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新生儿哺乳和断奶期能量代谢的变化。

Changes in energy metabolism during the suckling and weaning period in the newborn.

作者信息

Ferré P, Decaux J F, Issad T, Girard J

出版信息

Reprod Nutr Dev (1980). 1986;26(2B):619-31. doi: 10.1051/rnd:19860413.

Abstract

In most of the mammals, birth and weaning are two periods of nutritional transitions. Whereas the fetus oxidizes mainly glucose, lactate and aminoacids, the newborn is fed with milk, a high fat, low carbohydrate diet. At weaning, milk is replaced progressively by the adult diet which contains less fat and more carbohydrate. In the hours and days following birth, the newborn adapts itself to the new nutritional environment by increasing its capacity to produce glucose de novo (gluconeogenesis) in order to satisfy its high glucose needs. Oxidation of fatty acids is enhanced in the liver and at the peripheral level. Ketone bodies synthetized from fatty acids in the liver in large amounts are utilized by other tissues and specially the brain where they can met energetic and synthetic needs. In the rat, during the suckling period, lipogenesis is decreased in the liver and in white adipose tissue and triglyceride accretion is minimized. At weaning, these adaptations are reversed: decreased gluconeogenic and oxidative capacity of the liver, decrease of the role of ketone bodies, increase of the lipogenic rate in the liver and the adipose tissue, storage of triglycerides. The nutritional and hormonal factors involved in these metabolic adaptations are numerous but insulin and glucagon might play a major role.

摘要

在大多数哺乳动物中,出生和断奶是两个营养转变期。胎儿主要氧化葡萄糖、乳酸和氨基酸,而新生儿则以高脂肪、低碳水化合物的乳汁为食。断奶时,乳汁逐渐被脂肪含量较低、碳水化合物含量较高的成体饮食所取代。在出生后的数小时和数天内,新生儿通过提高自身从头合成葡萄糖(糖异生)的能力来适应新的营养环境,以满足其对葡萄糖的高需求。肝脏和外周组织中脂肪酸的氧化增强。肝脏中由脂肪酸大量合成的酮体被其他组织利用,尤其是大脑,在大脑中它们可以满足能量和合成需求。在大鼠的哺乳期,肝脏和白色脂肪组织中的脂肪生成减少,甘油三酯的积累降至最低。断奶时,这些适应性变化会逆转:肝脏的糖异生和氧化能力下降,酮体的作用减弱,肝脏和脂肪组织中脂肪生成率增加,甘油三酯储存增加。参与这些代谢适应性变化的营养和激素因素众多,但胰岛素和胰高血糖素可能起主要作用。

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