Integration of carbohydrate and lipid metabolism in skeletal muscle during postnatal development.

R A Challiss, P Ferré
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Abstract

In the adult, muscle metabolism represents a large drain of energetic substrates. The newborn has to provide additional energy to its muscles in order to ensure a rapid growth. However, since during the neonatal period the newborn is fed with a high-fat low-carbohydrate diet, i.e., milk, the newborn must also spare glucose for organs which are obligatory glucose consumers such as the brain. Thus, regulation of energetic substrate utilisation by muscle is of upmost importance for postnatal metabolic homeotasis. In the human, fibre types at birth can already be histochemically classified as adult types and the proportional distributions of each fibre-type approximate those seen in the adult. On the other hand, glycolytic and oxidative maximal enzyme activities are lower than adult levels. In the rat, the capacity for glucose utilisation in muscles is low at birth, reaches a peak at weaning and subsequently decreases. During the suckling period, the concentration of lipid-derived substrates is high as well as the muscle capacity for their oxidation; moreover, insulin concentration is low and insulin sensitivity of muscle glucose utilization is also reduced. Thus, during the suckling period, fuel availability and insulin concentrations, as well as tissue sensitivity towards the hormone, favour the limitation of glucose utilisation by skeletal muscles.

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出生后发育过程中骨骼肌碳水化合物和脂质代谢的整合。
在成人中,肌肉代谢代表着能量基质的大量消耗。新生儿必须为其肌肉提供额外的能量,以确保快速生长。然而,由于在新生儿时期,新生儿以高脂肪低碳水化合物的饮食喂养,即牛奶,新生儿还必须为必须消耗葡萄糖的器官(如大脑)节省葡萄糖。因此,肌肉对能量底物利用的调节对产后代谢稳态至关重要。在人类中,出生时的纤维类型已经可以被组织化学分类为成人类型,每种纤维类型的比例分布与成人中所见的大致相同。另一方面,糖酵解和氧化最大酶活性低于成人水平。在大鼠中,肌肉对葡萄糖的利用能力在出生时很低,在断奶时达到峰值,随后下降。在哺乳期间,脂肪源性底物的浓度和肌肉氧化能力都很高;此外,胰岛素浓度低,肌肉葡萄糖利用的胰岛素敏感性也降低。因此,在哺乳期间,燃料供应和胰岛素浓度,以及组织对激素的敏感性,有利于限制骨骼肌对葡萄糖的利用。
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