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S Panagiotopoulos

Publications and source records attributed to S Panagiotopoulos.

At least 19 recordsLinked to original sources

Proteolysis of insulin-like growth factor-binding protein-3 is increased in urine from patients with diabetic nephropathy.

The insulin-like growth factor (IGF) system has been implicated in the development of experimental diabetic nephropathy. IGF-binding protein-3 (IGFBP-3) modulates IGF actions, and proteolysis decreases its binding affinity for IGFs. The aim of this study was to explore the possibility that proteolysis of IGFBP-3 may be altered in diabetic nephropathy and may therefore modify the intrarenal effects of IGFs. IGFBP-3 proteolysis in urine from diabetic patients with normo- [albumin excretion rate (AER), <20 microg/min], micro- (AER, 20-200 microg/min), and macroalbuminuria (AER, >200 microg/min) was studied in 34 patients with noninsulin-dependent diabetes mellitus (NIDDM), 14 patients with insulin-dependent diabetes mellitus, and 9 controls. Urine samples were analyzed by Western ligand blotting and IGFBP-3 immunoblotting. Protease activity was quantitated using [125I]IGFBP-3 as a substrate. WLB showed three main bands (40-46, 35, and 26 kDa) in control urine and a fainter 18-kDa band. All but the 35-kDa band were immunoreactive with the IGFBP-3 antiserum. The same pattern of IGFBPs was seen in urine from normoalbuminuric diabetic patients. However, the urine of diabetic patients with micro- and macroalbuminuria contained little or no intact 40- to 46-kDa IGFBP-3. In patients with noninsulin-dependent diabetes mellitus, urinary IGFBP-3 protease activity in micro- (n = 13) and macroalbuminuric patients (n = 12; mean +/- SD[SCAP], 75 +/- 25% and 84 +/- 24%) was significantly higher than that in normoalbuminuric patients (29 +/- 9%; P = 0.0001). Similar results were observed in patients with insulin-dependent diabetes mellitus. Proteolytic activity in diabetic urine was due to a serine protease. In conclusion, diabetic nephropathy was associated with IGFBP-3 proteolysis in urine. As similar changes were not observed in patients' sera, this is likely to reflect changes in the kidney or urinary tract, resulting in increased local IGF bioavailability, and therefore may contribute to the structural changes of diabetic nephropathy.

Adult↗

Prevention of albuminuria by aminoguanidine or ramipril in streptozotocin-induced diabetic rats is associated with the normalization of glomerular protein kinase C.

This study examined whether the prevention of diabetes-related albuminuria by aminoguanidine (AG) or ramipril (RAM) may be mediated by a common post-glomerular basement membrane renal intracellular mechanism involving protein kinase C (PKC). The renal handling of albumin was examined over 24 weeks in control and streptozotocin (STZ)-induced diabetic rats. A radioimmunoassay (RIA) that measures intact albumin, and intravenously injected tritium-labeled rat serum albumin, was used to assess the proportion of intact albumin and albumin fragments in urine. Diabetes was induced in male Sprague-Dawley rats by the intravenous administration of STZ at a dose of 50 mg/kg. Age-matched control rats received buffer alone. Diabetes was characterized by an increase in blood glucose (>15 mmol/l), an increase in GHb (means at 24 weeks 29.3+/-1.1%; control 6.1+/-0.1%, P<0.005), an increase in glomerular filtration rate (GFR) (4.13+/-0.15 ml/min; control 3.54+/-0.19 ml/min, P<0.005), an increase in intact albumin excretion rate (expressed as geometric mean 11.64 times/divided by 2.11 mg/24 h; control 0.74 times/divided by 1.57 mg/24 h, P<0.005) as measured by RIA, and an increase in glomerular PKC activity (26.83+/-2.38 pmol x mg(-1) x min(-1); control 14.6+/-2.99 pmol x mg(-1) x min(-1), P<0.005). Treatment of diabetic rats with either AG or RAM prevented the rise in intact albuminuria and glomerular PKC activity. Renal lysosomal cathepsin activity decreased in diabetic rats and this was not prevented by AG or RAM. Neither drug affected glycemic control or GFR, but RAM reduced systolic blood pressure (BP), whereas AG did not. These data indicate that urinary excretion of intact albumin and albumin-derived fragments in diabetes may be modulated independently of glycemic control (AG and RAM) and systolic BP (RAM). While both drugs are known for their different mechanisms of action, the fact that both prevent diabetes-related increases in glomerular PKC activity and albuminuria supports the hypothesis that PKC plays a central role in the development of diabetic nephropathy.

