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      Call for Papers: Green Renal Replacement Therapy: Caring for the Environment

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      A high calcium-phosphate product is associated with high C-reactive protein concentrations in hemodialysis patients.

      Nephron. Clinical practice
      Aged, Aged, 80 and over, C-Reactive Protein, metabolism, Calcium Carbonate, therapeutic use, Calcium Phosphates, blood, Cross-Sectional Studies, Female, Humans, Linear Models, Middle Aged, Osmolar Concentration, Polyamines, Prospective Studies, Renal Dialysis, Uremia, therapy

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          Abstract

          An elevated CaxPO4 product and C-reactive protein (CRP) have been associated with coronary artery calcification and increased cardiovascular mortality in hemodialysis (HD) patients. However, it has not been defined, so far, whether and how both parameters are related to each other. For this reason we have evaluated in a cross-sectional and in an interventional study the possible correlation between CaxPO4 and CRP and the effect of the correction of a high CaxPO4 on CRP levels. 47 uremic patients (age 65 +/- 16 years) on regular chronic HD were selected from a total population of 125 prevalent patients treated at our Institution. Patients had no clinical evidence of either acute infectious or inflammatory diseases for at least 4 weeks before the study. They were on regular bicarbonate HD for 6-329 months (median 42). CRP, hemoglobin (Hb), serum albumin (sAlb), protein catabolic rate (PCRn), serum calcium (Ca), serum phosphorus (PO4), CaxPO4, intact PTH, Kt/V, presence of ischemic heart disease (IHD) and/or peripheral vascular disease (PVD) were recorded. CRP was Ln-transformed in all statistical analyses because of positive skewness. The main findings were: LnCRP 2.17 +/- 0.77 mg/l, Ca 10.1 +/- 0.4 mg/dl, PO4 5.8 +/- 0.6 mg/dl, CaxPO4 59 +/- 6 mg2/dl2, andPTHint 218 +/- 195 ng/ml. 18/47 had IHD, 18/47 PVD. A significant hyperbolic correlation between CaxPO4 and CRP was observed. A piecewise linear regression model analysis identified a break-point for CaxPO4 at 55 mg2/dl2. Comparison of CRP levels after the division of the patients into two groups according to CaxPO4 break-point (group A, CaxPO4 < or = 55 mg2/dl2, n = 16 patients; group B, CaxPO4 >55 mg2/dl2, n = 31 patients) showed that CRP levels were significantly lower in patients in group A (LnCRP 1.43 +/- 0.22 mg/l) than in group B (LnCRP 2.55 +/- 0.67 mg/l, p < 0.0001). Multiple regression analysis bearing LnCRP as dependent variable confirmed CaxPO4 as the most significant variable among the other variables examined. In 22 patients with CaxPO4 > or = 60 mg2/dl2, we performed intensive lowering of the CaxPO4 product in order to reach and maintain a CaxPO4 , or =55 mg2/dl2 for 3 months. At the end of observation, a significant reduction in CaxPO4 and LnCRP was observed (CaxPO4 pre 62.8 +/- 1.9 vs. post 46.3 +/- 6.2 mg2/dl2: p < 0.0001; LnCRP pre 2.32 +/-0.36 vs. post 1.83 +/- 0.14 mg/l: p < 0.0001). No significant variation in the other biochemical parameters was observed. Our data show that in chronic HD patients in steady clinical conditions with no clinical evidence of either infectious or inflammatory diseases, a high CaxPO4 is associated with high CRP concentrations. Intensive lowering of CaxPO4 reduces CRP Copyright 2005 S. Karger AG, Basel.

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          Coronary artery disease in end-stage renal disease: no longer a simple plumbing problem.

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            Cardiac Valve Calcification as an Important Predictor for All-Cause Mortality and Cardiovascular Mortality in Long-Term Peritoneal Dialysis Patients: A Prospective Study

            A. Wang (2003)
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              Long-term effects of sevelamer hydrochloride on the calcium x phosphate product and lipid profile of haemodialysis patients.

              Short-term studies have suggested that sevelamer hydrochloride, a non-aluminium- and non-calcium-containing hydrogel, is an effective phosphate binder in haemodialysis patients, and may produce favourable changes in the lipid profile. To determine the long-term effectiveness of sevelamer hydrochloride, we performed an open-label clinical trial in 192 adult patients with end-stage renal disease on haemodialysis. Drug-related changes in the concentrations of serum phosphorus, calcium, calcium x phosphate product, parathyroid hormone, and low- and high-density lipoprotein cholesterol concentrations were the major outcomes of interest. Treatment with sevelamer was associated with a mean change in serum phosphorus of -0.71+/-0.77 mmol/l, serum calcium of 0. 08+/-0.22 mmol/l, and calcium x phosphate product of -1.46+/-1.78 mmol/l (P<0.0001 for all comparisons). There were no significant overall treatment-related changes in parathyroid hormone. Serum levels of LDL cholesterol decreased by 0.81+/-0.75 mmol/l (mean -30%, P<0.0001) and HDL cholesterol increased by a mean of 0.15+/-0.29 mmol/l (mean +18%, P<0.0001). Drug-related adverse events were infrequent and most were of mild intensity. Sevelamer is a safe and effective phosphate binder that leads to significant improvements in the calcium x phosphate product and lipid profile of haemodialysis patients.
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