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硫酸盐在发育中的作用。

Role of sulphate in development.

机构信息

Mater Research, Translational Research Institute, Woolloongabba, Queensland 4102, Australia.

出版信息

Reproduction. 2013 Jul 29;146(3):R81-9. doi: 10.1530/REP-13-0056. Print 2013 Sep.

Abstract

Sulphate contributes to numerous processes in mammalian physiology, particularly during development. Sulphotransferases mediate the sulphate conjugation (sulphonation) of numerous compounds, including steroids, glycosaminoglycans, proteins, neurotransmitters and xenobiotics, transforming their biological activities. Importantly, the ratio of sulphonated to unconjugated molecules plays a significant physiological role in many of the molecular events that regulate mammalian growth and development. In humans, the fetus is unable to generate its own sulphate and therefore relies on sulphate being supplied from maternal circulation via the placenta. To meet the gestational needs of the growing fetus, maternal blood sulphate concentrations double from mid-gestation. Maternal hyposulphataemia has been linked to fetal sulphate deficiency and late gestational fetal loss in mice. Disorders of sulphonation have also been linked to a number of developmental disorders in humans, including skeletal dysplasias and premature adrenarche. While recognised as an important nutrient in mammalian physiology, sulphate is largely unappreciated in clinical settings. In part, this may be due to technical challenges in measuring sulphate with standard pathology equipment and hence the limited findings of perturbed sulphate homoeostasis affecting human health. This review article is aimed at highlighting the importance of sulphate in mammalian development, with basic science research being translated through animal models and linkage to human disorders.

摘要

硫酸盐在哺乳动物生理学中发挥着重要作用,特别是在发育过程中。硫酸转移酶介导许多化合物的硫酸盐结合(磺化),包括类固醇、糖胺聚糖、蛋白质、神经递质和外源性物质,改变它们的生物学活性。重要的是,磺化和未结合分子的比例在许多调节哺乳动物生长和发育的分子事件中发挥着重要的生理作用。在人类中,胎儿自身无法产生硫酸盐,因此依赖于母体通过胎盘从母体循环中提供硫酸盐。为了满足胎儿生长的妊娠需求,母体血液硫酸盐浓度从中期妊娠开始增加一倍。在小鼠中,母体低硫酸盐血症与胎儿硫酸盐缺乏和晚期妊娠胎儿丢失有关。磺化障碍也与人类的许多发育障碍有关,包括骨骼发育不良和性早熟。尽管硫酸盐被认为是哺乳动物生理学中的一种重要营养素,但在临床环境中,硫酸盐在很大程度上未得到重视。部分原因可能是由于使用标准病理设备测量硫酸盐存在技术挑战,因此受干扰的硫酸盐动态平衡影响人类健康的有限发现。本文旨在强调硫酸盐在哺乳动物发育中的重要性,基础科学研究通过动物模型进行转化,并与人类疾病相关联。

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