Albuminuria↗

Effect of diabetes and aminoguanidine therapy on renal advanced glycation end-product binding.

BACKGROUND: Advanced glycation end-products (AGEs) have been implicated in the pathogenesis of diabetic nephropathy, and aminoguanidine (AG) has been shown to decrease the accumulation of AGEs in the diabetic kidney. METHODS: This study investigates changes in AGE binding associated with diabetes in the rat kidney using in vitro and in vivo autoradiographic techniques. Male Sprague-Dawley rats were randomized into control and diabetic groups with and without AG treatment and were sacrificed after three weeks. Frozen kidney sections (20 microm) were incubated with [125I]-AGE-RNase or [125I]-AGE-BSA. To localize the AGE binding site, in vivo autoradiography was performed by injection of 15 microCi of [125I]-AGE-BSA into the abdominal aorta of the rat. RESULTS: Low-affinity binding sites specific for AGEs in the renal cortex (IC50 = 0.28 microm) were detected by in vitro autoradiography. There was a significant increase in [125I]-AGE binding in the diabetic kidney, which was prevented by AG treatment. Emulsion autoradiography revealed that binding was localized primarily to proximal tubules in the renal cortex. Renal AGE levels, as assessed by fluorescence or by radioimmunoassay, were increased after three weeks of diabetes. This increase was attenuated by AG therapy. CONCLUSIONS: AGE binding sites are present within the proximal tubules of the kidney and appear to be modulated by endogenous AGE levels. It remains to be determined if these binding sites represent receptors involved in clearance of AGEs or are linked to pathogenic pathways that lead to the development of diabetic nephropathy.

Animals↗

Aminoguanidine has an anti-atherogenic effect in the cholesterol-fed rabbit.

Advanced glycosylation endproducts (AGEs) which result from the non-enzymatic interaction of proteins and glucose are implicated in the vasculopathy of diabetes and aging. Since aminoguanidine (A) inhibits the accumulation of AGEs, we explored its effects on the development of atherosclerosis. Male New Zealand white cross rabbits fed a high cholesterol (1%) diet were randomized to control (C) or increasing doses of A treatment (25, 50 and 100 mg/kg A body weight). The animals were sacrificed after 12 weeks. Sudan IV was used to stain the lipid containing plaques of the aortic arch, thoracic and abdominal aorta and the surface area occupied by atheroma was assessed. Increasing doses of A treatment were associated with reduction in plaque formation in the aorta. At a dose of 100 mg/kg A, there was a 30, 49 and 48% reduction in plaque formation in the aortic arch, thoracic and abdominal aorta, respectively. There was a correlation between AGE levels and the degree of atheroma in these cholesterol fed rabbits (control, r = 0.75, P < 0.01; 100 mg/kg A, r = 0.59, P = 0.02). These data suggest that advanced glycation may participate in atherogenesis and raise the possibility that inhibitors of advanced glycation may retard this process.

Animals↗

Anomalous decrease in dextran sulfate clearance in the diabetic rat kidney.

The anomalous increase in charge selectivity as previously observed with reduced dextran sulfate clearances in diabetic rats (L. D. Michels, M. Davidman, and W. F. Keane. Kidney Int. 21: 699-705, 1982) was confirmed in 4-wk streptozotocin (STZ) diabetic Sprague-Dawley rats using the isolated perfused kidney technique. The apparent charge selectivity in both control and diabetic rats could be abolished by increasing the dextran sulfate concentration to 200 micrograms/ml in the perfusate. This was demonstrated by a high rate of processing of dextran sulfate (approximately 1,700 ng.min-1.kidney-1) by glomeruli in both control and diabetic kidneys and by the fact that charge interaction could not explain the concentration dependence. The amount of urinary desulfation of dextran sulfate was also found to be significantly less in the diabetic kidney as was glomerular sulfatase activity compared with controls. Dextran sulfate glomerular processing is therefore altered in the STZ diabetic rat kidney but could be rationalized in terms of previous models of endothelial cell receptor-mediated uptake of dextran sulfate. The results are consistent with recent work demonstrating that there is little or no electrostatic charge interaction operating on dextran sulfate or other negatively charged molecules at the glomerular capillary wall.

