Literature DB >> 23105716

Lipid peroxidation and the levels of antioxidant enzymes in coronary artery disease.

K Kaur1, G Bedi, M Kaur, Anil Vij, Inderpreet Kaur.   

Abstract

Coronary Artery Disease is the major cause of mortality and morbidity worldwide. Traditional risk factors account for only half of the morbidity and mortality from coronary artery disease. There is substantial evidence that oxidative stress plays the major role in the atherosclerotic process. The present study was undertaken to evaluate the level of lipid peroxidation (by measuring malondialdehyde) and antioxidant enzymes (ceruloplasmin, glutathione, superoxide dismutase) in coronary artery disease. Serum malondialdehyde levels and serum ceruloplasmin levels were significantly raised in all the subgroups of study group as compared to control group (p<0.001). Whole blood glutathione levels and hemolysate superoxide dismutase activity was significantly decreased in all the subgroups of study group as compared to control group (p<0.001). Above results suggests that the patients of coronary artery disease show increased oxidative stress and decreased levels of antioxidant enzymes. So it is recommended that the management protocol for coronary artery disease patients should include antioxidant supplementation along with simultaneous lowering of lipid peroxidation.

Entities:  

Keywords:  Antioxidants; Ceruloplasmin; Coronary artery disease; Lipid peroxidation

Year:  2008        PMID: 23105716      PMCID: PMC3453659          DOI: 10.1007/s12291-008-0008-4

Source DB:  PubMed          Journal:  Indian J Clin Biochem        ISSN: 0970-1915


  27 in total

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  12 in total

1.  Deficiency of superoxide dismutase impairs protein C activation and enhances susceptibility to experimental thrombosis.

Authors:  Sanjana Dayal; Sean X Gu; Ryan D Hutchins; Katina M Wilson; Yi Wang; Xiaoyun Fu; Steven R Lentz
Journal:  Arterioscler Thromb Vasc Biol       Date:  2015-06-11       Impact factor: 8.311

2.  Oxidant and antioxidant status in coronary artery disease.

Authors:  Abdolhossein Bastani; Sadegh Rajabi; Afshin Daliran; Habibollah Saadat; Feridoun Karimi-Busheri
Journal:  Biomed Rep       Date:  2018-07-17

3.  Role of Glutathione S-Transferase in Coronary Artery Disease Patients with and Without Type 2 Diabetes Mellitus.

Authors:  Sheetal Pahwa; Ritu Sharma; Balwant Singh
Journal:  J Clin Diagn Res       Date:  2017-01-01

Review 4.  Oxidative stress as a mechanism of added sugar-induced cardiovascular disease.

Authors:  Kailash Prasad; Indu Dhar
Journal:  Int J Angiol       Date:  2014-12

Review 5.  Molecular studies on coronary artery disease-a review.

Authors:  A Supriya Simon; T Vijayakumar
Journal:  Indian J Clin Biochem       Date:  2013-02-12

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Authors:  A Supriya Simon; V Chithra; Anoop Vijayan; Roy D Dinesh; T Vijayakumar
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7.  Relationship between calculated total antioxidant status and atherosclerotic coronary artery disease.

Authors:  Maryam Sotoudeh Anvari; Maryam Mortazavian Babaki; Mohammad Ali Boroumand; Bahareh Eslami; Arash Jalali; Hamidreza Goodarzynejad
Journal:  Anatol J Cardiol       Date:  2015-11-26       Impact factor: 1.596

8.  MnSOD and GPx1 polymorphism relationship with coronary heart disease risk and severity.

Authors:  Yosra Souiden; Hela Mallouli; Salah Meskhi; Yassine Chaabouni; Ahmed Rebai; Foued Chéour; Kacem Mahdouani
Journal:  Biol Res       Date:  2016-04-11       Impact factor: 5.612

9.  Upregulation of miR‑423 improves autologous vein graft restenosis via targeting ADAMTS‑7.

Authors:  Wenjun Ren; Liwen Liang; Yongwu Li; Fei-Yu Wei; Ninghui Mu; Libin Zhang; Wei He; Yu Cao; Da Xiong; Hongrong Li
Journal:  Int J Mol Med       Date:  2019-12-05       Impact factor: 4.101

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Authors:  Antonio P Arenas de Larriva; Laura Limia-Pérez; Juan F Alcalá-Díaz; Alvaro Alonso; José López-Miranda; Javier Delgado-Lista
Journal:  Nutrients       Date:  2020-10-21       Impact factor: 5.717

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