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Effect of the peritoneal dialysis prescription on pentosidine in children
Aysun K Bayazit1, Beth A Vogt, Katherine M Dell
1Division of Pediatric Nephrology, Cukurova University, School of Medicine, Adana, Turkey.
Insights
Peritoneal dialysis (PD) in children is well-tolerated, with no evidence of advanced glycation end product (AGE) accumulation affecting peritoneal membrane function. Residual renal function, not dialysis type, influences AGE levels.
Area of Science:
- Nephrology
- Pediatric Nephrology
- Biochemistry
Background:
- High dextrose concentrations in peritoneal dialysis (PD) fluid can increase advanced glycation end products (AGEs), potentially causing peritoneal membrane toxicity.
- Pentosidine is a specific AGE linked to protein damage and loss of tissue viability.
Purpose of the Study:
- To investigate the relationship between pentosidine accumulation in plasma and peritoneal proteins and peritoneal membrane function in pediatric PD patients.
- To identify clinical factors influencing pentosidine levels and peritoneal membrane function.
Main Methods:
- Study included 27 pediatric patients on PD (14 CAPD, 13 CCPD) with a mean age of 13.3 years and PD duration of 37 months.
- Measured pentosidine content in plasma and peritoneal proteins.
- Assessed peritoneal membrane function using the peritoneal equilibration test.
- Analyzed correlations with residual renal function, dialysis modality, and peritonitis history.
Main Results:
- Pentosidine levels were significantly lower in patients with residual renal function compared to anuric patients (plasma: 11.2 vs. 24.1, P=0.02; peritoneal: 14.9 vs. 31.1, P=0.01).
- No significant differences in pentosidine levels were observed based on dialysis modality (CAPD vs. CCPD).
- No evidence linked increased pentosidine to altered peritoneal membrane function or effects of peritonitis.
Conclusions:
- PD is a safe and well-tolerated therapy in children.
- Current PD practices do not appear to alter peritoneal membrane function or protein clearance related to pentosidine accumulation.
- Residual renal function is a key factor influencing AGE levels in PD patients.
Abstract:
Enhanced formation of advanced glycation end products (AGEs) by peritoneal dialysate containing high dextrose concentrations has been implicated as a source of peritoneal membrane toxicity and loss of viability in patients treated with peritoneal dialysis (PD). The goal of this project was to elucidate the relationship between the structurally defined AGE pentosidine accumulation on peritoneal and plasma proteins and peritoneal membrane function, and to identify clinical factors leading to alterations in these parameters. The study comprised 27 pediatric patients (14 continuous ambulatory PD, 13 chronic cycling PD) on PD for a mean duration of 37.0+/-22.8 months (range 1-120 months) and with a mean age of 13.3+/-4.4 years (range 2.4-20 years). The pentosidine contents of plasma and peritoneal proteins were significantly lower in patients with residual renal function than in patients who were anuric (plasma pentosidine 11.2+/-8.8 vs. 24.1+/-16.6, P=0.02, respectively, peritoneal pentosidine 14.9+/-11.9 vs. 31.1+/-3.7, P=0.01, respectively). There was no effect of treatment modality on plasma pentosidine (18.1+/-11.2, 18.8+/-19.3, CAPD vs. CCPD, P>0.05) or peritoneal pentosidine content (24.1+/-14.1, 24.9+/-19.6, CAPD vs. CCPD, P>0.05). There was no evidence that increased levels of pentosidine on peritoneal proteins reflect or affect peritoneal membrane function in these patients. Furthermore, there was no effect of peritonitis on the pentosidine content of peritoneal proteins or peritoneal function as measured by peritoneal equilibration test. In conclusion, PD represents a well-tolerated therapy in children with no evidence that current practice causes changes in peritoneal membrane function, or in the peritoneal clearance of plasma or peritoneal proteins rich in pentosidine.
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