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Published in: Pediatric Nephrology 8/2004

01-08-2004 | Original Article

Lipid peroxidation and antioxidant enzymes in children with chronic renal failure

Authors: Danuta Zwolińska, Władysław Grzeszczak, Katarzyna Kiliś-Pstrusińska, Krystyna Szprynger, Maria Szczepańska

Published in: Pediatric Nephrology | Issue 8/2004

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Abstract

Increased lipid peroxidation (LP) has been observed in dialysis patients and in predialysis adults with advanced chronic renal failure (CRF). The aim of this study was to investigate whether predialysis CRF children have increased LP in plasma and red blood cells (RBC) and to evaluate the activity of the antioxidant enzymes [superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GSH-Px)] in RBC. Concentrations of selenium (Se), copper (Cu), and zinc (Zn)—cofactors of these enzymes—were determined both in erythrocytes and in plasma. LP was monitored by plasma and erythrocyte malonyldialdehyde (MDA) and by plasma organic hydroperoxide (OHP) concentrations. Forty-six predialysis children, aged 5–18 years, divided into two groups according to their serum creatinine levels [group I (n=14, mean serum creatinine 421.61±141.08 μmol/l), group II (n=32, mean serum creatinine 174.94±45.50 μmol/l)] and 27 age-matched healthy subjects were enrolled in the study. Significantly higher concentrations of plasma and erythrocyte MDA and plasma OHP, significantly lower activities of GSH-Px and CAT, and significantly lower concentrations of erythrocyte Se, Cu, and Zn and plasma Se and Cu were found in both groups of renal patients compared with controls. The SOD activity was reduced in both groups of CRF children. In group I the activity of SOD and GSH-Px was significantly lower than in group II. In summary, there is increased LP in plasma and RBC in children with predialysis CRF, even those patients with moderate renal insufficiency. The activity of the enzymatic antioxidant defense system is reduced in the RBC of predialysis patients. The antioxidant capacity is related to the severity of renal failure.
Literature
1.
go back to reference Marx ER, Wicckens DG, Griffin JFK, Kyle P, Curtis JR, Dormandy TL (1987) Oxygen free radicals linked to many diseases. Science 2:529–531 Marx ER, Wicckens DG, Griffin JFK, Kyle P, Curtis JR, Dormandy TL (1987) Oxygen free radicals linked to many diseases. Science 2:529–531
2.
go back to reference Vaziri ND, Dicus M, Ho ND, Boroujerdi-Rad L, Sindhu RK (2003) Oxidative stress and dysregulation of superoxide dismutase and NADPH oxidase in renal insufficiency. Kidney Int 63:179–185CrossRefPubMed Vaziri ND, Dicus M, Ho ND, Boroujerdi-Rad L, Sindhu RK (2003) Oxidative stress and dysregulation of superoxide dismutase and NADPH oxidase in renal insufficiency. Kidney Int 63:179–185CrossRefPubMed
3.
go back to reference Yawata Y, Jacob H (1975) Abnormal red cell metabolism causing hemolysis in uremia: nature of the defect and its persistence despite adequate hemodialysis. Blood 45:231–239PubMed Yawata Y, Jacob H (1975) Abnormal red cell metabolism causing hemolysis in uremia: nature of the defect and its persistence despite adequate hemodialysis. Blood 45:231–239PubMed
4.
go back to reference Griendling KK, Sorecsu D, Ushio-Fukai M (2000) NAD(P)H oxidase: role in cardiovascular biology and disease. Cir Res 86:494–501 Griendling KK, Sorecsu D, Ushio-Fukai M (2000) NAD(P)H oxidase: role in cardiovascular biology and disease. Cir Res 86:494–501
6.
go back to reference Taccone-Gallucci M, Giardini O, Lubrano R, Mazarella V (1986) Red blood cell membrane lipid peroxidation in continuous ambulatory peritoneal dialysis patients. Am Clin Nephrol 6:92–95 Taccone-Gallucci M, Giardini O, Lubrano R, Mazarella V (1986) Red blood cell membrane lipid peroxidation in continuous ambulatory peritoneal dialysis patients. Am Clin Nephrol 6:92–95
7.
