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围产期蛋白质限制对泌乳大鼠乳汁中游离氨基酸和脂肪酸谱的影响:对幼崽生长和代谢状态的潜在作用。

Perinatal protein restriction affects milk free amino acid and fatty acid profile in lactating rats: potential role on pup growth and metabolic status.

作者信息

Martin Agnoux Aurore, Antignac Jean-Philippe, Boquien Clair-Yves, David Agnes, Desnots Emmanuelle, Ferchaud-Roucher Veronique, Darmaun Dominique, Parnet Patricia, Alexandre-Gouabau Marie-Cécile

机构信息

INRA, UMR1280, Physiologie des Adaptations Nutritionnelles, Institut des Maladies de l'Appareil Digestif (IMAD), Centre de Recherche en Nutrition Humaine Ouest (CRNH), Nantes, France; LUNAM, Institut des Maladies de l'Appareil Digestif (IMAD), Centre de Recherche en Nutrition Humaine Ouest (CRNH), Nantes, France.

LUNAM, Oniris, Laboratoire d'Etude des Résidus et Contaminants dans les Aliments (LABERCA), USC INRA 1329, Nantes, France.

出版信息

J Nutr Biochem. 2015 Jul;26(7):784-95. doi: 10.1016/j.jnutbio.2015.02.012. Epub 2015 Apr 13.

Abstract

Perinatal undernutrition affects not only fetal and neonatal growth but also adult health outcome, as suggested by the metabolic imprinting concept. Although maternal milk is the only channel through which nutrients are transferred from mother to offspring during the postnatal period, the impact of maternal undernutrition on milk composition is poorly understood. The present study investigates, in a rat model of nutritional programming, the effects of feeding an isocaloric, low-protein diet throughout gestation and lactation on milk composition and its possible consequences on offspring's growth and metabolic status. We used an integrated methodological approach that combined targeted analyses of macronutrients, free amino acid and fatty acid content throughout lactation, with an untargeted mass-spectrometric-based metabolomic phenotyping. Whereas perinatal dietary protein restriction failed to alter milk protein content, it dramatically decreased the concentration of most free amino acids at the end of lactation. Interestingly, a decrease of several amino acids involved in insulin secretion or gluconeogenesis was observed, suggesting that maternal protein restriction during the perinatal period may impact the insulinotrophic effect of milk, which may, in turn, account for the slower growth of the suckled male offspring. Besides, the decrease in sulfur amino acids may alter redox status in the offspring. Maternal undernutrition was also associated with an increase in milk total fatty acid content, with modifications in their pattern. Altogether, our results show that milk composition is clearly influenced by maternal diet and suggest that alterations in milk composition may play a role in offspring growth and metabolic programming.

摘要

如代谢印记概念所表明的,围产期营养不良不仅会影响胎儿和新生儿的生长,还会影响成人的健康结局。尽管母乳是出生后营养物质从母亲传递给后代的唯一途径,但母体营养不良对乳汁成分的影响却知之甚少。本研究在营养编程的大鼠模型中,探究了在整个妊娠期和哺乳期饲喂等热量、低蛋白饮食对乳汁成分的影响及其对后代生长和代谢状态的可能后果。我们采用了一种综合的方法,在整个哺乳期对常量营养素、游离氨基酸和脂肪酸含量进行靶向分析,并结合基于非靶向质谱的代谢组学表型分析。虽然围产期饮食蛋白质限制未能改变乳汁蛋白质含量,但在哺乳期结束时,它显著降低了大多数游离氨基酸的浓度。有趣的是,观察到参与胰岛素分泌或糖异生的几种氨基酸减少,这表明围产期母体蛋白质限制可能会影响乳汁的促胰岛素作用,进而可能解释了哺乳雄性后代生长较慢的原因。此外,含硫氨基酸的减少可能会改变后代的氧化还原状态。母体营养不良还与乳汁总脂肪酸含量增加及其模式改变有关。总之,我们的结果表明乳汁成分明显受母体饮食影响,并表明乳汁成分的改变可能在后代生长和代谢编程中起作用。

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