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转甲状腺素蛋白在蛋白质代谢中的意义。

Significance of transthyretin in protein metabolism.

作者信息

Ingenbleek Yves, Young Vernon R

机构信息

Laboratory of Nutrition, Faculty of Pharmacy, University Louis Pasteur (ULP), Strasbourg, Illkirch, France.

出版信息

Clin Chem Lab Med. 2002 Dec;40(12):1281-91. doi: 10.1515/CCLM.2002.222.

Abstract

Total body nitrogen (TBN) is mainly sequestered within the metabolically active lean body mass, in close relationship with total body potassium (TBK). TBN and TBK of growing children manifest superimposed accretion rates, display a sexual difference at the onset of adolescence and during adulthood, thereafter decreasing in elderly subjects. Plasma transthyretin (TTR) follows a comparable profile from birth to death in healthy individuals. Uncomplicated protein-energy malnutrition primarily affects the activity of nitrogen metabolic pool, reducing protein syntheses to levels compatible with survival. This adaptive response is well identified by declining TTR concentrations. In various stressful conditions, in vivo responses are characterized by upregulation in injured regions and with muscle proteolysis exceeding protein synthesis, resulting in a net body negative nitrogen balance. Again, this evolutionary pattern mirrors that of plasma TTR. Attenuation of stress and/or introduction of nutritional rehabilitation allows restoration to normal of both TBN and TTR values that follow parallel slopes. Despite distinct etiopathogenic mechanisms, TTR concentrations appear to reflect the loss or gain of TBN in body pools and they predict later outcome in malnutrition and in conditions of acute and/or chronic inflammation.

摘要

全身氮(TBN)主要储存于具有代谢活性的瘦体重中,与全身钾(TBK)密切相关。生长中儿童的TBN和TBK呈现叠加的蓄积率,在青春期开始时及成年期表现出性别差异,此后在老年受试者中下降。在健康个体中,血浆转甲状腺素蛋白(TTR)从出生到死亡呈现类似的变化趋势。单纯的蛋白质 - 能量营养不良主要影响氮代谢池的活性,将蛋白质合成降低到与生存相适应的水平。TTR浓度下降很好地体现了这种适应性反应。在各种应激条件下,体内反应的特征是损伤区域上调,肌肉蛋白水解超过蛋白质合成,导致机体净负氮平衡。同样,这种变化模式与血浆TTR的模式相似。应激减轻和/或引入营养康复可使TBN和TTR值恢复正常,二者呈平行变化趋势。尽管病因机制不同,但TTR浓度似乎反映了机体氮库中TBN的增减情况,并且可以预测营养不良以及急慢性炎症状态下的后期结局。

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