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Newly Developed Neutralized pH Icodextrin Dialysis Fluid: Nonclinical Evaluation
Naoya Yamaguchi1, Keiichi Miyamoto1, Tomohiro Murata2
1Department of Chemistry for Materials, Faculty of Engineering, Mie University.
Insights
Neutralizing icodextrin peritoneal dialysis fluid (PDF) with the NICOPELIQ system preserves human peritoneal mesothelial cell viability and reduces cytotoxicity. This improved biocompatibility does not compromise the fluid
Area of Science:
- Biomaterials Science
- Nephrology
- Peritoneal Dialysis
Background:
- Icodextrin peritoneal dialysis fluid (PDF) is used for fluid management in patients undergoing peritoneal dialysis.
- Icodextrin PDFs can generate glucose degradation products (GDPs) and have a low pH, potentially affecting biocompatibility.
- A novel two-compartment system, NICOPELIQ (NICO), has been developed to neutralize icodextrin PDF.
Purpose of the Study:
- To conduct a nonclinical evaluation of the NICOPELIQ system for neutralizing icodextrin PDF.
- To assess the biocompatibility and water transport ability of neutralized icodextrin PDF.
- To analyze glucose degradation products (GDPs) and their impact on cell viability and cytotoxicity.
Main Methods:
- Analysis of GDPs in icodextrin PDFs using high-performance liquid chromatography (HPLC).
- Evaluation of human peritoneal mesothelial cell (PDE-HPMC) viability and lactate dehydrogenase (LDH) release after exposure to different PDFs (NICO, EXTRANEAL [EX], MIDPELIQ 250 [M250]).
- Assessment of water transport ability using dialysis membranes with varying pore sizes.
Main Results:
- Cell viability decreased by 30% after 30 min exposure to NICO but was maintained for 6 hours, unlike EXTRANEAL.
- No significant difference in cell viability was observed between NICO and EXTRANEAL when pH was adjusted, despite higher GDPs in EXTRANEAL.
- Reduced cell viability occurred below pH 6; LDH release was minimal (<5%) with NICO exposure. Water transport was comparable between NICO and EXTRANEAL.
Conclusions:
- Neutralization of icodextrin PDF using the NICOPELIQ system is beneficial for enhancing biocompatibility.
- The NICO system effectively maintains cell viability and minimizes cytotoxicity (LDH release).
- Neutralized icodextrin PDF demonstrates comparable water transport ability to conventional icodextrin PDF.
Abstract:
A two-compartment system (NICOPELIQ; NICO, Terumo Co., Tokyo, Japan) has recently been developed to neutralize icodextrin peritoneal dialysis fluid (PDF). In this study, a nonclinical evaluation of NICO was carried out to evaluate biocompatibility as well as water transport ability. Glucose degradation products (GDPs) in the icodextrin PDFs were analyzed via high-performance liquid chromatography (HPLC). The cell viability of human peritoneal mesothelial cells derived from peritoneal dialysis effluent (PDE-HPMCs) was evaluated as well as the amount of lactate dehydrogenase (LDH) released after exposure to different PDFs (NICO and EXTRANEAL [EX, Baxter Healthcare Corp., Chicago, IL, USA]) and neutralized pH glucose PDF MIDPELIQ 250 (M250, Terumo). The water transport ability of NICO, EX, and M250 was tested using dialysis tube membranes with various pore sizes: 1, 2, 6-8, and 12-16 kDa. Although cell viability decreased by 30% after 30 min exposure to NICO, it was maintained for 6 h while a significant decrease was observed after 6 h exposure to EX. However, following adjustment of the pH to the same pre-exposure pH value, there was no significant difference in cell viability within the same pH group despite a doubling of the difference in the total amount of GDPs (44.6 ± 8.6 µM in NICO and 91.9 ± 9.5 µM in EX, respectively). In contrast, a significant decrease in cell viability was observed when the pH decreased to less than pH 6. Levels of released LDH, a cytotoxic marker, were within 5% after a 6-h exposure of NICO to PDE-HPMCs. There was no significant difference in water transport ability represented as overall osmotic gradients between NICO and EX. In conclusion, neutralization of icodextrin PDF is beneficial for maintaining cell viability and minimizing LDH release while water transport ability is comparable to the conventional icodextrin PDF.
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