Why are coronary plaques more malignant in the uraemic patient?
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Biomedical subjects
Publications and source records attributed to E Ritz.
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BACKGROUND: There is a continuing need for non-aluminium and non-calcium-containing oral phosphate binders. A novel product, i.e. stabilized polynuclear iron hydroxide, has experimentally been shown to be an effective phosphate binder. The purpose of the study was to test the efficacy and tolerability of the compound in hyperphosphataemic patients with stable preterminal renal failure. METHODS: In an open uncontrolled study we examined a total of 13 patients with stable preterminal renal failure (median serum-creatinine 5.4 mg/dl, range 4.2-7.3 mg/dl) and hyperphosphataemia (median fasting plasma-Pi 2.2 mmol/l, range 1.95 3.0 mmol/l). Patients were given dietary advise to maintain a constant intake of phosphate and this was verified by measuring urinary Pi excretion. After 2 weeks on no oral phosphate binders, patients were given daily 3 x 2.5 g stabilized polynuclear iron hydroxide with meals for 4 weeks. In a blinded fashion plasma-Pi and urinary-Pi as well as 1,84 i-PTH, vitamin D metabolites, serum-iron and ferritin were measured in a central laboratory. RESULTS: Compared to baseline (no oral phosphate binders), the median per cent decrease of fasting plasma-Pi at day 14 was 20% (7.2-41%) (P<0.001 by Wilcoxon test) and the median per cent decrease of urinary P excretion was 37% (9.6-56.6%) (P<0.0003 by Wilcoxon test for paired differences). Ferritin levels did not differ significantly during the study. Apart from a certain laxative action and black discolouration of the faeces, no side effects were noted in this short-term study. CONCLUSION: Stabilized polynuclear iron hydroxide is a promising, efficaceous and well tolerated phosphate binder.
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BACKGROUND: There has been much recent interest in accumulation of advanced glycation end-products (AGE) in uraemic patients. Analysis of AGE has been difficult, because commonly used methodologies, i.e. immunodetection assays or fluorescence measurements, reflect group reactivity and are not specific for chemically defined substances. Some investigators measured individual AGE compounds, e.g. pentosidine, carboxymethyllysine, pyrraline or imidazolone, but a systematic assessment of known compounds using specific HPLC methods in diabetic and non-diabetic end-stage renal disease (ESRD) patients during treatment has not been performed. METHODS: For the present study, the concentrations of early and late products of the Maillard reaction in plasma and ultrafiltrate were monitored during high-flux dialysis sessions in diabetic and non-diabetic patients. AGE were analysed by fluorescence spectroscopy and size exclusion chromatography with fluorescence detection. Specific HPLC methods were used to quantify the Amadori product fructoselysine and the AGE compounds pentosidine and pyrraline in acid or enzymatic hydrolysates. RESULTS: Using size exclusion chromatography, we confirmed a similar fluorescent peak distribution for diabetic and non-diabetic ESRD patients. Main fractions were found at approximately 70, approximately 14 and <2 kDa, confirming results obtained by other authors. In diabetic patients, the fluorescence intensity of the low molecular weight fraction was higher. Uraemic patients differed from controls mainly by the fluorescence of the low molecular weight fraction. The peak spectrum in ultrafiltrates was similar to that in plasma regarding low molecular weight fractions and the 14 kDa peak, but no protein-bound fluorescence was found at 70 kDa. HPLC analysis revealed a significant reduction of plasma pentosidine during high-flux dialysis in non-diabetic (from 9.1+/-5.1 to 8.5+/-4.7 pmol/mg protein; P<0.05) and diabetic patients (from 10.0+/-9.1 to 6.8+/-4.0 pmol/mg protein; P<0.05). In contrast, plasma fructoselysine showed only a non-significant trend to decrease in diabetic (from 3.24+/-0.88 to 3.05+/-0.77 nmol/mg protein) and non-diabetic patients (from 2.69+/-0.52 to 2.56+/-0.50 nmol/mg protein). Pyrraline, a nonfluorescent late AGE product derived from reaction of 3-deoxyglucosone with lysine, could not be detected (detection limit approximately 40 pmol/mg protein). Comparing HPLC and size exclusion analysis, it was found that pentosidine accumulated in the range of low molecular weight substances and was removed by high-flux dialysis. CONCLUSIONS: High-flux dialysis reduces the plasma concentration of fluorescent AGE compounds, i.e. pentosidine, but the Amadori product fructoselysine is not removed, indicating that this compound is protein associated.
