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Retinoic acid in developmental toxicology: Teratogen, morphogen and biomarker

机译:在发育毒理学中的视黄酸:致致致致致致致致致致致致致致陶氏,形态学和生物标志物

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摘要

This review explores the usefulness retinoic acid (RA) related physiological factors as possible biomarkers of embryotoxicity. RA is involved in the morphogenesis of the early embryo as well as in the development and maturation of a wide variety of organ anlagen. The region-specific homeostasis of RA in the embryo is in many ways the driving force determining developmental cell proliferation versus differentiation. As a consequence, RA concentrations are carefully controlled in time and space in the developing embryo. RA deficiency and overdosing both result in characteristic patterns of malformations that may involve many different organ systems. The central role of RA in embryo development provides us with a set of sensitive biomarkers that may be employed in developmental toxicity testing. This includes the synthesizing and metabolizing enzymes of RA, but also a myriad of related morphogenetic factors and their genes, of which the expression may be affected by changes in RA balance. Several examples of embryotoxicants interfering with the homeostasis of RA and related parameters have been described. A preliminary adverse outcome pathway framework for RA mediated malformations has been published. Expansion of this framework and its application in developmental toxicity testing may allow the detection of a large variety of embryotoxicants with diverse modes of action. RA homeostasis therefore provides a promising set of molecular tools that may be employed in the advancement of mode of action driven animal-free developmental toxicity testing.
机译:本综述探讨了视黄酸(RA)与胚胎毒性可能的生物标志物相关的物理因素。 RA参与早期胚胎的形态发生,以及各种器官anlagen的开发和成熟。胚胎中RA的区域特异性稳态在许多方面,驱动力确定发育细胞增殖与分化。因此,在发育胚胎中的时间和空间中仔细控制RA浓度。 RA缺乏和过量的结果导致可能涉及许多不同器官系统的畸形的特征模式。 RA在胚胎发育中的核心作用为我们提供了一组可用于发育毒性测试的敏感生物标志物。这包括Ra的合成和代谢酶,但也是相关的形态发生因子及其基因的无数,其中表达可能受到RA平衡的变化的影响。已经描述了干扰RA和相关参数的稳态的胚胎毒剂的几个例子。发布了用于RA介导的畸形的初步不利结果途径。该框架的扩展及其在发育毒性测试中的应用可以允许检测具有不同行动模式的各种胚胎毒剂。因此,RA Hoyostasis提供了一套有希望的分子工具,可用于动作驱动的无动物发育毒性测试的推进。

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