go back to reference Zwolińska D (1998) Lipid peroxidation and antioxidant enzymes in patients with chronic renal failure. Adv Clin Exp Med 7:87–92 Zwolińska D (1998) Lipid peroxidation and antioxidant enzymes in patients with chronic renal failure. Adv Clin Exp Med 7:87–92
8.
go back to reference Durak I, Akyol O, Basesme E, Canbolat O, Kavutcu M (1994) Reduced erythrocyte defence mechanisms against free radical toxicity in patients with chronic renal failure. Nephron 66:76–80PubMed Durak I, Akyol O, Basesme E, Canbolat O, Kavutcu M (1994) Reduced erythrocyte defence mechanisms against free radical toxicity in patients with chronic renal failure. Nephron 66:76–80PubMed
9.
go back to reference Mimic-Oka J, Simic T, Djukanovic L, Reljic Z, Davicevic Z (1999) Alteration in plasma antioxidant capacity in various degrees of chronic renal failure. Clin Nephrol 51:233–241PubMed Mimic-Oka J, Simic T, Djukanovic L, Reljic Z, Davicevic Z (1999) Alteration in plasma antioxidant capacity in various degrees of chronic renal failure. Clin Nephrol 51:233–241PubMed
10.
go back to reference Richard MJ, Arnaud J, Jurkovitz C, Hachache T, Meftahi H, Laporte F, Foret M, Favier A, Cordonnier D (1991) Trace elements and lipid peroxidation abnormalities in patients with chronic renal failure. Nephron 57:10–15PubMed Richard MJ, Arnaud J, Jurkovitz C, Hachache T, Meftahi H, Laporte F, Foret M, Favier A, Cordonnier D (1991) Trace elements and lipid peroxidation abnormalities in patients with chronic renal failure. Nephron 57:10–15PubMed
11.
go back to reference Taccone-Gallucci M, Giardini O, Lubrano R, Bandino D, Mazzarella V, Mannarino O, Meloni C, Moroseti M, Elli M, Tozzo C, Strolighi L, Casciani CU (1987) Red blood cell lipid peroxidation in predialysis chronic renal failure. Clin Nephrol 27:238–241PubMed Taccone-Gallucci M, Giardini O, Lubrano R, Bandino D, Mazzarella V, Mannarino O, Meloni C, Moroseti M, Elli M, Tozzo C, Strolighi L, Casciani CU (1987) Red blood cell lipid peroxidation in predialysis chronic renal failure. Clin Nephrol 27:238–241PubMed
12.
go back to reference Ceballos-Picot I, Witko-Sarsat V, Merad-Boudia M, Nguyen AT, Thavenin M, Jaudon MC, Zingraff J, Verger C, Jungers P, Descamps-Latscha B (1996) Glutathione antioxidant system as a marker of oxidative stress in chronic renal failure. Free Radic Biol Med 21:845–853CrossRefPubMed Ceballos-Picot I, Witko-Sarsat V, Merad-Boudia M, Nguyen AT, Thavenin M, Jaudon MC, Zingraff J, Verger C, Jungers P, Descamps-Latscha B (1996) Glutathione antioxidant system as a marker of oxidative stress in chronic renal failure. Free Radic Biol Med 21:845–853CrossRefPubMed
13.
go back to reference Mimic-Oka J, Simic T, Ekmescic V, Dragicevic P (1995) Erythrocyte glutathione peroxidase and superoxide dismutase activities in different stages of chronic renal failure. Clin Nephrol 44:44–48PubMed Mimic-Oka J, Simic T, Ekmescic V, Dragicevic P (1995) Erythrocyte glutathione peroxidase and superoxide dismutase activities in different stages of chronic renal failure. Clin Nephrol 44:44–48PubMed
14.
go back to reference Asoyama K, Shiki Y, Ito H, Hasegowa O, Miyao A, Hayashibe H, Dobashi K, Kato K (1990) Antioxidant enzymes and lipoperoxide in blood in uremic children and adolescents. Free Radic Biol Med 9:105–109CrossRefPubMed Asoyama K, Shiki Y, Ito H, Hasegowa O, Miyao A, Hayashibe H, Dobashi K, Kato K (1990) Antioxidant enzymes and lipoperoxide in blood in uremic children and adolescents. Free Radic Biol Med 9:105–109CrossRefPubMed
15.