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ACE-I and specific ETA receptor blockade comparably prevented the development of structural cardiovascular alterations such as LVH, myocardial interstitial expansion and wall thickening of intramyocardial and extracardiac arteries in experimental renal failure. However, the decrease in myocardial capillary supply and the concomitant increase in intercapillary distance could only be prevented by ETA receptor antagonism. These capillary changes which have been shown to occur in experimental renal failure as well as in uraemic patients play an important role in the pathogenesis of reduced cardiac ischaemia tolerance in renal failure. The data argue for a potential role of the local renin-angiotensin system as well as of the ET system in the pathogenesis of cardiovascular changes in renal failure and for ET receptor blockade as a new therapeutic option in the treatment of these alterations. In particular, myocardial capillary supply, which is particularly important for ischaemia tolerance in renal failure, seems to be modulated and regulated predominantly by ET-1. In contrast to what was found with respect to structural and functional changes of the kidney in various experimental models of renal damage, a combination therapy--at least in the doses used--does not seem to provide additional benefit in the prevention of cardiovascular changes compared with the respective monotherapies.
OBJECTIVE: The 825T allele of the G protein beta3 subunit is associated with hypertension in Caucasians. To generate a novel hypothesis regarding the underlying mechanisms, we examined for a potential association of the 825T allele with obesity in hypertension. PATIENTS AND METHODS: We genotyped 197 hypertensive individuals (104 men, 93 women; mean age 54 years) recruited from the general population in the Heidelberg (Germany) area. Data acquisition included age at first diagnosis of hypertension, body weight and height, actual treated blood pressure values, and history of stroke and/or myocardial infarction (cardiovascular events). RESULTS: The 825T allele was significantly (P = 0.02) associated with body mass index (BMI), mean values being 28.6+/-4.1, 27.0+/-3.1, and 26.1+/-3.8 kg/m2 for TT, TC, and CC respectively, which persisted after correction for sex and age. The 825T allele frequency was 23.8, 31.4 and 40.0% in individuals with normal weight (BMI <24.9 kg/m2), overweight (BMI 25.0-29.9 kg/m2), and obesity (BMI >29.9 kg/m2), respectively. Odds ratio for obesity versus normal weight was 3.9 [95% confidence interval (CI) 1.1-14.3; P = 0.03] for TT/CC and 1.8 (95% CI 0.7-4.6; P = 0.18) for TC/CC. BMI and age, but not genotype were significantly correlated with cardiovascular events as determined by logistic regression analysis. CONCLUSIONS: The findings suggest an association between obesity and the 825T allele, a genetic marker for enhanced G protein reactivity, in hypertensive individuals.
A protective effect of angiotensin-converting enzyme (ACE) inhibitors has been shown in patients with diabetic nephropathy but has not been clearly established in nondiabetic renal disease. A multicenter European study was designed to determine whether the ACE inhibitor benazepril was safe and effective in protecting residual renal function in patients with various renal diseases and mild to moderate renal failure. The trial involved 583 patients from 49 centers in Italy, France, and Germany. The patients were randomized to receive benazepril or placebo plus other antihypertensive agents, the target being a diastolic blood pressure of less than 90 mm Hg. Thirty-one patients in the benazepril group and 57 patients in the placebo group reached the end point [the time elapsed from entry to (a) doubling of serum creatinine (SCr) concentrations and (b) start of renal replacement therapy; p < 0.001 at 3 years]. The associated reduction in the relative risk of reaching the end point was 53% in benazepril-treated patients, with actuarial renal survival probability significantly better at 3 years. The best survival of renal function was observed in patients with chronic glomerular diseases and proteinuria greater than 1.0 g/24 h. Benazepril is effective in slowing the rate of progression and improving the survival of renal function in patients with renal diseases of various origins. This protective effect is associated with a clinically relevant decrease in both blood pressure and proteinuria.
