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青蛙的下丘脑-垂体-甲状腺(HPT)轴及其在青蛙发育和繁殖中的作用。

The hypothalamic-pituitary-thyroid (HPT) axis in frogs and its role in frog development and reproduction.

作者信息

Fort Douglas J, Degitz Sigmund, Tietge Joseph, Touart Leslie W

机构信息

Fort Environmental Laboratories, Stillwater, Oklahoma 74074, USA.

出版信息

Crit Rev Toxicol. 2007 Jan-Feb;37(1-2):117-61. doi: 10.1080/10408440601123545.

Abstract

Metamorphosis of the amphibian tadpole is a thyroid hormone (TH)-dependent developmental process. For this reason, the tadpole is considered to be an ideal bioassay system to identify disruption of thyroid function by environmental contaminants. Here we provide an in-depth review of the amphibian thyroid system with particular focus on the role that TH plays in metamorphosis. The amphibian thyroid system is similar to that of mammals and other tetrapods. We review the amphibian hypothalamic-pituitary-thyroid (HPT) axis, focusing on thyroid hormone synthesis, transport, and metabolism. We also discuss the molecular mechanisms of TH action, including the role of TH receptors, the actions of TH on organogenesis, and the mechanisms that underlie the pleiotropic actions of THs. Finally, we discuss methods for evaluating thyroid disruption in frogs, including potential sites of action, relevant endpoints, candidate protocols for measuring thyroid axis disruption, and current gaps in our knowledge. The utility of amphibian metamorphosis as a model for evaluating thyroid axis disruption has recently led to the development of a bioassay using Xenopus laevis.

摘要

两栖类蝌蚪的变态是一个依赖甲状腺激素(TH)的发育过程。因此,蝌蚪被认为是鉴定环境污染物对甲状腺功能干扰的理想生物测定系统。在此,我们对两栖类甲状腺系统进行深入综述,特别关注TH在变态过程中所起的作用。两栖类甲状腺系统与哺乳动物及其他四足动物的相似。我们综述两栖类下丘脑 - 垂体 - 甲状腺(HPT)轴,重点关注甲状腺激素的合成、运输和代谢。我们还讨论TH作用的分子机制,包括TH受体的作用、TH对器官发生的作用以及TH多效性作用的潜在机制。最后,我们讨论评估青蛙甲状腺功能干扰的方法,包括潜在作用位点、相关终点、测量甲状腺轴干扰的候选方案以及我们目前知识上的空白。两栖类变态作为评估甲状腺轴干扰模型的实用性最近促使了一种使用非洲爪蟾的生物测定方法的开发。

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