Animals↗

Alterations in renal degradation of albumin in early experimental diabetes in the rat: a new factor in the mechanism of albuminuria.

1. Albumin is normally excreted as a mixture of intact protein and fragments that are produced during renal passage. The purpose of this study was to investigate the ratio of intact versus degraded forms of excreted albumin to ascertain whether changes in this ratio could account for the apparent increase in albumin excretion seen in diabetes, as measured by standard radioimmunoassay techniques. 2. Four-week male Sprague-Dawley rats with streptozotocin-induced diabetes and age-matched control rats were intravenously injected with [3H]albumin. Urine collected over 2 h was analysed by size exclusion chromatography and radioimmunoassay. A standard radioimmunoassay found a 7-fold increase in albumin excretion rate in diabetic rats, whereas there was only a 2-fold increase in albumin excretion (intact plus fragments). Urine analysed by size exclusion chromatography showed severe degradation for control rats (% monomer=4+/-2%); in diabetic rats there was a significant amount of monomer albumin excreted, along with moderately degraded and heavily degraded albumin (% monomer=17+/-5%). 3. This study has shown that the radioimmunoassay, which specifically detects intact albumin, considerably underestimates the amount of total urinary albumin which consists of intact and degraded material. The increase in albumin excretion rate observed in diabetes as measured by radioimmunoassay is mainly due to a change in the amount of intact albumin excreted and this is specifically due to the inhibition of albumin degradation at a post-glomerular site and not due to the onset of any type of glomerular 'shunt' pathway.

Albumins↗

Relative contributions of advanced glycation and nitric oxide synthase inhibition to aminoguanidine-mediated renoprotection in diabetic rats.

Advanced glycation end products (AGEs) have previously been shown to be increased in the diabetic kidney. Aminoguanidine, an inhibitor of advanced glycation, has been shown to attenuate the development of AGEs as well as the progression of renal disease in experimental diabetes. However, the precise mechanisms through which aminoguanidine acts remain to be elucidated since it is also able to act as an inhibitor of nitric oxide synthase (NOS). This study has therefore compared the effects of aminoguanidine with the effects of two other inhibitors of NOS, L-NAME and methylguanidine, on the development of experimental diabetic nephropathy. Diabetic rats were randomised to receive no treatment, aminoguanidine (1 g/l in drinking water), L-NAME (5 mg/l in drinking water) or methylguanidine (1 g/l in drinking water). Diabetic rats had increased levels of albuminuria and urinary nitrite/nitrate excretion when compared to control rats. Renal AGEs measured by fluorescence as well as by a carboxymethyllysine reactive radioimmunoassay, were elevated in diabetic rats. No changes in inducible NOS (iNOS) protein expression were detected in experimental diabetes nor did aminoguanidine affect iNOS expression. Aminoguanidine did not affect blood glucose or HbA1c but it did prevent increases in albuminuria, urinary nitrites/nitrates and renal AGE levels as measured by fluorescence and radioimmunoassay. L-NAME and methylguanidine did not retard the development of albuminuria, nor did they prevent increases in renal AGE levels, as assessed by fluorescence. However, these treatments did prevent increases in AGEs, as measured by radioimmunoassay. This study indicates that the renoprotective effect of aminoguanidine in experimental diabetes cannot be reproduced by L-NAME or methylguanidine. It is likely that the effect of aminoguanidine is mediated predominantly by decreased AGE formation rather than via NOS inhibition. It also raises the possibility that inhibition of fluorescent AGE formation may be more renoprotective than inhibition of the formation of carboxymethyllysine-containing AGEs.

Administration, Oral↗

Fractional clearance of albumin is influenced by its degradation during renal passage.

