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鱼类和两栖类动物的下丘脑-垂体-甲状腺轴:内分泌干扰及其对自然种群的影响。

The hypothalamus-pituitary-thyroid axis in teleosts and amphibians: endocrine disruption and its consequences to natural populations.

机构信息

Department of Biological Sciences, Texas Tech University, Lubbock, TX 79409-3131, USA.

出版信息

Gen Comp Endocrinol. 2011 Jan 15;170(2):299-312. doi: 10.1016/j.ygcen.2010.06.001. Epub 2010 Jun 8.

Abstract

Teleosts and pond-breeding amphibians may be exposed to a wide variety of anthropogenic, waterborne contaminants that affect the hypothalamus-pituitary-thyroid (HPT) axis. Because thyroid hormone is required for their normal development and reproduction, the potential impact of HPT-disrupting contaminants on natural teleost and amphibian populations raises special concern. There is laboratory evidence indicating that persistent organic pollutants, heavy metals, pharmaceutical and personal care products, agricultural chemicals, and aerospace products may alter HPT activity, development, and reproduction in teleosts and amphibians. However, at present there is no evidence to clearly link contaminant-induced HPT alterations to impairments in teleost or amphibian population health in the field. Also, with the exception of perchlorate for which laboratory studies have shown a direct link between HPT disruption and adverse impacts on development and reproductive physiology, little is known about if or how other HPT-disrupting contaminants affect organismal performance. Future field studies should focus on establishing temporal associations between the presence of HPT-disrupting chemicals, the occurrence of HPT alterations, and adverse effects on development and reproduction in natural populations; as well as determining how complex mixtures of HPT contaminants affect organismal and population health.

摘要

硬骨鱼和池塘养殖的两栖动物可能会接触到各种各样的人为的、水传播的污染物,这些污染物会影响下丘脑-垂体-甲状腺(HPT)轴。由于甲状腺激素是其正常发育和繁殖所必需的,因此 HPT 干扰污染物对自然硬骨鱼和两栖动物种群的潜在影响引起了特别关注。有实验室证据表明,持久性有机污染物、重金属、医药和个人护理产品、农业化学品和航空航天产品可能会改变硬骨鱼和两栖动物的 HPT 活性、发育和繁殖。然而,目前没有证据表明污染物引起的 HPT 改变与现场硬骨鱼或两栖动物种群健康的损害有明确联系。此外,除了实验室研究表明高氯酸盐与 HPT 破坏直接相关,并对发育和生殖生理学产生不利影响之外,对于其他 HPT 干扰污染物是否以及如何影响生物体的表现,知之甚少。未来的现场研究应集中于确定 HPT 干扰化学物质的存在、HPT 改变的发生以及对自然种群发育和繁殖的不利影响之间的时间关联;以及确定 HPT 污染物的复杂混合物如何影响生物体和种群健康。

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