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Published on: July 19, 2018
Oxidative stress, inflammation, and peritoneal dialysis: A molecular biology approach
Georgie Innico1, Laura Gobbi1, Giovanni Bertoldi1
1Nephrology, Dialysis and Transplantation Unit, Department of Medicine DIMED, University of Padova, Italy.
Abstract:
The key role of oxidative stress (OxSt) and inflammation for the induction of cardiovascular disease, the leading cause of excess morbidity/mortality in chronic kidney disease and dialysis patients, is known and both the activations of NADPH oxidase and RhoA/Rho kinase (ROCK) pathway are pivotal for their effects. While specific hemodialysis procedures, such as hemodiafiltration with on-line reinfusion of ultrafiltrate and/or the use of vitamin E-coated dialyzers, are beneficial for OxSt and inflammation, studies in peritoneal dialysis (PD) are instead scarce and results seem not favorable. In nine patients under PD OxSt in terms of mononuclear cell protein level of p22phox (Western blot), subunit of NADPH oxidase, essential for the generation of OxSt, and MYPT-1 phosphorylation state (Western blot), a marker of ROCK activity, have been measured at the beginning and after 3 and 6 months of PD. Blood levels of interleukin 6 (IL-6), ferritin, and albumin have been considered for evaluating the inflammatory state. p22phox protein expression, MYPT-1-phosphorylation, and ferritin level were increased both at baseline vs healthy subjects (P = .02, P < .0001, P = .004, respectively) and vs baseline after 3 and 6 months of peritoneal dialysis (P = .007, P < .001, P = .004, respectively). Albumin was lower after 6 months of PD (P = .0014). IL-6 was increased at baseline vs reference values and remained unchanged at 3 and 6 months. OxSt and inflammation increase during PD confirming via molecular biology approach a report at biochemical level. To improve OxSt state in PD, a multitarget approach is necessary. It might include the use of more physiologic pH, low glucose degradation products, low lactate and iso-osmolar PD solutions, patients' strict glycemic control, optimal volume management, and antioxidant administration, such as N-acetylcysteine.
Insights
Oxidative stress and inflammation increase in patients undergoing peritoneal dialysis (PD), as shown by elevated p22phox and MYPT-1 phosphorylation. A multi-target approach is needed to improve outcomes for PD patients.
Area of Science:
- Nephrology
- Cardiovascular Medicine
- Biochemistry
Background:
- Cardiovascular disease is a major concern in chronic kidney disease and dialysis patients, linked to oxidative stress and inflammation.
- While hemodialysis shows benefits, peritoneal dialysis (PD) research on oxidative stress and inflammation is limited and concerning.
Purpose of the Study:
- To investigate the molecular changes in oxidative stress and inflammation markers in patients undergoing peritoneal dialysis.
- To assess the impact of PD on NADPH oxidase activity and RhoA/Rho kinase (ROCK) pathway activation.
Main Methods:
- Mononuclear cell p22phox protein expression and MYPT-1 phosphorylation were measured via Western blot in nine PD patients over six months.
- Blood levels of interleukin-6 (IL-6), ferritin, and albumin were analyzed to evaluate the inflammatory state.
Main Results:
- p22phox expression, MYPT-1 phosphorylation, and ferritin levels significantly increased during PD compared to baseline and healthy subjects.
- Albumin levels decreased after six months of PD, while IL-6 remained elevated from baseline.
Conclusions:
- Peritoneal dialysis is associated with increased oxidative stress and inflammation, confirmed by molecular markers.
- Improving PD solutions, glycemic control, volume management, and antioxidant use are potential strategies to mitigate these effects.
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