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Anders Tranaeus

Publications and source records attributed to Anders Tranaeus.

9 recordsLinked to original sources

Longitudinal membrane function in functionally anuric patients treated with APD: data from EAPOS on the effects of glucose and icodextrin prescription.

BACKGROUND: Peritoneal dialysis is associated with changes in membrane function that can lead eventually to ultrafiltration (UF) failure. Factors driving these changes are thought to include hypertonic glucose exposure, but previously reported associations are confounded by the presence of residual renal function. METHODS: Longitudinal membrane function (solute transport and UF capacity) were measured annually in a prospective cohort of 177 functionally anuric patients as part of the European Automated Peritoneal Dialysis Outcomes Study (EAPOS). Subgroup analysis was performed according to glucose exposure and icodextrin use at baseline. RESULTS: The whole cohort experienced an increase in solute transport and reduction in UF capacity at 12 and 24 months that could not be explained by informative censoring. These changes were accelerated and more severe in patients using either 2.27% or 3.86% glucose, or those not using icodextrin at baseline. These differences could not be explained by age, comorbidity score, previous time spent on renal replacement, differential dropout from the study, peritonitis rates, or, by definition, residual renal function. Patients using icodextrin at baseline had worse membrane function and were more likely to be diabetic. There was an association between membrane function changes and achieved 24-hour ultrafiltration over the 2-year study period. CONCLUSION: Anuric automated peritoneal dialysis (APD) patients experience significant detrimental changes in membrane function over a relatively short time period. Glucose appears to enhance these changes independent of residual renal function. Icodextrin use in these circumstances is associated with less deterioration in membrane function.

Anuria↗

Recommendations on the management of encapsulating peritoneal sclerosis in Japan, 2005: diagnosis, predictive markers, treatment, and preventive measures.

This comprehensive update on the management of encapsulating peritoneal sclerosis incorporates insights gained from recently published findings and the accumulated experience of the authors. Aspects covered include diagnosis, risk factors and predictive markers, treatment, and prevention, including criteria for withdrawal from peritoneal dialysis.

Biomarkers↗

Icodextrin improves the fluid status of peritoneal dialysis patients: results of a double-blind randomized controlled trial.

Worsening fluid balance results in reduced technique and patient survival in peritoneal dialysis. Under these conditions, the glucose polymer icodextrin is known to enhance ultrafiltration in the long dwell. A multicenter, randomized, double-blind, controlled trial was undertaken to compare icodextrin versus 2.27% glucose to establish whether icodextrin improves fluid status. Fifty patients with urine output <750 ml/d, high solute transport, and either treated hypertension or untreated BP >140/90 mmHg, or a requirement for the equivalent of all 2.27% glucose exchanges, were randomized 1:1 and evaluated at 1, 3, and 6 mo. Members of the icodextrin group lost weight, whereas the control group gained weight. Similar differences in total body water were observed, largely explained by reduced extracellular fluid volume in those receiving icodextrin, who also achieved better ultrafiltration and total sodium losses at 3 mo (P < 0.05) and had better maintenance of urine volume at 6 mo (P = 0.039). In patients fulfilling the study's inclusion criteria, the use of icodextrin, when compared with 2.27% glucose, in the long exchange improves fluid removal and status in peritoneal dialysis. This effect is apparent within 1 mo of commencement and was sustained for 6 mo without harmful effects on residual renal function.

Adult↗

Efficacy and safety of a 7.5% icodextrin peritoneal dialysis solution in patients treated with automated peritoneal dialysis.

In a randomized, prospective, multicenter study, we compared the safety, efficacy, and metabolic effects of a 7.5% icodextrin solution (Extraneal) with a 2.27% glucose solution for long dwell exchanges in patients undergoing automated peritoneal dialysis. Thirty-nine stable patients on automated peritoneal dialysis were randomized to receive either icodextrin (n = 20) or glucose 2.27% solution (n = 19). The study included a 2-week baseline period followed by a 12-week icodextrin treatment phase and a 2-week follow-up period when switching back to glucose. The average net ultrafiltration during the long dwell period was 278 +/- 43 mL/d for the icodextrin group and -138 +/- 81 mL/d for the control group (P < 0.001). The higher ultrafiltration volume with icodextrin was associated with higher creatinine (2.59 +/- 0.09 mL/min versus 2.16 +/- 0.11 mL/min) and urea (2.67 +/- 0.09 mL/min versus 2.28 +/- 0.12 mL/min) peritoneal clearances for the long dwell (both P < 0.001). Ultrafiltration rate per mass of carbohydrate absorbed was +5.2 +/- 1.2 microL/min/g in the icodextrin group and -5.5 +/- 2.8 microL/min/g in the glucose group (P < 0.001). In the icodextrin group, there was a decrease in serum sodium and chloride compared with baseline (P < 0.01). Total dialysate sodium removal increased in the icodextrin group from 226.7 mEq to 269.6 mEq (week 12, P < 0.001). Serum alpha-amylase activity decreased from 103 U/L to 16 U/L (P < 0.001). The total icodextrin plasma levels reached a steady-state concentration of 6,187 +/- 399 mg/L after 1 week of treatment. Urine volume and residual renal function were not specifically affected by icodextrin compared with glucose. None of the laboratory changes resulted in any reported clinically meaningful side effect. Icodextrin produced increased, sustained ultrafiltration during the long dwell period, increasing (convective) peritoneal clearance and sodium removal in automated peritoneal dialysis patients.

