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瘦素作为发育编程效应的中介物。

Leptin as mediator of the effects of developmental programming.

机构信息

Liggins Institute and The National Research Centre for Growth and Development, University of Auckland, Grafton, Auckland, New

出版信息

Best Pract Res Clin Endocrinol Metab. 2012 Oct;26(5):677-87. doi: 10.1016/j.beem.2012.03.005. Epub 2012 May 22.

Abstract

Considerable epidemiological, experimental and clinical data have amassed showing that the risk of developing disease in later life is dependent upon early life conditions. In particular, altered maternal nutrition, including undernutrition and overnutrition, can lead to metabolic disorders in offspring characterised by obesity and leptin resistance. The adipokine leptin has received significant interest as a potential programming factor; alterations in the profile of leptin in early life are associated with altered susceptibility to obesity and metabolic disorders in adulthood. Maintenance of a critical leptin level during early development facilitates the normal maturation of tissues and signalling pathways involved in metabolic homeostasis. A period of relative hypo- or hyperleptinemia during this window of development will induce some of the metabolic adaptations which underlie developmental programming. However, it remains unclear whether leptin alone is a critical factor for the programming of obesity. At least in animal experimental studies, developmental programming is potentially reversible by manipulating the concentration of circulating leptin during a critical window of developmental plasticity and offers an exciting new approach for therapeutic intervention.

摘要

大量的流行病学、实验和临床数据表明,晚年患病的风险取决于生命早期的状况。特别是,改变母体营养,包括营养不足和营养过剩,会导致后代出现以肥胖和瘦素抵抗为特征的代谢紊乱。脂肪细胞因子瘦素作为一种潜在的编程因子受到了极大的关注;生命早期瘦素水平的改变与成年后肥胖和代谢紊乱易感性的改变有关。在早期发育过程中维持瘦素的临界水平有助于正常成熟参与代谢稳态的组织和信号通路。在发育窗口期间相对低或高瘦素血症的一段时间将诱导为发育编程基础的一些代谢适应。然而,目前尚不清楚瘦素是否是肥胖编程的关键因素。至少在动物实验研究中,通过在发育可塑性的关键窗口期间操纵循环瘦素的浓度,可以逆转发育编程,这为治疗干预提供了一种令人兴奋的新方法。

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