Literature DB >> 11054349

8-hydroxy-2'-deoxyguanosine of leukocyte DNA as a marker of oxidative stress in chronic hemodialysis patients.

D C Tarng1, T P Huang, Y H Wei, T Y Liu, H W Chen, T Wen Chen, W C Yang.   

Abstract

In contrast to proteins and lipids, oxidative damage to DNA has not been well studied in patients undergoing hemodialysis (HD). We hypothesized that phagocytes are activated after blood-membrane contact during HD, and oxidants from metabolic activation can damage leukocyte DNA. To test this hypothesis, the 8-hydroxy-2'-deoxyguanosine (8-OHdG) content of leukocyte DNA was measured by high-performance liquid chromatography electrochemical detection method in 35 age- and sex-matched healthy subjects, 22 undialyzed patients with advanced renal failure, and 109 HD patients to assess the relation between oxidative DNA damage and complement-activating membranes, blood antioxidants, and iron status. Dialysis membranes were classified into complement-activating (cellulose; n = 55) and non-complement-activating (polymethylmethacrylate [PMMA]; n = 35; polysulfone [PS]; n = 19) membranes. We found increased oxidative stress in undialyzed and HD patients based on a decrease in plasma levels of ascorbate and alpha-tocopherol adjusted for blood lipid (alpha-tocopherol/lipid), serum albumin, and reduced glutathione levels in whole blood and an increase in oxidized glutathione levels in whole blood compared with controls (P < 0.001). The greatest 8-OHdG level in leukocyte DNA was in HD patients, followed by undialyzed patients and healthy controls (P < 0.001), and was significantly greater in HD patients using cellulose membranes than those using PMMA or PS membranes (P < 0.001). 8-OHdG levels correlated with plasma alpha-tocopherol/lipid (r = -0.314; P < 0.005), serum iron (r = 0. 446; P < 0.001), and transferrin saturation values (r = 0.202; P < 0.05) in the analysis of all HD patients. In a 6-week crossover study, 8-OHdG levels significantly decreased after the switch from cellulose to synthetic membranes for 2 weeks and increased after the shift from synthetic to cellulose membranes (P < 0.05). Iron metabolism indices and plasma alpha-tocopherol/lipid values did not change significantly in the study period. We conclude that 8-OHdG content in leukocyte DNA is a biomarker of oxidant-induced DNA damage in HD patients. Oxidative DNA damage is a consequence of uremia, further augmented by complement-activating membranes.

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Year:  2000        PMID: 11054349     DOI: 10.1053/ajkd.2000.19086

Source DB:  PubMed          Journal:  Am J Kidney Dis        ISSN: 0272-6386            Impact factor:   8.860


  18 in total

1.  GST M1 polymorphism associates with DNA oxidative damage and mortality among hemodialysis patients.

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2.  Plasma concentrations of 8-hydroxy-2'-deoxyguanosine and risk of kidney disease and death in individuals with type 1 diabetes.

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3.  The effects of 1-year treatment with a haemodiafiltration with on-line regeneration of ultrafiltrate (HFR) dialysis on biomarkers of oxidative stress in patients with chronic renal failure.

Authors:  B González-Diez; M Cavia; G Torres; P Abaigar; V Camarero; P Muñiz
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4.  Oxidative stress induces itch via activation of transient receptor potential subtype ankyrin 1 in mice.

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Journal:  Neurosci Bull       Date:  2012-04       Impact factor: 5.203

5.  Accumulation of plasma N-methyl-2-pyridone-5-carboxamide in patients with chronic renal failure.

Authors:  Ewa M Slominska; Ryszard T Smolenski; Marek Szolkiewicz; Neil Leaver; Boleslaw Rutkowski; H Anne Simmonds; Julian Swierczynski
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6.  Oxidative DNA damage and mortality in hemodialysis and peritoneal dialysis patients.

Authors:  Hong Xu; Makoto Watanabe; Abdul Rashid Qureshi; Olof Heimbürger; Peter Bárány; Björn Anderstam; Monica Eriksson; Peter Stenvinkel; Bengt Lindholm
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7.  Intravenous iron exacerbates oxidative DNA damage in peripheral blood lymphocytes in chronic hemodialysis patients.

Authors:  Ko-Lin Kuo; Szu-Chun Hung; Yau-Huei Wei; Der-Cherng Tarng
Journal:  J Am Soc Nephrol       Date:  2008-05-21       Impact factor: 10.121

8.  Benfotiamine reduces genomic damage in peripheral lymphocytes of hemodialysis patients.

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9.  Genetic damage in patients with chronic kidney disease, peritoneal dialysis and haemodialysis: a comparative study.

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Review 10.  Oxidized extracellular DNA as a stress signal in human cells.

Authors:  Aleksei V Ermakov; Marina S Konkova; Svetlana V Kostyuk; Vera L Izevskaya; Ancha Baranova; Natalya N Veiko
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