微生物合成二十碳五烯酸对四氯化碳肝毒性的影响

S. Deshp, akishor Duragkar, D. Samiksha, ekar
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引用次数: 2

摘要

目的:众所周知,鱼油中的二十碳五烯酸(EPA)具有许多健康益处,包括抗炎和抗氧化作用。为了生产一种替代鱼类EPA的来源,我们从米糠油中微生物合成了EPA (mEPA),并进行了光谱分析和药理学评价。本研究的目的是评估mEPA对实验性肝毒性中各种肝酶生物标志物的影响。方法:将动物分为7组,每组6只;对照组用药液处理,另一组用标准水飞蓟素处理;每天25毫克/公斤,到岸日);3组添加mEPA(5、10、50 mg/kg / o), 1组添加鱼油(1 g/kg / o),试验期15 d。除对照组外,其余各组小鼠均于第5天以1∶1剂量(3 ml/kg大鼠体重)与橄榄油混合给药引起肝毒性。采用血清样品进行SGOT、SGPT、ALP和总胆红素生化测定。对各组肝脏进行组织病理学检查,比较病理变化。结果:CCl4肝毒性假对照组血清中SGPT、SGPT、ALP、总胆红素水平升高,治疗组血清中SGPT、ALP、总胆红素水平明显降低。与标准油和鱼油相比,50 mg/ kg剂量的处理对酶水平和维持肝脏结构的再生变化有最大的抑制作用。结论:米糠油微生物合成的EPA具有良好的保肝作用,可以满足鱼油替代EPA来源的需要。
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Effect of Microbially Synthesized Eicosapentaenoic Acid on Carbon Tetrachloride Induced Hepatotoxicity
Objective: Eicosapentaenoic Acid (EPA) from fish oil is known to have numerous health benefits including antiinflammatory and antioxidant actions. With the intention of producing an alternative source to fish EPA, we have microbially synthesized EPA (mEPA) from rice bran oil, spectroscopically analysed and was pharmacologically evaluated. The objective of the present study was to evaluate the effect of mEPA on various hepatic enzyme biomarkers in experimentally induced hepatotoxicity. Methods: Animals were divided into 7 groups of six animals each; control being treated with vehicle, another group with standard (Silymarin; 25 mg/kg per day, p.o.); 3 groups with mEPA (5, 10 and 50 mg/kg p. o.) and one with fish oil (1 g/ kg p. o.) for 15 days. The hepatotoxicity was induced in all groups except control by single dose of CCl4 mixed with olive oil as vehicle in 1:1 ratio (3 ml/kg of rat body weight) on 5th day. Biochemical assays for SGOT, SGPT, ALP and total bilirubin were performed using serum samples. The histopathology of liver of all groups was carried out to compare the pathological changes. Results: The serum levels of SGPT, SGPT, ALP and total bilirubin were found to be increased in the CCl4 induced hepatotoxic sham control group which were significantly lowered down in the treated groups. The treatment with 50 mg/ kg dose has shown maximum inhibition in enzyme levels and regenerative changes with maintained hepatic architecture compared with standard and fish oil. Conclusion: Thus, microbially synthesized EPA from rice bran oil has shown promising hepato-protective effect and can fulfil the need of alternative source of EPA to fish oil.
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