Novel Animal Models of Impaired Social Behavior and Anxiety: A Role for MeCP2
Novel Animal Models of Impaired Social Behavior and Anxiety: A Role for MeCP2
批准号:
7979735
负责人:
TERESA M REYES
金额:
$24.0万
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:
2010-08-01 至 2012-04-30
关键词:
AdultAffectAmericanAmygdaloid structureAnimal ModelAnimalsAnxietyAnxiety DisordersAutistic DisorderBehaviorBehavioralBehavioral AssayBiological MarkersBoxingBrainBrain regionClinicalDNA MethylationDataDevelopmentDietDrug usageEmotionalEnvironmentEnvironmental Risk FactorEpidemiologyEpigenetic ProcessFatty acid glycerol estersFunctional disorderFutureGene ExpressionGenesGestational AgeGoalsHumanHypertensionHypothalamic structureInfantInfant DevelopmentInterventionLactationLinkMedialMethyl-CpG-Binding Protein 2MethylationModelingMothersMusNeuraxisNeuronsObesityOpioidOutcomePredispositionPrefrontal CortexPregnancyProtein-Restricted DietResidenciesRett SyndromeRiskRoleSchizophreniaSmall for Gestational Age InfantSocial BehaviorSocial DevelopmentSocial InteractionStructureSynaptic plasticitySystemTechnologyTestingTherapeutic InterventionTimeTissue-Specific Gene ExpressionTranscriptional Regulationadverse outcomeautism spectrum disorderbasebehavior changebrain behaviorchromatin immunoprecipitationcritical perioddisabilityfeedinggenome-widein uteromaternal cigarette smokingmodel developmentmouse methyl CpG binding protein 2mouse modelneurobehavioralneurobehavioral disorderneurobiological mechanismnoveloffspringpregnantprenatalpromoterpublic health relevanceresearch studyresponsesocialsynaptic function
中文摘要
描述(由申请人提供):环境因素有助于自闭症谱系障碍(ASD)的风险,需要更好地了解这些因素。子宫内的不良环境会显著影响发育中的中枢神经系统(CNS),并可能导致严重的神经行为结果,如ASD和焦虑。异常出生体重是子宫内不良环境的生物标志物,可能受到母体饮食或高血压、子宫或胎盘功能障碍以及母体吸烟和/或药物使用的影响。总的来说,小于胎龄(SGA)或大于胎龄(LGA)每年可能影响超过50万美国婴儿。重要的是,流行病学证据表明,SGA和LGA婴儿患ASD的风险增加。因此,常见的宫内环境条件可能使婴儿易患ASD和焦虑。 我们已经开发了两种基于子宫内不良环境的小鼠模型,通过分别给妊娠母鼠喂食低蛋白饮食或高脂肪饮食,导致SGA或LGA后代。这些SGA和LGA后代具有显著的行为和CNS基因表达差异,这表明多巴胺能、多巴胺能和阿片系统功能障碍,已知这些系统在ASD和焦虑中发生改变。重要的是,MeCP 2的表达水平在SGA和LGA后代中显著不同,将MeCP 2表达鉴定为对子宫内不良条件响应的潜在重要表观遗传机制。越来越多的证据表明MeCP 2对突触可塑性至关重要,突触功能的缺陷可能是ASD的一些组成部分的基础。此外,MeCP 2缺失导致人类Rett综合征,下丘脑特异性MeCP 2缺失导致小鼠社会行为改变。 在两个目标中,该提案将(1)检查SGA和LGA后代的社会和焦虑相关行为的发展,并比较怀孕或哺乳的关键时期,以及(2)使用全基因组染色质免疫沉淀测序(ChIP-Seq)和内侧前额叶皮层和杏仁核的分析技术分析SGA和LGA小鼠的全基因组基因表达变化和MeCP 2启动子驻留。我们假设SGA和LGA动物的社交和焦虑相关行为改变的风险增加,并且MeCP 2表达的改变有助于差异基因表达和不良神经行为结果。这些模型的开发将允许未来的神经生物学机制的研究,这些机制将子宫内不良环境与改变的社会和情感行为联系起来,最终目标是开发靶向治疗和干预措施。
公共卫生相关性:不良的产前条件会影响婴儿大脑的发育,增加神经行为障碍的风险,如自闭症谱系障碍(ASD)或焦虑。本申请中提出的实验将使用动物模型来检查大脑和行为对子宫内不良条件的反应,并可能确定可能的干预途径。
英文摘要
DESCRIPTION (provided by applicant): Environmental factors contribute to the risk for autism spectrum disorders (ASD), and a greater understanding of these factors is needed. An adverse in utero environment significantly impacts the developing central nervous system (CNS) and can result in serious neurobehavioral outcomes, such as ASD and anxiety. Abnormal birthweight is a biomarker of adverse in utero environment, and can be affected by maternal diet or hypertension, uterine or placental dysfunction, and maternal smoking and/or drug use. In total, small-for-gestational age (SGA) or large-for-gestational age (LGA) may affect over half a million American infants every year. Importantly, epidemiological evidence indicates that both SGA and LGA infants are at an increased risk for ASD. Thus, common intrauterine environmental conditions may predispose infants to ASD and anxiety. We have developed two mouse models based on an adverse in utero environment that result in SGA or LGA offspring by feeding pregnant dams a low protein diet or high fat diet, respectively. These SGA and LGA offspring have significant behavioral and CNS gene expression differences pointing to dysfunction in the dopaminergic, serotonergic and opioid systems, which are known to be altered in ASD and anxiety. Importantly, expression levels of MeCP2 are significantly different in both SGA and LGA offspring, identifying MeCP2 expression as a potential important epigenetic mechanism responsive to adverse in utero conditions. Accumulating evidence suggests that MeCP2 is critical for synaptic plasticity, and deficits in synaptic function may underlie some components of ASD. Further, MeCP2 deletion results in Rett Syndrome in humans and a hypothalamic specific MeCP2 deletion resulted in altered social behavior in mice. In two aims, this proposal will (1) examine the development of social and anxiety-related behaviors in SGA and LGA offspring and compare the critical periods of pregnancy or lactation and (2) analyze genome-wide gene expression changes in SGA and LGA mice and MeCP2 promoter residency using genome wide chromatin immunoprecipitation-sequencing (ChIP-Seq) and profiling technology in medial prefrontal cortex and amygdala. We hypothesize that both SGA and LGA animals are at increased risk for altered social and anxiety-related behaviors, and that alterations in expression of MeCP2 contribute to differential gene expression and adverse neurobehavioral outcomes. The development of these models will allow for future studies of neurobiological mechanisms that link adverse in utero environment and altered social and emotional behaviors with an eventual goal of the development of targeted therapeutics and interventions.
PUBLIC HEALTH RELEVANCE: Adverse prenatal conditions can affect the development of the infant brain, increasing the risk for neurobehavioral disabilities, such as autism spectrum disorders (ASD) or anxiety. Experiments proposed in this application will use animal models to examine brain and behavior changes in response to adverse in utero conditions and potentially identify possible avenues of intervention.
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会议论文
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