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Testing for thyroid hormone disruptors, a review of non-mammalian in vivo models

机译:检测甲状腺激素破坏者,对体内模型的非哺乳动物综述

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Thyroid hormones (THs) play critical roles in profound changes in many vertebrates, notably in mammalian neurodevelopment, although the precise molecular mechanisms of these fundamental biological processes are still being unravelled. Environmental and health concerns prompted the development of chemical safety testing and, in the context of endocrine disruption, identification of thyroid hormone axis disrupting chemicals (THADCs) remains particularly challenging. As various molecules are known to interfere with different levels of TH signalling, screening tests for THADCs may not rely solely on in vitro ligand/receptor binding to TH receptors. Therefore, alternatives to mammalian in vivo assays featuring TH-related endpoints that are more sensitive than circulatory THs and more rapid than thyroid histopathology are needed to fulfil the ambition of higher throughput screening of the myriad of environmental chemicals. After a detailed introduction of the context, we have listed current assays and parameters to assess thyroid disruption following a literature search of recent publications referring to non-mammalian models. Potential THADCs were mostly investigated in zebrafish and the frog Xenopus laevis, an amphibian model extensively used to study TH signalling.
机译:甲状腺激素(THS)在许多脊椎动物中的深刻变化中发挥着关键作用,特别是在哺乳动物神经发育中,尽管这些基本生物过程的精确分子机制仍然被解开。环境和健康问题促使化学安全检测的发展,并且在内分泌破坏的背景下,鉴定甲状腺激素轴破坏化学品(Thadc)仍然特别具有挑战性。随着已知各种分子干扰不同水平的Th信号传导,ThADC的筛选试验可能不仅依赖于体外配体/受体与受体结合。因此,在体内测定中哺乳动物的替代方案具有比循环TH更敏感的与循环系统更敏感的终点,以满足无数的环境化学品的较高产量筛选的雄心。在详细介绍上下文之后,我们列出了当前的测定和参数,以评估近期出版物的文献搜索指责非哺乳动物模型。潜在的Thadc在斑马鱼和青蛙Xenopus Laevis中大多是调查的,这是一种广泛用于研究信号传导的两栖模型。

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