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首页> 外文期刊>Antioxidants >Effects of N -Acetyl-Cysteine Supplementation through Drinking Water on the Glutathione Redox Status during the Weaning Transition of Piglets
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Effects of N -Acetyl-Cysteine Supplementation through Drinking Water on the Glutathione Redox Status during the Weaning Transition of Piglets

机译:补充N-乙酰半胱氨酸对仔猪断奶过渡期谷胱甘肽氧化还原状态的影响

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This study investigated the effect of N -acetyl-cysteine (NAC) supplementation through drinking water on animal performance and the glutathione (GSH) redox system in weaned piglets, particularly in relation to the immediate post-weaning feed intake. To this end, 168 piglets were weaned and either fed ad libitum or fasted the first two days, and either or not administered 200 mg/L NAC via the drinking water until d14 post-weaning. Next to animal performance until day 42 (d42), the GSH redox system was measured in erythrocytes, small intestinal mucosa, liver, lung, and kidney tissue at d0, d2, and d14 post-weaning. Animal performance and GSH levels were not affected by NAC, nor by fasting. Irrespective of treatment, a significant drop in GSH at d2 post-weaning was found as compared to d0, in particular in liver (?69%), distal jejunal mucosa (?72%), and lung tissue (?80%). Post-weaning changes of the GSH redox status were strongly tissue-dependent. To conclude, this research indicates that GSH redox homeostasis was largely affected in multiple organs during the weaning transition. NAC supplementation did not increase GSH levels in any tissue, not even in fasted animals, questioning the fact if cysteine is the first or only limiting factor determining the rate of GSH synthesis in the early post-weaning phase.
机译:这项研究调查了通过饮用水补充N-乙酰半胱氨酸(NAC)对断奶仔猪动物生产性能和谷胱甘肽(GSH)氧化还原系统的影响,尤其是与断奶后立即采食有关。为此,对168头仔猪断奶,并在头两天随意喂养或禁食,并通过或不通过饮用水给予200 mg / L NAC,直到断奶后第14天。直到第42天(d42)为止,都是动物活动,在断奶后d0,d2和d14,在红细胞,小肠粘膜,肝,肺和肾组织中测量了GSH氧化还原系统。动物行为和谷胱甘肽水平不受NAC或禁食的影响。无论采用何种治疗方法,断奶后d2时GSH的下降均显着低于d0,尤其是在肝脏(69%),空肠远端粘膜(72%)和肺组织(80%)中。断奶后谷胱甘肽氧化还原状态的变化强烈依赖于组织。总而言之,这项研究表明,GSH氧化还原稳态在断奶过渡期间在多个器官中受到很大影响。 NAC的补充并没有增加任何组织的GSH水平,甚至没有禁食动物,这都质疑半胱氨酸是否是决定断奶初期早期GSH合成速率的第一个或唯一限制因素。

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