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为内分泌干扰物研究和测试选择合适的动物模型和实验设计。

Selecting appropriate animal models and experimental designs for endocrine disruptor research and testing studies.

作者信息

Stokes William S

机构信息

US Public Health Service, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, NC, USA.

出版信息

ILAR J. 2004;45(4):387-93. doi: 10.1093/ilar.45.4.387.

Abstract

Evidence that chemicals in the environment may cause developmental and reproductive abnormalities in fish and wildlife by disrupting normal endocrine functions has increased concern about potential adverse human health effects from such chemicals. US laws have now been enacted that require the US Environmental Protection Agency (EPA) to develop and validate a screening program to identify chemicals in food and water with potential endocrine-disrupting activity. EPA subsequently proposed an Endocrine Disruptor Screening Program that uses in vitro and in vivo test systems to identify chemicals that may adversely affect humans and ecologically important animal species. However, the endocrine system can be readily modulated by many experimental factors, including diet and the genetic background of the selected animal strain or stock. It is therefore desirable to minimize or avoid factors that cause or contribute to experimental variation in endocrine disruptor research and testing studies. Standard laboratory animal diets contain high and variable levels of phytoestrogens, which can modulate physiologic and behavioral responses similar to both endogenous estrogen as well as exogenous estrogenic chemicals. Other studies have determined that some commonly used outbred mice and rats are less responsive to estrogenic substances than certain inbred mouse and rat strains for various estrogen-sensitive endpoints. It is therefore critical to select appropriate biological models and diets for endocrine disruptor studies that provide optimal sensitivity and specificity to accomplish the research or testing objectives. An introduction is provided to 11 other papers in this issue that review these and other important laboratory animal experimental design considerations in greater detail, and that review laboratory animal and in vitro models currently being used or evaluated for endocrine disruptor research and testing. Selection of appropriate animal models and experimental design parameters for endocrine disruptor research and testing will minimize confounding experimental variables, increase the likelihood of replicable experimental results, and contribute to more reliable and relevant test systems.

摘要

有证据表明,环境中的化学物质可能通过干扰正常的内分泌功能,导致鱼类和野生动物出现发育和生殖异常,这引发了人们对这类化学物质对人类健康潜在不利影响的更多关注。美国现已颁布法律,要求美国环境保护局(EPA)制定并验证一项筛选计划,以识别食品和水中具有潜在内分泌干扰活性的化学物质。EPA随后提出了一项内分泌干扰物筛选计划,该计划使用体外和体内测试系统来识别可能对人类和具有重要生态意义的动物物种产生不利影响的化学物质。然而,内分泌系统很容易受到许多实验因素的调节,包括饮食以及所选动物品系或种群的遗传背景。因此,在内分泌干扰物研究和测试中,尽量减少或避免那些导致或促成实验变异的因素是很有必要的。标准实验室动物饮食中含有高水平且变化不定的植物雌激素,这些植物雌激素可以调节类似于内源性雌激素以及外源性雌激素化学物质的生理和行为反应。其他研究已经确定,对于各种雌激素敏感终点,一些常用的远交系小鼠和大鼠对雌激素物质的反应不如某些近交系小鼠和大鼠品系敏感。因此,为内分泌干扰物研究选择合适的生物学模型和饮食至关重要,这些模型和饮食应提供最佳的敏感性和特异性,以实现研究或测试目标。本期还介绍了其他11篇论文,这些论文更详细地回顾了这些以及其他重要的实验室动物实验设计考虑因素,并回顾了目前正在用于或评估用于内分泌干扰物研究和测试的实验室动物和体外模型。为内分泌干扰物研究和测试选择合适的动物模型和实验设计参数将最大限度地减少混杂的实验变量,增加可重复实验结果的可能性,并有助于建立更可靠和相关的测试系统。

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