go back to reference Sommerburg O, Grune T, Ehrich JH, Siemens WG (2002) Adaptation of glutation-peroxidase activity to oxidative stress occurs in children but not in adult patients with end-stage renal failure undergoing hemodialysis. Clin Nephrol 58 [Suppl 1]:S31–S36 Sommerburg O, Grune T, Ehrich JH, Siemens WG (2002) Adaptation of glutation-peroxidase activity to oxidative stress occurs in children but not in adult patients with end-stage renal failure undergoing hemodialysis. Clin Nephrol 58 [Suppl 1]:S31–S36
16.
go back to reference Turi S, Varga I, Matkovics B, Dobos E (1991) Erythrocyte defence mechanisms against free oxygen radicals in haemodialysed uraemic children. Pediatr Nephrol 5:179–183PubMed Turi S, Varga I, Matkovics B, Dobos E (1991) Erythrocyte defence mechanisms against free oxygen radicals in haemodialysed uraemic children. Pediatr Nephrol 5:179–183PubMed
17.
go back to reference Otting VU, Hellmann C (1990) Malondialdehydkonzentration (MDA) im Serum chronisch niereninsuffizienter, chronisch hämodialysierter und nierentransplantierter Kinder. Z Urol Nephrol 83:141–148PubMed Otting VU, Hellmann C (1990) Malondialdehydkonzentration (MDA) im Serum chronisch niereninsuffizienter, chronisch hämodialysierter und nierentransplantierter Kinder. Z Urol Nephrol 83:141–148PubMed
18.
go back to reference Chkawa H, Ohski N, Yagi K (1979) Assay for lipid peroxides in animal tissues by thiobarbituric reaction. Anal Biochem 95:351–358PubMed Chkawa H, Ohski N, Yagi K (1979) Assay for lipid peroxides in animal tissues by thiobarbituric reaction. Anal Biochem 95:351–358PubMed
19.
go back to reference Nourooz-Zadeh J, Tajaddini Sarmadi J, Wolff S (1994) Measurement of plasma hydroperioxide concentration by ferrous oxidation xylenol orange assay in conjunction with triphenylphosphine. Anal Biochem 220:403–409CrossRefPubMed Nourooz-Zadeh J, Tajaddini Sarmadi J, Wolff S (1994) Measurement of plasma hydroperioxide concentration by ferrous oxidation xylenol orange assay in conjunction with triphenylphosphine. Anal Biochem 220:403–409CrossRefPubMed
20.
go back to reference Paglia DE, Valentine WN (1967) Studies on the quantitative and qualitative characterisation of erythrocyte glutathione peroxidase. J Lab Clin Med 70:158–168PubMed Paglia DE, Valentine WN (1967) Studies on the quantitative and qualitative characterisation of erythrocyte glutathione peroxidase. J Lab Clin Med 70:158–168PubMed
21.
go back to reference Aebi H (1974) Catalase, vol 2. In: Bergmeyer HU (eds) Methods of enzymatic analysis. Weinheim Academic Press, New York, pp 673–678 Aebi H (1974) Catalase, vol 2. In: Bergmeyer HU (eds) Methods of enzymatic analysis. Weinheim Academic Press, New York, pp 673–678
22.
go back to reference Misra HP, Fridovich I (1972) The role of superoxide anion in the autooxidation of epinephrine and a simple assay for superoxide dismutase. J Biol Chem 247:3170–3175PubMed Misra HP, Fridovich I (1972) The role of superoxide anion in the autooxidation of epinephrine and a simple assay for superoxide dismutase. J Biol Chem 247:3170–3175PubMed
23.
go back to reference Martin-Mateo MC, Sanchez-Portugal M, Iglesias S, Paula A de, Bustamante J (1999) Oxidative stress in chronic renal failure. Ren Fail 21:155–167PubMed Martin-Mateo MC, Sanchez-Portugal M, Iglesias S, Paula A de, Bustamante J (1999) Oxidative stress in chronic renal failure. Ren Fail 21:155–167PubMed
24.
go back to reference Trznadel K, Pawlicki L, Kędziora J, Luciak M, Błaszczyk J, Buczyński A (1989) Aktywność dysmutazy ponadtlenkowej w erytrocytach oraz stężenie malonylodialdehydu w erytrocytach i osoczu w różnych okresach niewydolności nerek. Pol Arch Med Wewn 80:261–266 Trznadel K, Pawlicki L, Kędziora J, Luciak M, Błaszczyk J, Buczyński A (1989) Aktywność dysmutazy ponadtlenkowej w erytrocytach oraz stężenie malonylodialdehydu w erytrocytach i osoczu w różnych okresach niewydolności nerek. Pol Arch Med Wewn 80:261–266
25.
