Prenatal diet, PM2.5 and programming of the infant autonomic response
Prenatal diet, PM2.5 and programming of the infant autonomic response
批准号:
8477196
负责人:
Rosalind J Wright
金额:
$15.79万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-10 至 2015-05-31
关键词:
AcidsAddressAdultAffectAgeAir PollutantsAir PollutionAmylasesAntioxidantsAscorbic AcidAsthmaAttentionAttenuatedAutonomic nervous systemBiologicalBiological MarkersBirthCarbon BlackCardiovascular DiseasesCardiovascular PhysiologyChemicalsChild health careChildhoodChronicDevelopmentDevelopmental ProcessDietDiet RecordsDietary FactorsDietary intakeDiseaseEnrollmentEnvironmental ExposureEnvironmental Risk FactorEpidemiologic StudiesEquilibriumExposure toF2-IsoprostanesFlavonoidsFoodFrequenciesFundingHealthHypersensitivityImmune systemInfantInfant autonomic nervous systemInflammationIntakeInterventionLaboratoriesLifeLinkMeasuresMediatingMetabolic syndromeMetabolismMicronutrientsModelingMonitorMothersNervous System PhysiologyNutritionalNutritional statusObesityOmega-3 Fatty AcidsOutcomeOxidantsOxidative StressOxidative Stress InductionParticulatePatternPerinatalPhenotypePhysiologicalPlasmaPlayPollutionPolyunsaturated Fatty AcidsPregnancyPropertyQuestionnairesRecordsRegulationResearchRiskRoleSalivarySinus ArrhythmiaSourceStressSystemTobacco smokeTriad Acrylic ResinUmbilical Cord BloodUrineadverse outcomebasebiological adaptation to stresscohortdesigndietary constituentdisorder riskfetalfetal programmingimmunoregulationin uteroindexinginsightintergenerationalland usematernal serummaternal stressparticleperinatal healthpollutantprenatalprenatal exposureprenatal stressprogramsrespiratoryresponsestressortheoriestrafficking
中文摘要
描述(由申请人提供):可塑性是关键生命期内环境暴露的结果,影响协调潜在发育过程的生理系统。自主神经系统(ANS)是一个公认的关键调节系统,容易受到围产期环境规划的轨迹增强儿科和成人疾病的风险。流行病学研究,检查候选的环境因素,程序的ANS开始在子宫内,并探讨假定的潜在机制是稀缺的。虽然环境影响是多种多样的,但在胎儿编程和自主神经紊乱方面引起关注的因素包括颗粒空气污染和母体饮食(例如,氧化剂/抗氧化剂平衡)。虽然这些因素通常被单独考虑,但不断发展的理论强调了研究其综合影响的重要性。与颗粒物污染相关的不良后果的生物学机制包括ANS失衡,氧化应激的诱导被认为具有核心作用。怀孕期间空气污染对母亲的影响可能会破坏胎儿-胎盘氧化剂/抗氧化剂的平衡,并对发育中的ANS产生影响。膳食因素可能对空气污染物的影响起调节作用。这个研究小组利用哈佛代际压力机制规划(PRISM)研究,一个产前城市队列,增加营养措施,研究和检查产前短期(7天平均值)和长期暴露于环境颗粒污染[PM2.5,黑碳(BC)作为交通相关颗粒的标志]和6个月大婴儿的自主神经功能之间的关联。ANS表型通过神经内分泌学方法分析基础非卧床条件下和实验室应激源后的唾液淀粉酶水平进行索引。电生理学方法也被用来分析ANS反应性[呼吸性窦性心律失常(RSA)索引]响应于相同的实验室应激源。其次,将在母体产前尿液和脐带血中检查长期和短期产前环境颗粒污染、氧化应激生物标志物(F2-异前列烷)和婴儿自主神经功能之间的关联,以探索产前污染和婴儿自主神经平衡之间的关联是否通过增强的氧化应激介导。最后,将检查环境颗粒污染对6个月奥尔兹ANS功能的影响,以确定这些影响是否受到母亲产前饮食因素的影响,这些因素可能会保护婴儿免受氧化应激[例如,?- 3脂肪酸和抗氧化微量营养素(例如,维生素C和E以及类黄酮)],并结合食物频率问卷(FFQ)、妊娠期间两次获得的饮食记录以及产前确定的选择的母体血清/血浆生物标志物。
英文摘要
DESCRIPTION (provided by applicant): Plasticity is a consequence of environmental exposures during critical life periods affecting physiological systems orchestrating underlying developmental processes. The autonomic nervous system (ANS) is a putative key regulatory system vulnerable to perinatal environmental programming toward trajectories of enhanced pediatric and adult disease risk. Epidemiological studies that examine candidate environmental factors that program the ANS starting in utero and explore putative underlying mechanisms are scarce. While environmental influences are diverse, factors gaining attention with respect to fetal programming and autonomic disruption include particulate air pollution and maternal diet (e.g., oxidant/antioxidant balance). While these factors have generally been considered independently, evolving theory underscores the importance of studying their integrated effects. Biological mechanisms responsible for adverse outcomes associated with particulate pollution include ANS imbalance and the induction of oxidative stress is thought to have a central role. Air pollution effects on the mother during pregnancy may disrupt fetal-placental oxidant/antioxidant balance with implications for the developing ANS. Dietary factors may play a modulating role on effects of air pollutants. This investigative team leveraged the Harvard Programming of Intergenerational Stress Mechanisms (PRISM) study, a prenatal urban cohort, to add nutritional measures to study and examine associations among prenatal short-term (7-day mean) and chronic exposure to ambient particulate pollution [PM2.5, black carbon (BC) as a marker of traffic-related particles] and autonomic function in 6-month old infants. ANS phenotyping is indexed through a neuroendocrinologial approach analyzing salivary ¿-amylase levels during basal ambulatory conditions and following an in-laboratory stressor. An electrophysiological approach is also employed to analyze ANS reactivity [indexed by respiratory sinus arrhythmia (RSA)] in response to the same in-laboratory stressor. Secondly, associations among long- and short- term prenatal ambient particulate pollution, biomarkers of oxidative stress (F2-isoprostanes) will be examined in maternal prenatal urine and cord blood, and infant autonomic functioning to explore whether associations between prenatal pollution and infant autonomic balance are mediated through enhanced oxidative stress. Finally, ambient particulate pollution will be examined on ANS functioning in 6-month olds to see if the effects are modified by maternal prenatal dietary factors that may protect the infant from oxidative stress [e.g., ?-3 fatt acids and antioxidant micronutrients (e.g., vitamins C and E and flavonoids)] ascertained using a triad approach incorporating a food frequency questionnaire (FFQ), dietary records obtained twice during pregnancy, and select maternal serum/plasma biomarkers ascertained prenatally.
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会议论文
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