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受孕后第一周母体营养不足会导致妊娠后期胎儿垂体中糖皮质激素受体mRNA表达降低,且不存在GR外显子17高甲基化现象。

Maternal undernutrition during the first week after conception results in decreased expression of glucocorticoid receptor mRNA in the absence of GR exon 17 hypermethylation in the fetal pituitary in late gestation.

作者信息

Zhang S, Williams-Wyss O, MacLaughlin S M, Walker S K, Kleemann D O, Suter C M, Morrison J L, Molloy L, Cropley J E, Roberts C T, McMillen I C

机构信息

1 Sansom Institute of Health Research, School of Pharmacy and Medical Sciences, University of South Australia, Australia.

3 Turretfield Research Centre, South Australian Research and Development Institute, Rosedale, Australia.

出版信息

J Dev Orig Health Dis. 2013 Oct;4(5):391-401. doi: 10.1017/S2040174413000378.

Abstract

Exposure to maternal undernutrition during the periconceptional period results in an earlier prepartum activation of the fetal hypothalamo-pituitary-adrenal (HPA) axis and altered stress responsiveness in the offspring. It is not known whether such changes are a consequence of exposure of the oocyte and/or the early embryo to maternal undernutrition in the periconceptional period. We have compared the effects of 'periconceptional' undernutrition (PCUN: maternal undernutrition imposed from at least 45 days before until 6 days after conception), and 'early preimplantation' undernutrition (PIUN: maternal undernutrition imposed for only 6 days after conception) on the expression of genes in the fetal anterior pituitary that regulate adrenal growth and steroidogenesis, proopiomelanorcortin (POMC), prohormone convertase 1 (PC1), 11β-hydroxysteroid dehydrogenase type 1 and 2 (11βHSD1 and 2) and the glucocorticoid receptor (GR) in fetal sheep at 136-138 days of gestation. Pituitary GR mRNA expression was significantly lower in the PCUN and PIUN groups in both singletons and twins compared with controls, although this suppression of GR expression was not associated with hypermethylation of the exon 17 region of the GR gene. In twin fetuses, the pituitary 11βHSD1 mRNA expression was significantly higher in the PIUN group compared with the PCUN but not the control group. Thus, exposure of the single or twin embryo to maternal undernutrition for only 1 week after conception is sufficient to cause a suppression of the pituitary GR expression in late gestation. These changes may contribute to the increased stress responsiveness of the HPA axis in the offspring after exposure to poor nutrition during the periconceptional period.

摘要

孕期前后暴露于母体营养不良环境会导致胎儿下丘脑 - 垂体 - 肾上腺(HPA)轴在产前更早激活,并改变后代的应激反应性。目前尚不清楚这些变化是否是由于孕期前后卵母细胞和/或早期胚胎暴露于母体营养不良环境所致。我们比较了“孕期前后”营养不良(PCUN:从受孕前至少45天直至受孕后6天施加的母体营养不良)和“植入前早期”营养不良(PIUN:仅在受孕后6天施加的母体营养不良)对妊娠136 - 138天的胎羊胎儿垂体前叶中调节肾上腺生长和类固醇生成的基因、阿黑皮素原(POMC)、激素原转化酶1(PC1)、11β - 羟基类固醇脱氢酶1和2(11βHSD1和2)以及糖皮质激素受体(GR)表达的影响。与对照组相比,PCUN组和PIUN组的单胎和双胎胎儿垂体GR mRNA表达均显著降低,尽管GR表达的这种抑制与GR基因第17外显子区域的高甲基化无关。在双胎胎儿中,PIUN组垂体11βHSD1 mRNA表达显著高于PCUN组,但与对照组无差异。因此,单胎或双胎胚胎在受孕后仅1周暴露于母体营养不良环境足以导致妊娠后期垂体GR表达受到抑制。这些变化可能导致孕期前后暴露于营养不良环境的后代HPA轴应激反应性增加。

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