous glomerulopathy.

The treatment of membranous nephropathy, the most common form of glomerular diseases causing nephrotic syndrome in adults, is still debated. A considerable percentage of patients have a spontaneous remission of the disease and reduction of urinary protein excretion with time. Studies in the past have indicated that prednisone may have beneficial effects, but this has not been confirmed by more recent investigation. Others have studied the association of methylprednisolone with cyclophosphamide or chlorambucil, but results are conflicting. The main reasons for the conflicting data are the variety of clinical presentations of the disease and the different study populations. Most trials performed so far have not included enough patients in each category to adequately detect differences between treatment groups and placebo groups. Several studies with few numbers of patients reported that cyclosporine effectively reduced proteinuria and may have less long-term toxicity than more conventional immunosuppressants. This finding, however, must be verified by appropriate clinical trials.

Clinical Trials as Topic

Calcitonin gene-related peptide reduces renal vascular resistance and modulates ET-1-induced vasoconstriction.

Calcitonin gene-related peptide (CGRP) is a novel polypeptide that exerts important effect on the cardiovascular system through its vasorelaxant properties. We studied in vivo in normal rats the effect of acute administration of CGRP on whole kidney function and showed that the intravenous infusion of the peptide resulted in a fall of blood pressure associated with a marked increase in renal plasma flow (RPF) as well as glomerular filtration rate (GFR). These changes were reversible with discontinuation of CGRP infusion. To evaluate whether the renal hemodynamic responses to the peptide were mediated by endogenous vasodilatory prostaglandins of endothelial origin, animals were preexposed to indomethacin, a cyclooxygenase enzyme inhibitor. Inhibition of prostaglandins synthesis with indomethacin failed, however, to prevent the increase in RPF and GFR observed during CGRP infusion. By contrast, NG-nitro-L-arginine methyl ester (L-NAME), which inhibits the synthesis of nitric oxide, a newly discovered endothelium-derived relaxing factor, completely abolished the renal hemodynamic changes induced by CGRP. Moreover, L-arginine infusion in L-NAME-treated rats restored the renal response to CGRP. We have also shown that systemic infusion of CGRP progressively normalized RPF and GFR that were reduced in response to a bolus intravenous injection of the vasoconstrictor endothelin-1. This indicates that CGRP regulates renal hemodynamics and modulates the deleterious effects of vasoconstrictive substances on the kidney.

Animals

Dissociation between antiproteinuric and antihypertensive effect of angiotensin converting enzyme inhibitors in rats.

To clarify whether angiotensin converting enzyme (ACE) inhibitors prevent progressive renal injury directly by their antihypertensive effect we administered the ACE inhibitor lisinopril to male MWF/Ztm rats as a single daily dose that lowered blood pressure for only 9 of 24 h. We investigated the effects of this treatment in short- and long-term studies and compared them with another antihypertensive drug, the calcium channel blocker nitrendipine, given to partially control blood pressure as done with the ACE inhibitor. In untreated animals systemic hypertension, proteinuria, and glomerulosclerosis developed spontaneously with age, and lisinopril reduced systemic hypertension and prevented proteinuria and glomerular lesions. Nitrendipine, despite similar blood pressure control, was ineffective in preventing both proteinuria and glomerulosclerosis. After 2 mo of treatment glomerular capillary pressure was significantly reduced by lisinopril and slightly but significantly increased by nitrendipine, compared with untreated controls. The ultrafiltration coefficient was significantly higher in lisinopril than in controls and not significantly changed by nitrendipine. With both drugs, however, glomerular hemodynamic effects were observed only at a few hours after administration and were abolished before the next administration. No significant changes in glomerular tuft volume were observed in treated and untreated animals after 2 and 6 mo of observation. Thus ACE inhibitor, despite only partial control of systemic blood pressure, effectively prevented proteinuria and glomerular injury. Comparable blood pressure control obtained with a calcium channel blocker was not associated with renal protection. These results suggest that ACE inhibitors could protect glomerular microcirculation by a mechanism that is not directly related to their antihypertensive action.

Alpha-Globulins

Evidence that an angiotensin-converting enzyme inhibitor has a different effect on glomerular injury according to the different phase of the disease at which the treatment is started.

