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Conjugated Linoleic Acid Supplementation Improves Maternal High Fat Diet-Induced Programming of Metabolic Dysfunction in Adult Male Rat Offspring

机译:共轭亚油酸补充改善成年雄性大鼠后代母体高脂饮食诱导的代谢功能障碍的编程

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摘要

The developmental origins of health and disease hypothesis proposes that an adverse early life environment, including in utero exposure to a maternal obesogenic environment, can lead to an increased long-term risk of obesity and related metabolic complications in offspring. We assessed whether maternal supplementation with conjugated linoleic acid (CLA) could prevent some of these adverse effects in offspring exposed to a maternal high fat diet. Sprague-Dawley dams consumed either a: control (CD), control with CLA (CLA), high fat (HF) or high fat with CLA (HFCLA) diet 10 days prior to mating and throughout pregnancy/lactation. Male offspring were weaned onto a standard chow diet. Body composition was quantified by DXA and oral glucose tolerance tests conducted on adult offspring. Gene/protein expression and histological analysis were conducted in adipose tissue. Offspring from HF dams had increased body weight, body fat deposition, impaired insulin sensitivity and adipocyte hypertrophy; all of which were rescued in HFCLA offspring. Molecular and histological analyses of the adipose tissue suggest that disturbances in adipogenesis may mediate the metabolic dysfunction observed in HF offspring. Therefore, CLA supplementation to a maternal obesogenic diet may be a promising strategy to prevent adverse programming outcomes.
机译:健康和疾病假说的发展起源表明,不利的早期生活环境,包括在子宫内暴露于产妇的致肥胖环境,可能导致肥胖的长期风险以及后代的相关代谢并发症增加。我们评估了母体补充共轭亚油酸(CLA)能否预防暴露于母体高脂饮食的后代中的某些不良影响。 Sprague-Dawley水坝在交配前10天以及整个妊娠/哺乳期均食用对照(CD),CLA(CLA),高脂(HF)或CLA(HFCLA)高脂饮食。将雄性后代断奶至标准的日常饮食。通过DXA和对成年后代进行的口服葡萄糖耐量测试来量化身体成分。在脂肪组织中进行基因/蛋白质表达和组织学分析。 HF大坝的后代体重增加,体内脂肪沉积,胰岛素敏感性受损和脂肪细胞肥大。所有这些都是在HFCLA后代中获救的。对脂肪组织的分子和组织学分析表明,脂肪形成的紊乱可能会介导在HF后代中观察到的代谢功能障碍。因此,向产妇致肥胖症饮食补充CLA可能是防止不良编程结局的有前途的策略。

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