4.7 Article

Associations of Antioxidant Enzymes with the Concentration of Fatty Acids in the Blood of Men with Coronary Artery Atherosclerosis

Journal

JOURNAL OF PERSONALIZED MEDICINE
Volume 11, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/jpm11121281

Keywords

coronary atherosclerosis; ischemic heart disease; saturated fatty acids; monounsaturated fatty acids; polyunsaturated fatty acids; oxidative stress; superoxide dismutase; catalase; glutathione peroxidase

Funding

  1. Government of the Novosibirsk Region and RFBR [19-315-90013]
  2. [AAAA-A17-117112850280-2]

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The study identified associations of fatty acids and antioxidant enzymes in the blood of men with coronary atherosclerosis and ischemic heart disease. Changes in levels of these enzymes and a disbalance of the fatty acids profile may indicate active oxidative processes and atherosclerotic changes in the vessels.
Objective: To identify associations of fatty acids (FAs) with the antioxidant enzymes in the blood of men with coronary atherosclerosis and ischemic heart disease (IHD). Methods: The study included 80 patients: control group-20 men without IHD, the core group-60 men with IHD. The core group was divided into subgroups: subgroup A-with the presence of vulnerable atherosclerotic plaques, subgroup B-with the absence of vulnerable atherosclerotic plaques. We analyzed the levels of FAs, free radicals, superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GPx) in the blood. Results. Patients with IHD, compared with the control group: (1) had higher levels of SOD, CAT, myristic, palmitic, palmitoleic, and octadecenoic FAs; (2) had lower levels of GPx, alpha-linolenic, docosapentaenoic, docosahexaenoic, and arachidonic FAs. In subgroup A there were found: (1) negative associations of SOD-with linoleic, eicosatrienoic, arachidonic, eicosapentaenoic, docosapentaenoic and docosahexaenoic FAs, positive associations-with palmitic acid; (2) positive correlations of CAT level with palmitoleic and stearic acids; (3) negative associations between of GPx and palmitic, palmitoleic, stearic and octadecenoic FAs. Conclusions: Changes in the levels of antioxidant enzymes, and a disbalance of the FAs profile, probably indicate active oxidative processes in the body and may indicate the presence of atherosclerotic changes in the vessels.

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