In rats with streptozotocin-induced diabetes, the effect of an angiotensin-converting enzyme (ACE) inhibitor on the evolution of glomerular injury according to the time at which the treatment is started with respect to the onset of the disease was studied. Three groups of animals were used, a control Group 1 and two groups of diabetic rats treated with insulin (Groups 2 and 3). The latter were monitored until urinary protein excretion reached 40 to 50 mg/24 h (on average, 23 wk after the induction of the diabetes). At this time, Group 2 continued to receive insulin alone, whereas Group 3 was also given the ACE inhibitor moexipril for 8 more wk. Untreated diabetic rats showed a moderate increase in systolic blood pressure that was normalized by moexipril administration. Urinary protein excretion progressively increased during the 8-wk follow-up in untreated diabetics that, at the end of the study, developed moderate glomerular sclerosis. Moexipril treatment lowered urinary protein excretion to a normal range and completely prevented glomerular injury. Three other groups of rats were similarly treated, except that moexipril treatment was started later on (when proteinuria reached 100 to 200 mg/24 h, on average, 32 wk after the induction of diabetes), and were monitored for another 8 wk. Untreated and treated diabetics had comparable blood glucose levels throughout. Systolic blood pressure, significantly increased in untreated diabetic rats, was effectively controlled by moexipril administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors

Effects of angiotensin-converting enzyme inhibition on glomerular capillary wall ultrastructure in MWF/Ztm rats.

Previous studies have documented that treatment with angiotensin-converting enzyme (ACE) inhibitors prevents spontaneous proteinuria and enhances the glomerular ultrafiltration coefficient in male MWF/Ztm rats. The aim of this study was to study whether these beneficial effects of ACE inhibitors on glomerular capillary wall function are derived from the preservation of its ultrastructure. Conventional morphometrical analysis of kidney tissue, by light and electron microscopy, was used to quantify glomerular structural changes in the male MWF/Ztm rats treated with the ACE inhibitor cilazapril for 2 and 6 months and in age-matched untreated controls. At the end of the observation periods, both systolic blood pressure and urinary protein excretion were significantly reduced in treated animals as compared with controls. Glomerular volume increased significantly with time but was comparable in control and in treated rats. Surface area available for filtration (measured as peripheral capillary wall) was comparable in control and in treated animals at the same time and increased significantly with time only in treated rats. Mesangial volume was significantly higher in cilazapril-treated animals than in controls after 2 months of treatment and was comparable after 6 months. ACE inhibitor treatment did not induce significant ultrastructural changes such as basement membrane thickness, configuration of epithelial podocytes, and the width and the frequency of the epithelial slit diaphragms. These results indicate that the previously observed increase in the glomerular ultrafiltration coefficient by an ACE inhibitor in these animals is not the consequence of changes in filtering surface area but likely reflects an increase in membrane hydraulic permeability.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors

Prognosis of untreated patients with idiopathic membranous nephropathy.

BACKGROUND: Defining the most appropriate treatment for patients with idiopathic membranous nephropathy is a matter of controversy. The course of the disorder is often benign, and the immunosuppressive regimens used in some patients have uncertain benefits and substantial risks. We studied the natural history of idiopathic membranous nephropathy in patients who received only symptomatic therapy. METHODS: We prospectively studied 100 consecutive patients (68 men and 32 women; mean [+/- SD] age, 51 +/- 17 years) with biopsy-proved idiopathic membranous nephropathy. The patients received diuretic or antihypertensive drugs as needed, but no glucocorticoid or immunosuppressive drugs. We examined the patients and measured their urinary protein excretion and serum creatinine concentrations every 6 months for a mean of 52 months. RESULTS: Twenty-four (65 percent) of the 37 patients followed for at least five years had complete or partial remission of proteinuria; in 6 others (16 percent), end-stage renal disease developed, and they required dialysis. As calculated by the Kaplan-Meier method, the estimated probability (+/- the standard error of the estimate) of retaining adequate kidney function was 88 +/- 5 percent after five years and 73 +/- 7 percent after eight years. The prognosis was poorer in men and in patients over 50 years of age, but not in patients with the nephrotic syndrome, hypertension, or hypercholesterolemia. CONCLUSIONS: Most untreated patients with idiopathic membranous nephropathy maintain renal function for prolonged periods and are likely to have spontaneous remission. These results do not support the use of glucocorticoids and immunosuppressive drugs in patients with idiopathic membranous nephropathy.

Adult

Glucose-induced changes in renal haemodynamics in proteinuric type 1 (insulin-dependent) diabetic patients: inhibition by acetylsalicilic acid infusion.

