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Alterations of complex behaviors in sheep by pre-natal bisphenol A exposure

Alterations of complex behaviors in sheep by pre-natal bisphenol A exposure
产前双酚 A 暴露对绵羊复杂行为的改变
批准号:
8126451
负责人:
THERESA M LEE
金额:
$27.68万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-08-10 至 2014-04-30

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项目成果

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中文摘要
翻译
描述(由申请人提供):内分泌干扰化学品(EDC)是干扰内分泌系统正常功能的污染物。在产前发育期间暴露于这些污染物可能对发育中的胎儿产生有害影响,因为该系统在关键时期具有高度的可塑性和反应性。最近人们非常关注这些污染物对子宫内胎儿的作用。在环境中普遍存在的一种这样的化合物是双酚A(BPA)。它被用于制造聚碳酸酯瓶,包括婴儿奶瓶和罐头内衬,因此接触很普遍。对啮齿类动物的研究表明,产前BPA暴露与各种健康问题有关。我们建议使用绵羊作为模型来研究产前BPA对复杂行为的影响。对产前睾酮暴露的类似研究表明,绵羊是此类研究的极好模型。在我们的设施使用绵羊作为产前BPA暴露模型的研究表明,暴露于BPA会导致生殖中断。然而,目前还没有人研究过像我们这样长寿的社会物种的复杂行为的寿命发展。本研究的目的是调查产前BPA暴露和青少年BPA暴露对绵羊模型复杂行为的影响。这些行为将与生理终点相关,包括类固醇激素水平、应激反应和体重。此外,我们将研究类固醇受体的数量和分布在大脑区域与动机和交配行为的完善。我们假设,产前暴露于BPA,在类似于人类胎儿暴露的水平,将破坏各种复杂的行为,包括游戏,侵略性,动机和性行为在动物的寿命。第二个脆弱期是青春期,因此我们也将研究青春期接触BPA的影响。具体目标1和2将检查与对照组相比暴露于产前、青少年或产前和青少年BPA的男性和女性在整个生命周期中的复杂行为。具体目标3将研究在这些脆弱时期暴露于BPA对大脑中与交配行为的动机和完成相关的区域中类固醇受体数量和分布的影响。这项研究的结果对于表征产前暴露于内分泌干扰物BPA的行为和发育影响非常重要。这是一个重要的社会问题,因为母亲和幼儿接触的许多产品都含有BPA。 公共卫生相关性:双酚A(BPA)是一种内分泌干扰化学品,在工业化国家广泛使用。特别值得关注的是在生殖发育的关键时期的影响,包括在子宫内和青少年暴露于BPA,这可能会产生有害的生理和行为影响。本项目将在绵羊模型中研究产前BPA暴露对行为和神经化学的影响。
英文摘要
DESCRIPTION (provided by applicant): Endocrine disrupting chemicals (EDC) are pollutants that disturb normal functioning of the endocrine system. Exposure to such pollutants during pre-natal development can have detrimental effects on the developing fetus because the system is highly plastic and responsive during critical periods. There has been much concern recently about the action of these pollutants on fetuses in utero. One such compound that is prevalent in the environment is bisphenol A (BPA). It is used to make polycarbonate bottles, including baby bottles and linings of cans, so exposure is widespread. Studies in rodents have implicated prenatal BPA exposure in a variety of health problems. We propose to use sheep as a model to examine the effects of prenatal BPA on complex behaviors. Similar work with prenatal testosterone exposure has demonstrated that sheep are an excellent model for such studies. Studies at our facility using sheep as a model for prenatal BPA exposure indicate that exposure to BPA leads to reproductive disruptions. However, no work has yet been done to examine the lifespan development of complex behaviors in a long-lived social species, such as ourselves. The goal of this study is to investigate the effects of prenatal BPA exposure and adolescent BPA exposure on complex behaviors in the sheep model across development. These behaviors will be correlated with physiological endpoints including steroid hormone levels, stress reactivity and body weight. Additionally, we will be examining steroid receptor number and distribution in areas of the brain associated with motivation and consummation of mating behavior. We hypothesize that prenatal exposure to BPA, at levels similar to the exposure of human fetuses, will disrupt a variety of complex behaviors including play, aggressive, motivational and sex behaviors over the lifespan of the animal. A second period of vulnerability is adolescence, so we will also examine the effects of BPA exposure during adolescence. Specific Aims 1 and 2 will examine complex behaviors throughout the lifespan of both male and female exposed to either prenatal, adolescent or prenatal and adolescent BPA compared to controls. Specific Aim 3 will examine the effect of BPA exposure during these vulnerable periods on steroid receptor number and distribution in areas of the brain associated with motivation and consummation of mating behavior. Results from this study are important for characterizing the behavioral and developmental effects of prenatal exposure to the endocrine disruptor BPA. This is an important issue in society, since many products that mothers and young children are exposed to contain BPA. PUBLIC HEALTH RELEVANCE: Bisphenol A (BPA), an endocrine disrupting chemical, is widely used in the industrialized world. Of particular concern is the effect during critical periods of reproductive development, including in utero and adolescent exposure to BPA, which can have detrimental physiological and behavioral effects. This project will examine the behavioral and neurochemical effects of prenatal BPA exposure in the sheep model.
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Project III - Steroidal and Metabolic Mediation of Reproductive Behavior
Alterations of complex behaviors in sheep by pre-natal bisphenol A exposure
Cognitive Modulation of Circadian Rhythms
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