1. The fractional clearance of intact albumin as determined by fractionation of urine by gel chromatography gave a value of 3.9 +/- 1.6 x 10(-4) for the isolated perfused kidney and 2.1 +/- 0.6 x 10(-4) in vivo using ALZET osmotic pumps. 2. Albumin fractional clearance as measured by detection of the tritium label on the albumin molecule by radioactivity analysis gave a value of 7.5 +/- 3.9 x 10(-3) for the isolated perfused kidney and 2.3 +/- 0.9 x 10(-3) in vivo. 3. The major differences between assays that detect intact albumin compared with non-specific assays in the estimates of the fractional clearance of albumin can be explained by the degradation of approx. 90% of albumin to small peptides during its renal passage. This has been demonstrated by size exclusion chromatography of urine samples from experiments where (i) exogenous tritium-labelled albumin was used in isolated perfused kidneys, (ii) exogenous tritium-labelled albumin was administered intravenously and (iii) analysis was made with metabolically labelled endogenous albumin in vivo.

Albumins↗

Why is proteinuria such an important risk factor for progression in clinical trials?

There are strong reasons to justify the concept that proteinuria is a major risk factor for progression in clinical trials. The evidence is strongest where therapeutic intervention has been focused on established renal disease, when changes in albumin excretion rate (AER) and glomerular filtration rate (GFR) occur within a short time span. Proteinuria is also important in emerging renal disease, such as incipient diabetic nephropathy (DN), since natural history studies show that small increases in AER predict clinical nephropathy and, ultimately, a decline in GFR. However, the absence of concurrent changes in GFR in incipient DN complicates the evaluation of clinical trials in this condition. It is also not certain that the degree of coupling of changes in AER and GFR is the same during intervention as during natural history studies. The importance of proteinuria as a risk factor for progression has been strengthened by recent evidence showing that proteinuria itself causes renal damage. Traditional concepts of the damaging effects of proteinuria have focused on the glomeruli, where mesangial expansion induced by transcapillary passage of proteins has been considered to lead to a decrease in glomerular filtration surface and a decline in GFR. New evidence suggests that interaction of albumin with proximal renal tubules may not only lead to renal damage but may also be causally related to increases in AER.

Albuminuria↗

Effects of insulin on body composition in patients with insulin-dependent and non-insulin-dependent diabetes.

Insulin is used to control blood glucose but may have an adverse effect on the amount and distribution of fat mass and other cardiovascular risk factors. To test this hypothesis the effect of insulin therapy on blood glucose, body composition, and lipid levels was measured during 6 months in 9 patients with newly diagnosed insulin-dependent (Type 1) diabetes mellitus (IDDM) and 15 patients with non-insulin dependent (Type 2) diabetes (NIDDM) and secondary failure of therapy with oral hypoglycaemic agents. Both groups received similar daily doses of insulin (approximately 0.6 units kg-1 day-1). Glycaemic control improved during 6 months treatment in both groups, although the reduction in HbA1c was greater in IDDM (5.2 +/- 0.7%) than in NIDDM (2.0 +/- 0.4%, p < 0.001). All parameters of the lipid profile improved in IDDM but not in NIDDM. Body weight, lean mass, and fat mass, measured by dual energy x-ray absorptiometry, increased at 1 month in IDDM but not in NIDDM. By 6 months, body weight had increased more in IDDM than NIDDM (9.1 +/- 1.2 vs 3.77 +/- 0.5 kg, p < 0.01). The increase in weight was predominantly lean mass in IDDM (60.4 +/- 9.3%) and fat mass in NIDDM (59.9 +/- 8.4%). The increase in lean mass was greater in IDDM than NIDDM (5.6 +/- 1.1 vs 1.4 +/- 0.3 kg, p < 0.001). Fat mass increased by similar increments in IDDM and NIDDM (3.4 +/- 0.8 vs 2.4 +/- 0.5 kg, p = ns) and was predominantly an increase in trunk fat (IDDM: 2.3 +/- 0.6 kg, NIDDM: 2.0 +/- 0.4 kg, p = ns). The central/peripheral fat mass ratio prior to treatment was lower in IDDM than NIDDM (0.64 +/- 0.05 vs 1.09 +/- 0.09, p < 0.01) and then increased in IDDM by 0.32 +/- 0.15 (p = 0.07) and in NIDDM by 0.22 +/- 0.06 (p < 0.001). In conclusion, insulin therapy is associated with weight gain in both IDDM and NIDDM. In the former, weight gain reflects increases in lean mass whereas in NIDDM it reflects an increase in trunk fat mass. It remains to be determined whether this trend to central obesity partly offsets other benefits of insulin therapy in NIDDM.