go back to reference Annuk M, Fellström B, Åkerblom O, Zilmer K, Vihalemm T, Zilmer M (2001) Oxidative stress markers in pre-uremic patients. Clin Nephrol 56:308–314PubMed Annuk M, Fellström B, Åkerblom O, Zilmer K, Vihalemm T, Zilmer M (2001) Oxidative stress markers in pre-uremic patients. Clin Nephrol 56:308–314PubMed
26.
go back to reference Zachara BA, Adamowicz A, Trafikowska U, Trafikowska A, Manitius J, Nartowicz E (2001) Selenium and glutathione levels and glutathione peroxidases and some other antioxidant parameters in blood of patients with chronic renal failure. J Trace Elem Med Biol 15:161–166PubMed Zachara BA, Adamowicz A, Trafikowska U, Trafikowska A, Manitius J, Nartowicz E (2001) Selenium and glutathione levels and glutathione peroxidases and some other antioxidant parameters in blood of patients with chronic renal failure. J Trace Elem Med Biol 15:161–166PubMed
27.
go back to reference Dasgupta A, Hussain S, Ahmad S (1992) Increased lipid peroxidation in patients on maintenance hemodialysis. Nephron 60:56–59PubMed Dasgupta A, Hussain S, Ahmad S (1992) Increased lipid peroxidation in patients on maintenance hemodialysis. Nephron 60:56–59PubMed
28.
go back to reference Lucchi L, Banni S, Capelli B, Medici G, Melis MP, Tomasi A, Vannini V, Lusvarghi E (1993) Conjugated diene fatty acids in patients with chronic renal failure: evidence of increased lipid peroxidation? Nephron 65:401–409PubMed Lucchi L, Banni S, Capelli B, Medici G, Melis MP, Tomasi A, Vannini V, Lusvarghi E (1993) Conjugated diene fatty acids in patients with chronic renal failure: evidence of increased lipid peroxidation? Nephron 65:401–409PubMed
29.
go back to reference Dursun E, Ozben T, Suleymanlar G, Dursun B, Yakupoglu G (2002) Effect of hemodialysis on the oxidative stress and antioxidants. Clin Chem Lab Med 40:1009–1013PubMed Dursun E, Ozben T, Suleymanlar G, Dursun B, Yakupoglu G (2002) Effect of hemodialysis on the oxidative stress and antioxidants. Clin Chem Lab Med 40:1009–1013PubMed
30.
go back to reference Konukoglu D, Ercan M, Ayaz M, Onen S (2001) Plasma and erythrocytes antioxidant status and trace element levels in proteinuric patients with moderate glomerular function. J Trace Elem Med Biol 15:119–122PubMed Konukoglu D, Ercan M, Ayaz M, Onen S (2001) Plasma and erythrocytes antioxidant status and trace element levels in proteinuric patients with moderate glomerular function. J Trace Elem Med Biol 15:119–122PubMed
31.
go back to reference Nagase S, Aoyagi K, Hirayama A, Gotoh M, Ueda A, Tomida C, Kamezaki T, Nagai Y, Kikuchi H, Koyama A (1997) Favorable effect of hemodialysis on decreased serum antioxidant activity in hemodialysis patients demonstrated by electron spin resonance. J Am Soc Nephrol 8:1157–1163PubMed Nagase S, Aoyagi K, Hirayama A, Gotoh M, Ueda A, Tomida C, Kamezaki T, Nagai Y, Kikuchi H, Koyama A (1997) Favorable effect of hemodialysis on decreased serum antioxidant activity in hemodialysis patients demonstrated by electron spin resonance. J Am Soc Nephrol 8:1157–1163PubMed
32.
go back to reference Ozden M, Maral H, Akaydin D, Cetinalp P, Kalender B (2002) Erythrocyte glutathione peroxidase activity, plasma malonyldialdehyde and erythrocyte glutathione levels in hemodialysis and CAPD patients. Clin Biochem 35:269–273CrossRefPubMed Ozden M, Maral H, Akaydin D, Cetinalp P, Kalender B (2002) Erythrocyte glutathione peroxidase activity, plasma malonyldialdehyde and erythrocyte glutathione levels in hemodialysis and CAPD patients. Clin Biochem 35:269–273CrossRefPubMed
33.
