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Tytuł pozycji:

Influence of ferulic acid on circulatory prooxidant - antioxidant status during alkohol and PUFA induced toxicity

Tytuł:
Influence of ferulic acid on circulatory prooxidant - antioxidant status during alkohol and PUFA induced toxicity
Autorzy:
Rukkumani R.
Aruna K.
Suresh P.V.
Menon V.P.
Tematy:
alcohol
polyunsaturated fatty acid
toxicity
oxidative stress
zinc
copper
antioxidant
ferritin
lipid peroxidation
ferulic acid
Język:
angielski
Dostawca treści:
AGRO
Artykuł
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In recent years, there has been an escalation in alcohol abuse and inevitably, alcohol related disorders are becoming an increasingly important cause of morbidity and mortality. Alcohol is known to induce a dose dependent increase in lipid peroxidation. Alcohol related disabilities are more pronounced when taken along with diet rich in polyunsaturated fatty acid (PUFA). The present work aims at analysing the protective role of ferulic acid (FA), a naturally occurring nutritional component on alcohol and PUFA induced oxidative stress. Two different doses of ferulic acid, 20 mg/kg body weight and 40 mg /kg body weight were used for the study. The results showed that the levels of oxidative markers; thiobarbituric acid reactive substances (TBARS), hydroperoxides (HP) and levels of copper (Cu) and ferritin were increased significantly in plasma of alcohol, thermally oxidised PUFA (PUFA) and alcohol + PUFA groups, which were decreased significantly on treatment with both the doses of ferulic acid. The activities of enzymic antioxidants viz. superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPX) and non enzymic antioxidants like vitamin C, vitamin E, and reduced glutathione (GSH) and the levels of zinc (Zn) were significantly decreased in alcohol, PUFA and alcohol + PUFA groups which were improved significantly on treatment with both the doses of FA. The reduction in oxidative stress was more significant in 20 mg/kg body weight treatment groups compared to 40 mg/kg body weight. Thus from the results obtained, we conclude that FA effectively protects the system against alcohol and PUFA induced oxidative stress.

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