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首页> 外文期刊>The British Journal of Nutrition >Medium-chain TAG improve energy metabolism and mitochondrial biogenesis in the liver of intra-uterine growth-retarded and normal-birth-weight weanling piglets
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Medium-chain TAG improve energy metabolism and mitochondrial biogenesis in the liver of intra-uterine growth-retarded and normal-birth-weight weanling piglets

机译:中链TAG可改善宫内发育迟缓和正常体重的断奶仔猪肝脏的能量代谢和线粒体生物发生

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We previously reported that medium-chain TAG (MCT) could alleviate hepatic oxidative damage in weanling piglets with intra-uterine growth retardation (IUGR). There is a relationship between oxidative status and energy metabolism, a process involved in substrate availability and glucose flux. Therefore, the aim of this study was to investigate the effects of IUGR and MCT on hepatic energy metabolism and mitochondrial function in weanling piglets. Twenty-four IUGR piglets and twenty-four normal-birth-weight (NBW) piglets were fed a diet of either soyabean oil (SO) or MCT from 21 d of postnatal age to 49 d of postnatal age. Then, the piglets' biochemical parameters and gene expressions related to energy metabolism and mitochondrial function were determined (n 4). Compared with NBW, IUGR decreased the ATP contents and succinate oxidation rates in the liver of piglets, and reduced hepatic mitochondrial citrate synthase (CS) activity (P0.05). IUGR piglets exhibited reductions in hepatic mitochondrial DNA (mtDNA) contents and gene expressions related to mitochondrial biogenesis compared with NBW piglets (P0.05). The MCT diet increased plasma ghrelin concentration and hepatic CS and succinate dehydrogenase activities, but decreased hepatic pyruvate kinase activity compared with the SO diet (P0.05). The MCT-fed piglets showed improved mtDNA contents and PPAR gamma coactivator-1 alpha expression in the liver (P0.05). The MCT diet alleviated decreased mRNA abundance of the hepatic PPAR alpha induced by IUGR (P0.05). It can therefore be postulated that MCT may have beneficial effects in improving energy metabolism and mitochondrial function in weanling piglets.
机译:我们先前曾报道中链TAG(MCT)可以减轻具有子宫内生长迟缓(IUGR)的断奶仔猪的肝氧化损伤。氧化状态和能量代谢之间存在关系,能量代谢涉及底物可用性和葡萄糖通量。因此,本研究的目的是研究IUGR和MCT对断奶仔猪肝脏能量代谢和线粒体功能的影响。从出生后21 d至出生后49 d,向24头IUGR仔猪和24头正常出生体重(NBW)仔猪饲喂大豆油(SO)或MCT。然后,确定仔猪的生化参数和与能量代谢和线粒体功能相关的基因表达(n 4)。与NBW相比,IUGR降低了仔猪肝脏ATP含量和琥珀酸氧化速率,并降低了肝线粒体柠檬酸合酶(CS)的活性(P <0.05)。与NBW仔猪相比,IUGR仔猪的肝线粒体DNA(mtDNA)含量和与线粒体生物发生有关的基因表达降低(P <0.05)。与SO饮食相比,MCT饮食增加了血浆生长素释放肽的浓度以及肝脏CS和琥珀酸脱氢酶的活性,但降低了肝脏丙酮酸激酶的活性(P <0.05)。饲喂MCT的仔猪肝脏中的mtDNA含量和PPARγcoactivator-1 alpha表达有所改善(P <0.05)。 MCT饮食减轻了IUGR引起的肝PPARαmRNA丰度的降低(P <0.05)。因此可以推测,MCT可能对改善断奶仔猪的能量代谢和线粒体功能具有有益的作用。

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