The effect of hyperglycaemia on renal function in diabetic nephropathy remains poorly understood. We investigated the renal haemodynamic response to an acute plasma glucose rise from sustained euglycaemia to sustained hyperglycaemia in eight persistently proteinuric Type 1 (insulin-dependent) diabetic patients. Studies were performed in a double-blind cross-over manner after i.v. injection of 450 mg lysine acetylsalicilate (equivalent to 250 mg acetylsalicilic acid) or equal volume of 0.9% NaCl (isotonic saline). In the isotonic saline experiments hyperglycaemia produced a significant rise, by approximately 35%, in glomerular filtration rate in all patients from 41.5 +/- 5.2 to 55 +/- 6 ml.min-1.1.73 m-2 (p < 0.005) and an increase in sodium paraminohippurate clearance from 178 +/- 22.7 to 220 +/- 20.0 ml.min-1.1.73 m-2 (p < 0.05). These changes took place within the first 30 min of glucose infusion and were maintained for a 90 min hyperglycaemic period. Filtration fraction did not change significantly. Infusion of lysine acetylsalicilate lowered baseline glomerular filtration rate (isotonic saline vs lysine acetylsalicilate 41.5 +/- 5.2 vs 30.0 +/- 5.7 ml.min-1.1.73 m-2; p < 0.05) and significantly blunted the rise in glomerular filtration rate during hyperglycaemia (glomerular filtration rate increment: saline vs lysine acetylsalicilate: 13.6 +/- 2.8 vs 5.3 +/- 1.8 ml.min-1.1.73 m-2; p < 0.005). The effects on renal plasma flow were similarly blunted. In five additional patients, time- and volume-controlled isotonic saline experiments during sustained euglycaemia showed no significant changes in glomerular filtration rate and sodium paraminohippurate clearance.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Edema of the nephrotic syndrome: the role of the atrial peptide system.

The nephrotic syndrome is associated with an expanded interstitial volume and edema due to sodium and water retention. The mechanisms underlying these abnormalities have been only partially clarified. Renal hypoperfusion has been considered the key event that promotes avid sodium and water reabsorption by the kidney. Hypoperfusion results from hypovolemia, a consequence of urinary protein losses and decreased oncotic pressure. However, in some patients plasma volume is normal or even increased, suggesting that in such cases the cause of sodium and water retention might be independent of systemic events and possibly originates in the kidney. Experimental evidence is now available to support this, but the intrarenal mediator(s) that promote the abnormal salt retention are still not fully clear. Atrial natriuretic peptide (ANP), which increases sodium and water excretion, has been suspected to participate in fluid retention. This is consistent with experimental and human data of a markedly blunted natriuretic and diuretic response to systemic infusion of ANP in the nephrotic syndrome. Recent studies of the mechanisms of the blunted natriuretic and diuretic response to ANP documented an increased activity of renal sympathetic nerves, but the results are controversial. The altered response to ANP also may be related to a defect in the number and affinity of receptor-binding sites for the peptide. Evidence also is available of a possible defect at the level of intracellular cyclic guanosine monophosphate, the second messenger of ANP. The gene encoding for a cyclophilin-like protein, which is increased in sodium-retaining conditions, is upregulated in the kidneys of nephrotic rats, and the infusion of ANP further increases cyclophilin-like protein mRNA. Thus, multiple factors probably act in concert to induce edema formation in the nephrotic syndrome. In this review we specifically address the tubular insensitivity to the natriuretic and diuretic action of ANP, which could be an important initiating event and could possibly contribute to sustaining the edema.

Animals

Plasma exchange in children with hemolytic-uremic syndrome at risk of poor outcome.

A retrospective study on the use of plasma exchange in children with hemolytic-uremic syndrome was conducted to compare the renal outcome in treated and nontreated patients. Only children over 5 years of age were selected because they seem to be at major risk of bad renal prognosis. The evolution of renal function in the two populations is not significantly different, but chronic renal failure (clearance < 60 mL/min/1.73 m2) and end-stage renal failure were present only in untreated patients.

Adolescent

Reversible activation defect of the platelet glycoprotein IIb-IIIa complex in patients with uremia.

Patients with chronic renal failure may experience a bleeding tendency and blood loss after surgical procedures or trauma. Altered platelet function has been indicated as the major cause of uremic bleeding, but its pathogenesis remains to be clarified. In two groups of patients with chronic renal disease of various etiology, the receptor function of glycoprotein (GP) Ib and GP IIb-IIIa complex was studied. Glycoprotein Ib was assessed with both 125I-von Willebrand factor (vWF) and 125I-asialo-vWF binding to platelets. Activation-dependent receptor function of the GP IIb-IIIa complex was studied with 125I-fibrinogen and 125I-vWF binding to washed platelets stimulated with adenosine diphosphate plus epinephrine (10 mumol/L each). Flow cytometric analyses on resting and stimulated platelets were performed using an activation-dependent, anti-GP IIb-IIIa monoclonal antibody (PAC1) as well as an activation-independent antibody (LJ-P1). Binding of PAC1 also was assessed in washed and stimulated platelets and in platelet-rich plasma before and after dialysis. We found that the activation-dependent receptor function of the GP IIb-IIIa complex is defective in uremia, as shown by decreased binding of both vWF and fibrinogen to stimulated platelets. Moreover, binding of the activation-dependent anti-GP IIb-IIIa monoclonal antibody, PAC1, was significantly decreased in uremia compared with that of the activation-independent antibody, LJ-P1. Thus, the number of GP IIb-IIIa receptors expressed on the platelet membrane is normal, but their activation is impaired. In contrast to the functional abnormality of GP IIb-IIIa, the vWF-binding activity of GP Ib was normal.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult