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Use of new peritoneal dialysis solutions in children
A Canepa1, E Verrina, F Perfumo
1Nephrology Department, G Gaslini Institute, Genova, Italy. albertocanepa@ospedale-gaslini.ge.it
Insights
New peritoneal dialysis (PD) solutions, including bicarbonate-buffered, icodextrin, and amino acid solutions, show promise for improving patient outcomes and biocompatibility in children undergoing PD therapy.
Area of Science:
- Nephrology
- Biocompatibility of Medical Devices
Background:
- Conventional peritoneal dialysis (PD) solutions with low pH and high lactate/glucose concentrations can harm the peritoneal membrane and cells.
- Long-term PD may lead to peritoneal hypervascularization and fibrosis due to PD solution toxicity.
Purpose of the Study:
- To evaluate the safety and efficacy of alternative PD solutions in children.
- To assess the benefits of using specific PD solutions like Physioneal, Extraneal, and Nutrineal.
Main Methods:
- Comparison of a Physioneal, Extraneal, Nutrineal regimen with a first-generation Dianeal regimen.
- Analysis of clinical data and literature regarding PD solutions in pediatric patients.
Main Results:
- Alternative PD regimens significantly reduce carbohydrate load, glucose degradation product exposure, and oxidative stress.
- Neutral pH bicarbonate/lactate-buffered, icodextrin, and amino acid solutions are safe and effective in children for specific PD schedules.
Conclusions:
- A combined regimen of advanced PD solutions offers improved biocompatibility and efficacy in pediatric patients.
- Further clinical trials are needed to optimize PD schedules for these advanced solutions.
Abstract:
Standard peritoneal dialysis (PD) solutions with low pH and containing high concentrations of lactate and glucose have been demonstrated to negatively affect the peritoneal membrane, mesothelial cell viability, residential peritoneal cells, and also to inhibit phagocytic functions. An increasing body of experimental evidence supports the idea that the peritoneal hypervascularization and fibrosis observed in long-term PD are causally related to the acute and chronic toxicity of conventional PD solutions. A Physioneal (lactate/bicarbonate mixed buffer pH 7-7.4), Physioneal, Extraneal (7.5% icodextrin), Nutrineal (1.1% amino-acid-containing solution) regimen, for example, offers a significant reduction in carbohydrate load (approximately 40-50%), lower exposure to and absorption of glucose degradation products, reduced oxidative stress, and improved volume control when compared with a first-generation DDDD (4 x Dianeal) regimen. The positive aspects of each solution that we have observed in our patients allow a recommendation on the potential benefit of using these solutions in children treated with PD. In fact, data from the literature as well as the results of the studies reported in this paper show that in children the application of neutral pH bicarbonate/lactate-buffered solution for the standard nighttime APD prescription, icodextrin solution for a long daytime dwell, and AA-based solution in malnourished patients is safe and effective. Extended clinical trials should be encouraged to better define the PD schedules for the combined use of these solutions that may be associated with the best clinical efficacy and the highest level of biocompatibility.
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