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- W2565760014 abstract "Situational increase in the concentration of free oxide in the body for a reduction of antioxidant defense is accompanied by the development of pathological processes.One of the major cell damage by free radicals is the destruction of the fatty acids that make up cell membranes (lipid peroxidation). Peroxidation of lipids of biological membranes causes a disturbance of the barrier function and reduces the enzymatic activity; disintegrates receptor binding and vesicular transport. This leads to disruption of cellular activity, accelerated apoptosis degeneration, necrobiosis, atrophy and necrosis.The damaging effect of oxygen radicals in the cell antioxidant defense system opposed., protection function is performed by enzymes – superoxide dismutase, catalase, glutathione reductase, and low molecular weight non–enzymatic antioxidants (carotenoids, tocopherol), water soluble vitamins (ascorbic acid).Thus, the oxidation of lipid structures underlying the development of many diseases, including pathologies animal reproductive organs.Among the disorders of the reproductive function in cows is quite common gonadopathy such as gonadodystrophy, hypogonadism and hypoluteolisis on background endometritis (diorganspathology).The emergence and development of ovarian pathologies cows hypothetically can be supplemented by the existence of violations, failures in the prooxidant–antioxidant system, as the basis of these pathologies is a violation tropism, of complex mechanisms for metabolism and preserve cell structure and ovarian tissue.To determine the concentration of free oxide derivatives and antioxidant protection status in cows for ovariodystrophy, hypogonadism and diorgan pathology (endometritis↔hypoluteolisis) presents the materials the article.It is found that for cows ovarian pathologies compared to animals with the normal physiological state gonads malondialdehyde erythrocytes in blood was significantly increased by 10.4 –23.2 mm/l (25.3 – 56.8%), catalase activity was reduced to 13–14,4 m / H2O2 / l–min (56.9– 91.1%), reduced glutathione was reduced to 0.68–0.8 (16.1–19.1%).Installed status data of the antioxidant system in cows with gonadopathy show quite important determinant role in the genesis of ovarian pathologies." @default.
- W2565760014 created "2017-01-06" @default.
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- W2565760014 date "2016-10-16" @default.
- W2565760014 modified "2023-09-25" @default.
- W2565760014 title "ПРООКСИДАНТНО–АНТИОКСИДАНТНИЙ СТАТУС КОРІВ ЗА ГОНАДОПАТІЙ" @default.
- W2565760014 doi "https://doi.org/10.15421/nvlvet7140" @default.
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