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GUT MICROBIOTA AND ANXIETY: A MECHANISTIC STUDY OF HUMAN INFANTS

GUT MICROBIOTA AND ANXIETY: A MECHANISTIC STUDY OF HUMAN INFANTS
肠道微生物群和焦虑:人类婴儿的机制研究
批准号:
8880291
负责人:
Rebecca Knickmeyer
金额:
$25.37万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-07-01 至 2016-08-03

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):对啮齿动物的研究表明,肠道微生物组影响神经发育和随后的焦虑相关行为,这些行为与广泛的精神疾病有关。然而,在将动物数据转化为临床方面存在一个根本性的差距:没有研究直接测试微生物定植的差异是否会影响人类焦虑相关行为。此外,微生物群改变大脑发育的机制和途径尚不清楚。我们的长期目标是确定肠道微生物群的定植如何影响人类大脑发育和后来患精神疾病的风险。本应用程序的目的是确定微生物定殖如何影响1岁时的焦虑行为,并通过高分辨率磁共振成像(MRI)、扩散张量成像(DTI)和静息状态功能磁共振成像(rfcMRI)确定介导这种关系的信号机制和神经回路。这项研究的基本原理是,肠道微生物群的调节可以使疾病早期的神经发育轨迹正常化,最终预防精神疾病的发作或降低其严重程度。我们将通过五个具体目标来实现我们的目标。在R21阶段,我们将:1)确认在2周龄和1岁的粪便样本中存在足够的细菌多样性,以测试与焦虑行为、大脑发育和假设的信号机制的关系;2)证实假设的信号机制可以在2周和1岁时成功探测。在R33阶段,我们将:3)确定婴儿时期微生物定植模式与1岁时焦虑行为的关系;4)确定人类婴儿肠道微生物群与焦虑行为之间的神经回路;5)确定微生物群影响婴儿神经发育和焦虑行为的信号机制。我们的中心假设是,不同细菌定植模式的婴儿的焦虑相关行为会有所不同,这种关系将通过杏仁核、海马体和内侧前额皮质的变化来调节。我们进一步假设微生物群将通过改变促炎细胞因子和皮质醇反应性来影响神经发育,可能通过对色氨酸代谢途径的犬尿氨酸臂的协同作用。该应用程序的创新之处在于,它将是第一个测试微生物成分是否以及如何与人类焦虑行为相关的研究。这项拟议的研究意义重大,因为它是开发新的干预措施以促进健康微生物群和降低精神疾病风险的重要的第一步。
英文摘要
DESCRIPTION (provided by applicant): Studies in rodents show that the gut microbiome influences neurodevelopment and subsequent anxiety-related behaviors which are relevant to a wide range of psychiatric illnesses. However, there is a fundamental gap in translating animal data into the clinic: no study has directly tested whether differences in microbial colonization impact anxiety-related behavior in humans. Furthermore, the mechanisms and pathways by which microbiota alter brain development are poorly understood. Our long-term goal is to determine how colonization of the gut microbiome impacts human brain development and later risk for psychiatric illness. The objective of this application is to determine how microbial colonization impacts anxious behavior at 1 year of age and to identify signaling mechanisms and neural circuits mediating this relationship using high resolution magnetic resonance imaging (MRI), diffusion tensor imaging (DTI) and resting state fMRI (rfcMRI). The rationale for the proposed research is that modulation of the gut microbiota could normalize neurodevelopmental trajectories early in the disease process, ultimately preventing the onset of psychiatric illness o reducing its severity. We will achieve our objective through 5 specific aims. In the R21 phase we will: 1) Confirm that sufficient bacterial diversity is present in fecal samples at 2 weeks and 1 year of age to test relationships with anxious behavior, brain development, and hypothesized signaling mechanisms; and 2) Confirm that hypothesized signaling mechanisms can be successfully probed at 2 weeks and 1 year of age. In the R33 phase we will: 3) Determine how patterns of microbial colonization in infancy relate to anxious behavior at 1 year of age; 4) Identify neural circuits which mediate associations between gut microbiota and anxious behavior in human infants; and 5) Determine the signaling mechanisms by which microbiota affect neurodevelopment and anxious behavior in human infants. Our central hypothesis is that anxiety-related behaviors will differ between infants with different patterns of bacterial colonization and this relationship will be mediated by changes in the amygdala, hippocampus, and medial prefrontal cortex. We further hypothesize that microbiota will impact neurodevelopment by altering pro-inflammatory cytokines and cortisol reactivity, potentially through synergistic effects on the kynurenine arm of the tryptophan metabolic pathway. The application is innovative in that it will be the first study to test if and how microbial compositin relates to anxious behavior in a human cohort. The proposed research is significant in that it is an essential first-step in developing novel interventions to promote a healthy microbiome and reduce risk for psychiatric illness.
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Does microbiome composition moderate GI and CNS function in a VPA-induced mouse model of autism?
Prenatal Maternal Stress, Exposure to Environmental Chemicals, and Cognitive Development: Potential Roles for Inflammation and the Developing Gut Microbiome
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    2022
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Genetic Influences on Infant Brain Development: Understanding the Developmental Origins of Mental Illness
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