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母体对胎儿生长的限制及其后果。

Maternal constraint of fetal growth and its consequences.

作者信息

Gluckman Peter D, Hanson Mark A

机构信息

Liggins Institute, University of Auckland and National Research Centre for Growth and Development, 2-6 Park Avenue, Grafton, Private Bag 92019, Auckland, New Zealand.

出版信息

Semin Fetal Neonatal Med. 2004 Oct;9(5):419-25. doi: 10.1016/j.siny.2004.03.001.

Abstract

The major non-genetic factor determining the size of the fetus at term is maternal constraint. This term refers to a set of poorly defined processes by which maternal and uteroplacental factors act to limit the growth of the fetus, presumably by limiting nutrient availability and/or the metabolic-hormonal drive to grow. Maternal constraint can be divided into supply-limited constraint (e.g. maternal size) and demand-driven constraint (e.g. twinning). Maternal constraint acts in all pregnancies, but is greater in some situations, particularly those involving young maternal age, small maternal size, nulliparous and multiple pregnancies. Maternal constraint is an important physiological cause of the variation in birth size, but is not without longer-term consequences. There is increasing evidence that maternal constraint is an important factor in determining the increased risk of adult diseases in those who have poor fetal growth due to pathophysiological factors. The evidence is reviewed and placed in the context of discussing the evolutionary significance of maternal constraint. The role of predictive adaptive responses as the basis of programming, and the effects of maternal constraint on these responses are discussed. Changing demography means that maternal constraint must increasingly be considered as a significant factor in determining the pattern of disease.

摘要

决定足月胎儿大小的主要非遗传因素是母体限制。该术语指的是一组定义不明确的过程,通过这些过程,母体和子宫胎盘因素可能通过限制营养供应和/或生长的代谢 - 激素驱动力来限制胎儿的生长。母体限制可分为供应受限型限制(如母体体型)和需求驱动型限制(如双胎妊娠)。母体限制在所有妊娠中均起作用,但在某些情况下更为明显,特别是那些涉及年轻母体年龄、小母体体型、初产妇和多胎妊娠的情况。母体限制是出生体重差异的一个重要生理原因,但并非没有长期后果。越来越多的证据表明,母体限制是导致因病理生理因素导致胎儿生长不良的个体成年疾病风险增加的一个重要因素。本文对相关证据进行了综述,并在讨论母体限制的进化意义的背景下进行了阐述。还讨论了预测性适应反应作为编程基础的作用以及母体限制对这些反应的影响。不断变化的人口统计学意味着母体限制必须越来越被视为决定疾病模式的一个重要因素。

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