A reduction of renal kallikrein has been found in non-insulin-treated diabetic individuals, suggesting that an impaired renal kallikrein-kinin system (KKS) contributes to the development of diabetic nephropathy. We analyzed relevant components of the renal KKS in non-insulin-treated streptozotocin (STZ)-induced diabetic rats. Twelve weeks after a single injection of STZ, rats were normotensive and displayed hyperglycemia, polyuria, proteinuria, and reduced glomerular filtration rate. Blood bradykinin (BK) levels and prekallikrein activity were significantly increased compared with controls. Renal kallikrein activity was reduced by 70%, whereas urinary BK levels were increased up to threefold. Renal kininases were decreased as indicated by a 3-fold reduction in renal angiotensin-converting enzyme activity and a 1.8-fold reduction in renal expression of neutral endopeptidase 24.11. Renal cortical expression of kininogen and B2 receptors was enhanced to 1.4 and 1. 8-fold, respectively. Our data suggest that increased urinary BK levels found in severely hyperglycemic STZ-diabetic rats are related to increased filtration of components of the plasma KKS and/or renal kininogen synthesis in combination with decreased renal kinin-degrading activity. Thus, despite reduced renal kallikrein synthesis, renal KKS is activated in the advanced stage of diabetic nephropathy.
High blood pressure values, diastolic and systolic, are associated with decreased renal function. This is particularly true when the diastolic blood pressure is higher than 90 mm Hg. Several studies showed that lowering of the blood pressure within the range of normotension according to the WHO causes a reduction in the rate of progression to terminal renal failure. These studies have led to recommendations to aim at a target blood pressure of approximately 125/75 mm Hg in the treatment of patients with glomerular diseases and particularly diabetic nephropathy with proteinuria >1 g/day. In contrast to these results, blood pressure values corresponding to the recommendation (</=125/75 mm Hg) of the JNC VI (see text) were achieved in 15% of the patients only. It has also been shown that at any given level of an average 24-hour blood pressure, patients with an insufficient decrease of the blood pressure during nighttime have a higher risk to progress to terminal renal failure. Thus it is very important to lower the nighttime blood pressure and to detect nighttime blood pressure increases using ambulatory blood pressure measurements.
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Oscillatory organization is a universal mode of signal transduction in living organisms. In vitro studies suggest spontaneous pulsatile fluctuations of intracellular energy metabolism. It is possible that, in vivo, some of these processes are synchronized by the pulsatile release of insulin. We assessed a potential coupling among plasma insulin, glucose, and lactate concentrations, by frequent blood sampling for 24 h in 11 healthy volunteers. Insulin sensitivity was assessed using the euglycemic hyperinsulinemic clamp technique. Lactate concentrations exhibited pulsatile fluctuations at an average interval of 84 +/- 11 min, whereas sodium and pH were nonpulsatile. The lactate concentration pulses closely corresponded to insulin oscillations, which occurred with a periodicity of 86 +/- 11 min. Blood glucose also fluctuated during daytime at an interval of 89 +/- 32 min. During nighttime, the frequency and amplitude of glucose oscillations were lower. The daytime profiles showed significant temporal coupling and pattern synchrony among insulin, lactate, and glucose. Only the close temporal relationship between insulin and lactate release persisted during nighttime. The temporal coupling and pattern synchrony between insulin and lactate were correlated inversely with insulin sensitivity, and positively with the degree of abdominal obesity. Our results suggest that: 1) the concentration of lactate, an indicator of cellular energy metabolism, fluctuates periodically in vivo; 2) the lactate concentrations fluctuate in synchrony with insulin pulses; and 3) such coupling is more pronounced in obese, insulin-resistant individuals.