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Chlorella vulgaris supplementation effects on performances oxidative stress and antioxidant genes expression in liver and ovaries of New Zealand White rabbits

机译:小球藻对新西兰白兔肝脏和卵巢性能氧化应激和抗氧化基因表达的影响

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摘要

Oxidative stress is an exclusive biochemical complication affecting reproduction; hence, dietary antioxidant supplementation for its attenuation is a required nutrition – reproduction improvement strategy. On this background, Chlorella vulgaris (a natural antioxidant) was supplemented to grower female rabbits to maturity. The rabbits were thirty-five in number randomly distributed into five experimental groups in a completely randomized design. Control group was fed only basal feed while treatment groups were fed diets containing 40 %, 60 %, 80 % and 100 % Chlorella vulgaris biomass as T1, T2, T3 and T4 respectively at 500 mg per animal body weight (kg) along with the basal feed daily. Performance records were obtained, blood was collected, and at the end uterus, ovaries and liver were removed from sacrificed animals for analysis. Serum, uterus and liver oxidative stress status were determined while RNA isolated from liver and ovaries samples were used for antioxidant genes expression analysis. Oxidative stress status and antioxidant enzymes activities were determined using chemical assays while antioxidant gene expression levels were determined using real-time quantitative PCR system. There was significant difference in feed intake (p < 0.014), final body weights (p < 0.008), empty carcass weights (p < 0.001) and commercial carcass weights (p < 0.001) of the rabbits as results of the microalgae supplementation. There was also significant difference in malondialdehyde (MDA) concentrations (p < 0.050), total antioxidant capacity (TAC) (p < 0.050) and protein carbonyl (PCO) concentrations (p < 0.050) due to the supplementation of the microalgae; in addition, supplementation of the microalgae significantly improved activities of superoxide dismutase (SOD) (p < 0.050), catalase (CAT) (p < 0.050) and reduced glutathione (GSH) concentration (p < 0.050). Furthermore, there was significant difference in relative expression of primary antioxidant genes sod1 (p < 0.050) and gpx1 (p < 0.050); however, there was no significant difference in relative expression of bre (p > 0.050) and ucp1 (p > 0.050). The study concluded from the outcomes stated above that supplementation of microalgae Chlorella vulgaris improved performances of rabbits through attenuation of oxidative stress, enhancement of antioxidant enzymes activities as well as up-regulation of primary antioxidant genes. Hence, it was recommended as dietary supplement for protection against oxidative stress and improved productivity in rabbits and other food producing mammalian species. In addition, further studies into assessment of its effects on expression of transcripts and immune modulation genes in rabbits and other animals is warranted as future studies in order to established its potential as beneficial nutraceutical for animals and human.
机译:氧化应激是影响繁殖的排他性生化并发症;因此,膳食抗氧化剂的补充是其必需的营养-生殖改善策略。在这种背景下,小球藻(一种天然抗氧化剂)被添加到成年雌性兔子体内,使其成熟。以完全随机的设计,将三十五只兔子随机分成五个实验组。对照组仅饲喂基础饲料,而治疗组饲喂分别含40%,60%,80%和100%小球藻生物量的饲料,分别为每动物体重(kg)500 mg,每公斤动物体重(kg)T1,T2,T3和T4。每日基础饲料。获得性能记录,收集血液,最后从被处死的动物中取出子宫和卵巢,进行分析。测定血清,子宫和肝脏的氧化应激状态,而从肝脏和卵巢样品中分离的RNA用于抗氧化剂基因表达分析。使用化学分析确定氧化应激状态和抗氧化酶活性,同时使用实时定量PCR系统确定抗氧化基因表达水平。补充微藻后,兔子的采食量(p <0.014),最终体重(p <0.008),空car体重量(p <0.001)和商业car体重量(p <0.001)存在显着差异。由于补充了微藻,丙二醛(MDA)浓度(p <0.050),总抗氧化剂能力(TAC)(p <0.050)和蛋白质羰基(PCO)浓度(p <0.050)也存在显着差异。此外,补充微藻显着提高了超氧化物歧化酶(SOD)(p <0.050),过氧化氢酶(CAT)(p <0.050)和降低的谷胱甘肽(GSH)浓度(p <0.050)的活性。此外,主要抗氧化剂基因sod1(p <0.050)和gpx1(p <0.050)的相对表达有显着差异;但是,bre(p> 0.050)和ucp1(p> 0.050)的相对表达没有显着差异。研究从上述结果得出结论,补充微藻小球藻可通过减轻氧化应激,增强抗氧化酶活性以及上调主要抗氧化基因来改善兔的性能。因此,建议将其作为膳食补充剂,以防止兔子和其他食品生产的哺乳动物遭受氧化应激并提高生产率。此外,有必要作进一步的研究来评估其对兔和其他动物的转录本和免疫调节基因表达的影响,作为今后的研究,以确立其作为对动物和人类有益的营养保健品的潜力。

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