Adipose Tissue↗

Organ specificity of antihypertensive therapy on ocular albumin vascular clearance and albuminuria in the hypertensive diabetic rat.

PURPOSE: The contributions of hypertension and diabetes to microvascular dysfunction in the kidney and eye were investigated. Two indices of microvascular dysfunction, urinary albumin excretion rate (AER) and albumin vascular clearance (AVC) in the eye, were studied in control and streptozocin diabetic Wistar Kyoto (WKY) and spontaneously hypertensive rats (SHR). METHODS: Studies were performed on four groups of untreated rats--nondiabetic and diabetic WKY and nondiabetic and diabetic SHR--and on three groups of diabetic SHR treated with a converting enzyme inhibitor (perindopril), a calcium-channel blocker (lacidipine), or triple therapy (hydrochlorothiazide, reserpine, and hydralazine). In all rats, AER and AVC were measured at 16 weeks. RESULTS: There was a progressive increase in both parameters in the order WKY, diabetic WKY, SHR, and diabetic SHR. When compared with nondiabetic WKY, diabetic SHR showed an approximately 30-fold increase in AER and an approximately threefold increase in AVC. Treatment of diabetic SHR with perindopril or triple therapy normalized AER compared to an equihypotensive dose of lacidipine, which had no effect. By contrast, the three antihypertensive regimens showed a different order of efficacy in preventing increases in ocular AVC. In diabetic SHR, the increase in retinal AVC was prevented largely by lacidipine, whereas the other two antihypertensive regimens showed lesser effects [AVC expressed as percentage nondiabetic WKY: untreated diabetic SHR 278% +/- 47%, lacidipine 93% +/- 10% (P < 0.001), triple therapy 132% +/- 37% (P < 0.05), and perindopril 167% +/- 9% (P < 0.05)]. Lacidipine also prevented the increase in AVC of the anterior and posterior uvea. By contrast, increases in AVC observed in the diabetic SHR were not prevented by perindopril in the posterior uvea or by triple therapy in the anterior uvea. Thus, hypertension and diabetes increased ocular AVC and AER, and effective antihypertensive therapy substantially prevented changes in both parameters. However, despite equivalent levels of blood pressure control for each regimen, discordant effects were noted on AVC and AER. Perindopril was associated with significantly lower AER than lacidipine, whereas lacidipine was more potent in preventing increases in ocular AVC. CONCLUSIONS: Results of this study suggest that different antihypertensive regimens in the diabetic rat may exert organ-specific effects on the retina and kidney despite equivalent effects on systemic blood pressure. These data also raise the possibility that retinal microvascular dysfunction in diabetes is ameliorated more readily by calcium-channel blockade than by converting-enzyme inhibition, whereas the reverse applies to renal microvascular dysfunction, as reflected by albuminuria.

Albuminuria↗

Complementary effects of pravastatin and nicotinic acid in the treatment of combined hyperlipidaemia in diabetic and non-diabetic patients.