Absorption↗

A prospective randomized study of the effect of a subcutaneously "buried" peritoneal dialysis catheter technique versus standard technique on the incidence of peritonitis and exit-site infection.

OBJECTIVE: A new method for implantation of peritoneal dialysis (PD) catheters was described in 1991. The distal part of the catheter is buried subcutaneously and exteriorized at the start of PD. This study was designed to evaluate the effect of such a subcutaneous rest period on the incidence of peritonitis and exit-site infections (ESI). DESIGN: Sixty patients were randomized to either the new method (B group; n = 30) or to not having the distal part buried subcutaneously (NB group; n = 30). Sixty-five patients (NS group) were not randomized as they had to start PD within 1-2 weeks after implantation. The Moncrief-Popovich catheter was used in the B and NB groups and a standard Tenckhoff catheter was used in the NS group. PATIENTS: Patients scheduled for PD treatment, judged not in need of PD for at least 6 weeks after implantation. RESULTS: There was no statistically significant difference in the cumulative probability of not developing peritonitis during the first 6, 12, and 24 months. The incidence of the first episode of peritonitis was 1/40, 1/26, and 1/33 treatment-months in the B, NB, and NS groups, respectively. The incidence of ESI was 1/103 and 1/95 treatment-months in the B and NS groups, respectively. The cumulative probability of not developing ESI was similar in both groups. There were no episodes of ESI in the NB group. The difference in the number of ESI between the NB and NS groups was significant (p < 0.05). CONCLUSIONS: Subcutaneous burying of the distal catheter segment prior to starting PD does not reduce the risk of contracting peritonitis or exit-site infection.

Adult↗

Peritoneal ultrafiltration and serum icodextrin concentration during dialysis with 7.5% icodextrin solution in Japanese patients.

OBJECTIVES: To assess the efficacy and safety of icodextrin in Japanese patients and to investigate the relationship between net ultrafiltration (UF) during the long dwell and plasma oligosaccharides. DESIGN: Open-labeled clinical trial involving patients on continuous ambulatory peritoneal dialysis (CAPD) receiving icodextrin during the 12-hour long dwell for 6 weeks, preceded by and followed by a 2-week baseline period and a follow-up period during which 1.36% glucose was used for the 8-hour long dwell. SETTING: A prospective, randomized multicenter study done in tertiary medical centers. PATIENTS: 18 stable patients on CAPD for 3 months or longer. MAIN OUTCOMES MEASURES: Net UF (in milliliters), UF rate (in milliliters per hour), plasma oligosaccharides, serum osmolarity (in milliosmoles per liter), peritoneal absorption of icodextrin, and peritoneal clearances of icodextrin, creatinine, and urea were assessed. Adverse events, laboratory findings, and vital signs were also monitored. RESULTS: Long-dwell net UF (544.4 +/- 96.7 mL at day 3, p < 0.001; 309.4 +/- 60.7 mL at week 4, p < 0.001; and 391.7 +/- 61.1 mL at week 6, p < 0.001) and UF rate (48.2 +/- 38.8 mL/ hour at day 3, p < 0.001; 26.9 +/- 22.1 mL/hr at week 4, p < 0.002; and 35.3 +/- 22.9 mL/hr at week 6, p = 0.0002) were significantly greater during the icodextrin period than at baseline (-25.9 +/- 46.0 mL and -2.2 +/- 22.1 mL/hr, respectively). Plasma oligosaccharides reached steady state within 2 weeks, remained stable during the treatment period, and returned to baseline level 2 weeks after discontinuation of icodextrin. Serum osmolarity increased during the use of icodextrin by approximately 5 mOsm/L. No statistically significant relationship was found between plasma oligosaccharides and net UF. Peritoneal absorption of icodextrin (36.3% +/- 5.1% at day 3, 42.2% +/- 5.9% at week 4, and 38.0% +/- 6.3% at week 6) and peritoneal clearance of icodextrin (10.1 mL/minute at day 3, 10.1 mL/min at week 4, and 10.3 mL/min at week 6) showed no major change over time. Serum sodium and serum chloride both decreased by 5 mEq/L with icodextrin but remained within the normal range during the treatment period and returned to baseline levels immediately after discontinuation. No serious adverse events were observed during the study. CONCLUSION: The results of this study do not support the hypothesis that an increased blood oligosaccharide level and the concomitant elevation in serum osmolarity have a negative impact on peritoneal UF. Therefore, the increase in plasma oligosaccharides appears to be too small to be of clinical significance.

Dialysis Solutions↗