of active oxygen radicals and lipid hydroperoxides at
all stages of development of FRO. In animals of groups
III and IV, the changes in the AOP system were less balanced. Thus, development of acute postpartum
endometritis occurred against the background of a
lower functional potential of the glutathione component of the AOP system, since, unlike cows of the control group with a 75.5% increase in GPO activity, GR
activity increased only 10.6%. In infertile cows with
ovarian dysfunction, the functional potential of the antioxidant system was also low. Catalase activity was
higher in the control animals only by 24.3%, SOD
activity by 13.2%, GPO by 27.7%, and GR by 10.6%.
of active oxygen radicals and lipid hydroperoxides atall stages of development of FRO. In animals of groupsIII and IV, the changes in the AOP system were less balanced. Thus, development of acute postpartumendometritis occurred against the background of alower functional potential of the glutathione component of the AOP system, since, unlike cows of the control group with a 75.5% increase in GPO activity, GRactivity increased only 10.6%. In infertile cows withovarian dysfunction, the functional potential of the antioxidant system was also low. Catalase activity washigher in the control animals only by 24.3%, SODactivity by 13.2%, GPO by 27.7%, and GR by 10.6%.
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