BACKGROUND: Given that treatment with a single drug is frequently unsuccessful in patients with combined hyperlipidaemia, there is a rationale for the study of regimens using drugs that have complementary therapeutic profiles. We therefore set out to compare the efficacy of a combined pravastatin and nicotinic acid regimen with higher dose monotherapy using either drug in patients with non-insulin-dependent diabetes and in non-diabetic patients with combined hyperlipidaemia. METHODS: Forty-four patients with total-cholesterol levels of 6.5 mmol/l or higher and triglyceride levels of 2.5 mmol/l or above were randomly assigned to receive either pravastatin alone (40mg/day) or nicotinic acid alone (1500mg/day) for 12 weeks. At the end of this period, the participants received a combination of pravastatin (20mg/day) and nicotinic acid (1000mg/day) for a further 12 weeks. The lipid parameters measured included levels of total cholesterol, triglycerides, low-density-lipoprotein (LDL) cholesterol and high-density-lipoprotein (HDL) cholesterol. RESULTS: Thirty-three patients (22 without and 11 with diabetes) completed the protocol. Monotherapy with pravastatin was more effective than that with nicotinic acid in reducing levels of total cholesterol (-24.9 versus -9.8%, P<0.001) and LDL cholesterol (-32.1 versus -16.9%, P < 0.01), similar in reducing levels of triglyceride (-28.0 versus -31.8%, NS) and tended to be less effective in elevating levels of HDL cholesterol (+16.4 versus +30.8%, P = 0.06). Combination therapy was more effective than pravastatin monotherapy in reducing levels of triglyceride (-39.3 versus -28.0%, P < 0.05) and elevating those of HDL cholesterol (+35.6 versus +16.4%, P < 0.001) and was equally effective in reducing total-cholesterol (-22.3 versus -24.9%, NS) and LDL-cholesterol (-27.1 versus -32.1%, NS) levels. Combination therapy was more effective than nicotinic acid monotherapy in reducing levels of total cholesterol (-23.8 versus -9.8%, P < 0.001), triglyceride (-39.4 versus -31.8%, P < 0.05) and LDL cholesterol (-35.7 versus -16.9%, P < 0.05) and equally effective in elevating HDL-cholesterol levels (+33.6 versus +30.8%, NS). Diabetic and non-diabetic participants responded similarly to combination therapy. Eleven patients (25%) were withdrawn from the study: nine as a result of nicotinic acid intolerance (flushing and nausea) and one through pravastatin intolerance (nausea); one patient died of a myocardial infarction. Combination therapy elevated glycosylated haemoglobin A1c levels in non-diabetic patients (5.5 to 5.8%, P < 0.001); in diabetic patients, however, the observed rise (7.4 to 7.9%) was not statistically significant. Fasting plasma glucose levels, liver function tests and levels of creatine kinase or uric acid were unaffected by either monotherapy or by combination therapy, with the exception of an elevation of the glucose level in diabetic patients receiving nicotinic acid monotherapy. CONCLUSION: Pravastatin and nicotinic acid in lower-dose combination are more effective than pravastatin alone in reducing levels of triglyceride and elevating those of HDL cholesterol and are more effective than nicotinic acid alone in reducing total-cholesterol triglyceride and LDL-cholesterol levels. Combination therapy is equally effective in type-II diabetic and non-diabetic people. The complementary effects of the combination therapy on lipid levels suggest that this regimen should be considered as a therapeutic option in patients with combined hyperlipidaemia who tolerate the side effects of nicotinic acid.

Adult↗

Progressive decline in renal function in diabetic patients with and without albuminuria.

This study describes patterns of progression of albuminuria and renal function in a subgroup of 40 patients from a total cohort of 211 diabetic patients (118 type I, 93 type II) followed over a period of 8-14 years. Forty patients (18 with type I diabetes, 22 with type II diabetes) showed progressive increases in albumin excretion rate (AER) and/or decreases in creatinine clearance (CC) during the study period. Of these, AER alone increased in 15 patients, AER increased and CC decreased in 13 patients, and CC alone decreased in 12 patients, with a similar distribution of type I and type II diabetic patients in each group. Of the 28 patients who showed an increase in albuminuria, AER increased at an annual rate of 30-40%, resulting in a 4- to 8-fold increase in AER to > 20 micrograms/min during the study. Of the 25 patients who showed a decrease in renal function, CC decreased at an annual rate of 4-5 ml/min, resulting in an approximate halving of CC to < 90 ml/min during the study. The rate of fall in CC was not related to the presence or absence of concomitant increases in albuminuria. However, a significant preponderance of women in the group showed a decline in CC alone. The decline in CC was associated with an increase in plasma creatinine as well as a progressive decrease in urinary creatinine excretion, but the underlying mechanisms remain unexplained. These data support the concept that a subgroup of diabetic patients may show a decline in renal function in the absence of significant increases in AER.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The antiatherosclerotic effect of the calcium antagonists and their implications in hypertension.

