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Biomedical subjects

P Luneburg

Publications and source records attributed to P Luneburg.

7 recordsLinked to original sources

Interleukin-6 levels decrease in effluent from patients dialyzed with bicarbonate/lactate-based peritoneal dialysis solutions.

OBJECTIVE: Conventional lactate-buffered peritoneal dialysis (PD) solutions have several bioincompatible characteristics, including acidic pH, lactate buffer, and the presence of glucose degradation products (GDPs). These characteristics, along with inflammation, are believed to contribute to membrane dysfunction in peritoneal dialysis patients. A new PD solution containing a bicarbonate/lactate buffer system with physiologic pH and low GDPs has shown improved biocompatibility in both in vitro and ex vivo studies. In the present study, the concentrations of cytokines interleukin-6 (IL-6), tumor necrosis factor alpha (TNFalpha), and vascular endothelial growth factor (VEGF), were measured in timed overnight effluents from PD patients continuously dialyzed with either lactate-based control solution (C) or bicarbonate/lactate-based solution (B/L) for 6 months. METHODS: Effluents from 92 continuous ambulatory peritoneal dialysis (CAPD) patients were collected when the patients were entered into the study (baseline, all patients on C for more than 3 months), and at 3 and 6 months following randomization to C (n = 31) or to B/L (n = 61). Effluent samples were filtered, stored frozen, and then assayed for IL-6, TNFalpha, and VEGF by ELISA. RESULTS: A significant decrease in effluent IL-6 was seen at 3 months and at 6 months in the B/L-treated patients. Levels of VEGF were significantly reduced at 3 months. No changes in the levels of IL-6 or VEGF were seen in the C-treated patients, and no changes in TNFalpha were seen in either group over time. CONCLUSIONS: Treatment with B/L is associated with decreased IL-6 synthesis and decreased VEGF secretion. The data suggest that the use of B/L solution is associated with reduced intraperitoneal inflammation and potential for angiogenesis. The use of B/L solution may, over time, help to restore peritoneal homeostasis and therefore preserve the function of the membrane in peritoneal dialysis.

Adult↗

Effect of icodextrin peritoneal dialysis solution on cell proliferation in vitro.

Peritoneal dialysis solutions containing icodextrin are ideal for providing sustained ultrafiltration during long dwells, and they have replaced high glucose for long dwells in some patients. The biocompatibility of these solutions, especially in regard to glucose degradation products, has not been studied in depth. The object of this study was to compare the effects of commercially available dextrose-containing dialysis solutions to those of icodextrin-containing solutions on fibroblast proliferation in vitro. We measured the effect of solutions on cell growth by exposing murine fibroblasts to pH-adjusted test solutions mixed with culture medium, and by comparing cell growth to growth in culture medium only. No statistical difference was observed in the growth of cells exposed to heat-sterilized Extraneal [7.5% icodextrin (Baxter Healthcare, Deerfield, Illinois, U.S.A.)], heat-sterilized Dianeal [1.5% dextrose (Baxter Healthcare)], or filter-sterilized Dianeal [4.25% dextrose (Baxter Healthcare]. Also, no difference was observed in the growth of fibroblasts exposed to heat-sterilized Extraneal or to filter-sterilized Extraneal, but heat-sterilized Dianeal [4.25% dextrose (Baxter Healthcare)] caused a significant reduction in cell growth. Glucose degradation products (GDPs) are known to contribute to reduced cell growth in vitro. Extraneal had lower levels of the GDP acetaldehyde compared to Dianeal (2.5% or 4.25% dextrose). The results demonstrate enhanced in vitro biocompatibility characteristics for Extraneal, possibly related to low GDP levels in Extraneal.

Animals↗

A longitudinal in vitro antimicrobial evaluation of two silver polymer surface treatments for peritoneal dialysis catheters.

