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围产期高剂量补充叶酸会改变Sprague-Dawley大鼠的胰岛素敏感性并降低脂联素的表达。

High-Dose Perinatal Folic-Acid Supplementation Alters Insulin Sensitivity in Sprague-Dawley Rats and Diminishes the Expression of Adiponectin.

作者信息

Morakinyo Ayodele Olufemi, Samuel Titilola Aderonke, Awobajo Funmileyi Olubajo, Oludare Gabriel Olorunleke, Mofolorunso Adekunle

机构信息

a Physiology Department , College of Medicine of the University of Lagos, University of Lagos , Idi-Araba , Lagos , Nigeria.

b Biochemistry Department , College of Medicine of the University of Lagos, University of Lagos , Idi-Araba , Lagos , Nigeria.

出版信息

J Diet Suppl. 2019;16(1):14-26. doi: 10.1080/19390211.2018.1426076. Epub 2018 Feb 16.

Abstract

The possible intake of folate in excess of the recommended upper levels is a matter of critical importance. This study was conducted to investigate the effects of prenatal and postnatal high folic acid supplementation (FAS) on glucose tolerance, insulin sensitivity, lipid metabolism, and expression of adiponectin in rats. The study included 20 female rats divided into two groups: control group and FAS group (receiving high folic acid supplemented diet). Both groups of female rats were mated and pregnancy confirmed. At parturition, the diet of 5 dams that were fed with control diet during gestation and their litters was changed to FAS diet and continued throughout lactation. Similarly, half of the dams that were previously fed with FAS diet during gestation and their litters were also changed to control diet. The remaining 5 dams in each group continued on their respective diets throughout lactation with their litters. Other dams remained on their respective diets throughout lactation. Food and water intake, body weight, lipid concentrations, insulin, and the expression of adiponectin were determined. Glucose tolerance and insulin sensitivity were also measured to evaluate glucose homeostasis. FAS significantly increased the postweaning food, water intake, triglyceride, and insulin levels but diminished insulin sensitivity in adult offspring. The expression of adiponectin in insulin-sensitive tissues was also significantly decreased and these were consistent with insulin resistance of FAS offspring. High-dose FAS may promote insulin resistance and dyslipidemia and disrupt glucose metabolism possibly by depressing adiponectin expression. Although this is an animal model and the effects of the diets cannot be directly transposed to humans, this study provides indications of the possible adverse effects of FAS maternal diet on glucose metabolism in the offspring.

摘要

叶酸摄入量可能超过推荐上限是一个至关重要的问题。本研究旨在探讨产前和产后高叶酸补充(FAS)对大鼠葡萄糖耐量、胰岛素敏感性、脂质代谢及脂联素表达的影响。该研究纳入20只雌性大鼠,分为两组:对照组和FAS组(接受高叶酸补充饮食)。两组雌性大鼠均进行交配并确认怀孕。分娩时,将孕期喂食对照饮食的5只母鼠及其幼崽的饮食改为FAS饮食,并在整个哺乳期持续。同样,将孕期先前喂食FAS饮食的母鼠及其幼崽中的一半也改为对照饮食。每组其余5只母鼠及其幼崽在整个哺乳期继续各自的饮食。其他母鼠在整个哺乳期保持各自的饮食。测定食物和水摄入量、体重、脂质浓度、胰岛素及脂联素的表达。还测量葡萄糖耐量和胰岛素敏感性以评估葡萄糖稳态。FAS显著增加断奶后食物、水摄入量、甘油三酯和胰岛素水平,但降低成年后代的胰岛素敏感性。胰岛素敏感组织中脂联素的表达也显著降低,这些与FAS后代的胰岛素抵抗一致。高剂量FAS可能通过抑制脂联素表达促进胰岛素抵抗和血脂异常,并扰乱葡萄糖代谢。尽管这是一个动物模型,饮食的影响不能直接应用于人类,但本研究提供了FAS母体饮食对后代葡萄糖代谢可能产生不良影响的迹象。

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