Calcium-dependent processes involved in atherosclerotic lesion formation include platelet aggregation, monocyte adhesion, release of growth factors, cell proliferation and migration, protein and collagen secretion and synthesis, and endothelial necrosis. In addition, the calcium (Ca2+) component of smooth muscle cell contraction contributes to one of the main risk factors, hypertension. The ability of the calcium channel blockers (CCBs) to interrupt the sequence of events that culminates in the formation of atherosclerotic lesions has been demonstrated in animal models and clinical trials. These studies have involved the short-acting CCBs. The results of this animal study show that manidipine, a new long-acting CCB, produces a dose-dependent reduction in atherosclerotic lesion formation without reducing plasma cholesterol.

Animals↗

Long-term glycemic control and the rate of progression of early diabetic kidney disease.

In this prospective study of 11.9 years duration (range 9 to 14), we examined the progression of albuminuria prior to and after the onset of microalbuminuria [albumin excretion rate (AER): 20 to 200 micrograms/minute]. Glycated hemoglobin (HbA1), AER and blood pressure were measured every six months. Twenty-two (13 type I, 9 type II) patients were identified in whom AER increased progressively (progressors). These patients were compared with 22 others matched for age, duration and type of diabetes in whom AER did not change significantly during the study period (non-progressors). In the progressors, the rate of increase in AER correlated with mean HbA1 for the study period in patients with type I (r = 0.68, P < 0.01) and type II diabetes (r = 0.71, P < 0.05). Furthermore, AER began increasing well before the conventional 20 micrograms/minute threshold of microalbuminuria had been reached and within the first five years of diagnosis of type I diabetes. We conclude that in predisposed diabetic patients, long-term glycemic control is correlated with the rate of development of early renal abnormalities. Repeated measurements of AER from the time of diagnosis may be useful in the early detection of patients who will develop microalbuminuria and ultimately overt diabetic nephropathy.

Adolescent↗

The effects of dietary cholesterol on experimental diabetic nephropathy.

Hyperlipidaemia has been previously shown to accelerate various models of renal disease. The present study has evaluated the effects of dietary cholesterol supplementation on functional and structural aspects of experimental diabetic nephropathy. Control and streptozotocin diabetic male Sprague Dawley rats were randomized to receive a normal diet or a high cholesterol (4% cholesterol + 1% cholic acid) diet. After 32 weeks, serum lipids, glycaemic control, urinary albumin excretion and glomerular ultrastructural parameters were evaluated in the 4 groups. Diabetes was associated with increased total cholesterol and triglyceride levels. Cholesterol supplementation increased total and decreased HDL-cholesterol in control and diabetic rats. Diabetes increased albuminuria but cholesterol supplementation did not influence urinary albumin excretion. In diabetic rats, glomerular basement membrane thickness and glomerular volume were increased but cholesterol supplementation did not influence any glomerular ultrastructural parameter. In control rats, increased dietary cholesterol intake led to an increase in blood pressure and glomerular volume. In contrast to other models of renal disease, experimental diabetic nephropathy does not appear to be exacerbated by dietary cholesterol supplementation.

Albuminuria↗

Nifedipine and experimental cardioprotection.

Experimental studies using animal models designed to mimic the effect of ischemia and postischemic reperfusion have provided data indicating that the calcium antagonists might be cardioprotective. The laboratory studies have indicated consistently, however, that the timing of such drug administration is of critical importance. In the case of nifedipine (a dihydropyridine-based calcium antagonist), the laboratory studies have shown that when used prophylactically it has a protective effect during short (as in the "stunned heart") and long episodes (greater than 30 minutes) of ischemia. This protection has been quantitated in a variety of ways, including preservation of left ventricular function. A complete understanding of whether and how calcium antagonists can be used to protect the myocardium requires further detailed knowledge of not only of the voltage-activated calcium channel and its binding sites, but also of the sequence of events triggered by ischemia and reperfusion. Recent data from our laboratories indicate that cardiac membranes contain specific binding sites for the novel, endothelial-derived vasoconstrictor peptide, ET, and that the density of these sites increases during ischemia. ET promotes Ca2+ influx through the voltage-sensitive channels by a mechanism that does not involve a direct interaction with the dihydropyridine (DHP)-sensitive binding sites. Nevertheless, the ET-induced Ca2+ influx is attenuated by the dihydropyridine-based calcium channel blockers.

Animals↗