The oligodynamic effect of silver has been utilized in medicine for many decades. This study evaluated the antimicrobial properties of two silver polymer surface treatments over 9 months to assess their usefulness for chronic percutaneous access. Silicone catheters were either dip-coated with micronized silver oxide in a silicone matrix (AgX) or impregnated with silver using an ion beam deposition process (Spire Argent I). Four-inch (10-cm) segments were shaken continuously in 10 mL minimum essential media (MEM) with 2% fetal bovine serum (FBS) at 25 degrees C. The medium was replaced weekly. Monthly eluate samples were assayed for Ag+ concentration using ICP atomic emission spectroscopy. Bimonthly, segments were removed, placed in fresh medium inoculate with 10(5) colony-forming units (cfu)/mL Staphylococcus aureus ATCC 25923 and quantitated over 24 hours for bacterial survival/growth. Relative to control catheters, there was a mean log10 reduction of S. aureus of 4.4 with AgX and 1.7 with Spire Argent I persisting over the 9-month study period. Silver ion elution followed a biphasic pattern with both coatings establishing a steady state of 0.2 ppm at 4 months. These data suggest that the test surface coatings employed will deliver long-term oligodynamic activity when implanted percutaneously.

Catheters, Indwelling↗

Periodic elevation of complement activation products in peritoneal dialysis effluent.

Peripheral white blood cells (WBCs) of chronic ambulatory peritoneal dialysis (CAPD) patients show a reduced expression of chemotactic receptors and a desensitization to chemotactic factor induced events. Chronic complement activation has been suggested as a cause of such phenomena, resulting from either uremia, the indwelling peritoneal catheter, and/or dialysis fluid stimulation. The presence of complement activation products in peritoneal dialysis effluent was assessed by longitudinal measurement of C3bi in eight patients over a 6 to 8 month period, while peritoneal polymorphonuclear leukocyte (PMN) and monocyte CR3 and C5a receptor expression was quantitated by flow cytometry. In six of eight patients, C3bi levels were stable over time and usually measured less than 5 micrograms/ml. Two other patients showed periodic elevation of C3bi, which was not associated temporally with peritonitis. Further study is required to identify the origin of such activated complement components within the peritoneal cavity. However, no correlation was found between dialysate C3bi levels and peritoneal PMN or monocyte expression of CR3 or C5a receptors. Furthermore, the incidence of peritonitis for the two individuals with elevated C3bi was discordant (1 episode/8 patient months vs. 0 episodes/32 patient months), suggesting little or no relationship between these parameters.

Adult↗

Reduced glucose degradation products in bicarbonate/lactate-buffered peritoneal dialysis solutions produced in two-chambered bags.

OBJECTIVES: The aims of the current study were: (1) to determine the effects of peritoneal dialysis (PD) solutions at different glucose concentrations on the growth of cultured cells; (2) to determine whether a bicarbonate/lactate-based solution, as a result of the configuration of its components during heat sterilization in a two-chambered bag, was lower in glucose degradation products than a corresponding lactate-based PD solution; and (3) to determine whether lower glucose degradation corresponded to a decreased inhibition of cell growth. DESIGN: Growth inhibition of cells exposed to lactate-based PD solutions at three different glucose concentrations was determined. Bicarbonate/lactate-based and lactate-based solutions at high glucose concentration (3.86%) were further analyzed for presence of glucose degradation products and inhibition of cell growth. METHODS: Cell growth was determined by neutral red uptake, measured by optical density at 540 nm. Glucose degradation to acetaldehyde or fructose was determined by gas chromatography-mass spectroscopy and high-performance liquid chromatography. RESULTS: Only 3.86% glucose lactate-based PD solution caused significant inhibition of cell growth (p < 0.05). The heat-sterilized, bicarbonate/dlactate-based solution (3.86% glucose) had lower levels of fructose and acetaldehyde than a conventional heat-sterilized, lactate-based solution with the same glucose concentration. Growth of cultured cells exposed to the bicarbonate/lactate-based solution was significantly improved (p < 0.05) over growth in the conventional solution. CONCLUSIONS: The bicarbonate/lactate-based solutions, manufactured and heat-sterilized in two-chambered bags, were lower in glucose degradation products than that corresponding lactate-based PD solutions, and demonstrated improved in vitro biocompatibility as measured by the growth of cultured cells.

Animals↗