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Sökning: WFRF:(Schwermer K)

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  • Hoppe, K, et al. (författare)
  • Cardiac Troponin T and Hydration Status as Prognostic Markers in Hemodialysis Patients
  • 2015
  • Ingår i: Blood purification. - : S. Karger AG. - 1421-9735 .- 0253-5068. ; 40:2, s. 139-145
  • Tidskriftsartikel (refereegranskat)abstract
    • This study aimed to assess cardiac troponin T (cTnT) and hydration state as cardiovascular (CV) risk markers in hemodialysis (HD) patients. Two hundred and forty one patients were divided according to HD vintage into two groups: SV (HD ≤24 months) and LV. Water balance was assessed with overhydration (OH%; bioimpedance analysis) and daily diuresis (DD); CV dysfunction with cTnT and heart ultrasound; nutrition with subjective global assessment (SGA), cholesterol (TC) and albumin. SV had lower OH% (2.8 vs. 3.5, p < 0.05) and higher DD (1,161 vs. 637 ml, p < 0.001), while LV had higher cTnT (0.1 ± 0.04 vs. 0.1 ± 0.07 ng/ml, p < 0.05) and lower interventricular septum thickness (IVS; 13.4 vs. 14.5 mm, p < 0.05). Nutritional state as reflected by lower TC was worse in LV (184.7 vs. 169.5 mg/dl, p < 0.05). Mortality was higher in patients in the LV group (15 vs. 27 deaths, p < 0.05). OH% correlated inversely with albumin (r = -0.36, p < 0.001), TC (r = -0.31, p < 0.001) and cTnT (r = -0.4, p < 0.001). cTnT correlated positively with IVS (r = 0.39, p < 0.001), SGA (r = 0.23, p = 0.001) and mortality rate (r = 0.21, p < 0.01), and negatively with DD (r = -0.34, p < 0.001) and albumin (r = -0.25, p < 0.001). Longer dialysis vintage associates with CV dysfunction, overhydration and increased mortality, which may be predicted with OH% and cTnT. Video Journal Club ‘Cappuccino with Claudio Ronco' at http://www.karger.com/?doi=376603.
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  • Pawlaczyk, K, et al. (författare)
  • Animal Models of Peritoneal Dialysis: Thirty Years of Our Own Experience
  • 2015
  • Ingår i: BioMed research international. - : Hindawi Limited. - 2314-6141 .- 2314-6133. ; 2015, s. 261813-
  • Tidskriftsartikel (refereegranskat)abstract
    • Experimental animal models improve our understanding of technical problems in peritoneal dialysis PD, and such studies contribute to solving crucial clinical problems. We established an acute and chronic PD model in nonuremic and uremic rats. We observed that kinetics of PD in rats change as the animals are aging, and this effect is due not only to an increasing peritoneal surface area, but also to changes in the permeability of the peritoneum. Changes of the peritoneal permeability seen during chronic PD in rats are comparable to results obtained in humans treated with PD. Effluent dialysate can be drained repeatedly to measure concentration of various bioactive molecules and to correlate the results with the peritoneal permeability. Additionally we can study inin vitroconditions properties of the effluent dialysate on cultured peritoneal mesothelial cells or fibroblasts. We can evaluate acute and chronic effect of various additives to the dialysis fluid on function and permeability of the peritoneum. Results from such study are even more relevant to the clinical scenario when experiments are performed in uremic rats. Our experimental animal PD model not only helps to understand the pathophysiology of PD but also can be used for testing biocompatibility of new PD fluids.
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