go back to reference Paul JL, Sall ND, Soni T, Poignet JL, Lindenbaum A, Man NK, Moatti N, Raichvarg D (1993) Lipid peroxidation abnormalities in hemodialyzed patients. Nephron 64:106–109PubMed Paul JL, Sall ND, Soni T, Poignet JL, Lindenbaum A, Man NK, Moatti N, Raichvarg D (1993) Lipid peroxidation abnormalities in hemodialyzed patients. Nephron 64:106–109PubMed
34.
go back to reference Vanella A, Geremia E, Pinturo R, Triolo P, Liuzzo G, Triolo C, Custorella A, Condorelli G, Giglio A (1983) Superoxide dismutase activity and reduced glutathione content in erythrocytes of uremic patients on chronic dialysis. Acta Haematol 70:312–315PubMed Vanella A, Geremia E, Pinturo R, Triolo P, Liuzzo G, Triolo C, Custorella A, Condorelli G, Giglio A (1983) Superoxide dismutase activity and reduced glutathione content in erythrocytes of uremic patients on chronic dialysis. Acta Haematol 70:312–315PubMed
35.
go back to reference Zachara BA, Adamowicz A, Trafikowska U, Trafikowska A, Manitius J, Nartowicz E (2001) Selenium and glutathione levels and glutathione peroxidase activities in blood component of uremic patients on hemodialysis supplemented with selenium and treated with erythropoietin. J Trace Elem Med Biol 15:201–208PubMed Zachara BA, Adamowicz A, Trafikowska U, Trafikowska A, Manitius J, Nartowicz E (2001) Selenium and glutathione levels and glutathione peroxidase activities in blood component of uremic patients on hemodialysis supplemented with selenium and treated with erythropoietin. J Trace Elem Med Biol 15:201–208PubMed
36.
go back to reference Van Den Branden C, Ceyssens B, De Craemer D, De Bleser P, Hellemans K, Geerts A, Verbeelen D (2000) Antioxidant enzyme gene expression in rats with remnant kidney induced chronic renal failure. Exp Nephrol 8:91–96PubMed Van Den Branden C, Ceyssens B, De Craemer D, De Bleser P, Hellemans K, Geerts A, Verbeelen D (2000) Antioxidant enzyme gene expression in rats with remnant kidney induced chronic renal failure. Exp Nephrol 8:91–96PubMed
37.
go back to reference Avissar N, Ornt DB, Yagil Y, Horovitz S, Watkins RH, Kerl EA, Takahashi K, Palmer IS, Cohen HJ (1994) Human kidney proximal tubules are the main source of plasma glutathione peroxidase. Am J Physiol 266: C367–C375PubMed Avissar N, Ornt DB, Yagil Y, Horovitz S, Watkins RH, Kerl EA, Takahashi K, Palmer IS, Cohen HJ (1994) Human kidney proximal tubules are the main source of plasma glutathione peroxidase. Am J Physiol 266: C367–C375PubMed
38.
go back to reference Adamowicz A, Trafikowska U, Trafikowska A, Zachara BA, Manitius J (2002) Effect of erythropoietin on selected antioxidant parameters in blood of uremic patients on long-term hemodialysis. Med Sci Monit 8:CR202–205PubMed Adamowicz A, Trafikowska U, Trafikowska A, Zachara BA, Manitius J (2002) Effect of erythropoietin on selected antioxidant parameters in blood of uremic patients on long-term hemodialysis. Med Sci Monit 8:CR202–205PubMed
Metadata
Title
Lipid peroxidation and antioxidant enzymes in children with chronic renal failure
Authors
Danuta Zwolińska
Władysław Grzeszczak
Katarzyna Kiliś-Pstrusińska
Krystyna Szprynger
Maria Szczepańska
Publication date
01-08-2004
Publisher
Springer-Verlag
Published in
Pediatric Nephrology / Issue 8/2004
Print ISSN: 0931-041X
Electronic ISSN: 1432-198X
DOI
https://doi.org/10.1007/s00467-004-1512-2

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