NSF PRFB FY22: Gut instinct: environmental and reproductive influences on microbiome contributions to neuroinflammation
NSF PRFB FY22: Gut instinct: environmental and reproductive influences on microbiome contributions to neuroinflammation
批准号:
2208957
负责人:
Megan Massa
金额:
$13.8万
依托单位:
依托单位国家:
美国
项目类别:
Fellowship Award
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-07-01 至 2025-06-30
中文摘要
这一行动为NSF 2022财年生物学博士后研究奖学金提供了资金,综合研究调查了基因组、环境和表型之间相互作用的生命规则。该奖学金支持研究员的研究和培训,这些研究员将以创新的方式为生活规则领域做出贡献。肠道是数万亿细菌的家园。这些微生物,统称为微生物组,与其宿主的身体一起工作。先前的研究表明,根据宿主生理,肠道微生物群功能可以被外部线索改变,这些变化会导致宿主体内的后果。这个项目以斑纹雀鸟为模型,探索压力(一个环境变量)和来自卵巢和睾丸的激素(一个内部变量)如何改变微生物群,从而改变宿主大脑的炎症。尽管肠道微生物群对行为和健康产生了深远的影响,但了解微生物群如何影响大脑的许多复杂性仍未被探索。这个项目将提供关于各种环境和内部条件如何改变这种共生影响大脑的额外知识。该研究员还将制定和评估改进的方案,以提高本科生和高中生的实验室可及性。该项目的第一个目标将确定环境压力是否会以不同的方式改变男性和女性的微生物群,以改变神经炎症。雄性和雌性雀类,无论有没有微生物群,都将被安置在社会隔离或集体住房中。微生物组的组成和功能将分别通过聚合酶链式反应(PCR)和碳水化合物利用分析进行评估。然后,所有动物都将受到穿透性脑损伤,并通过定量聚合酶链式反应和免疫反应性分析促炎和抗炎途径来评估它们的神经免疫反应。第二个目的是检查性腺激素对微生物组组成和功能的贡献,以及随后的神经炎症对穿透性脑损伤的反应。如前所述,在评估微生物组和神经炎症特征之前,动物将接受药物治疗,以改变雄激素或雌激素水平。除了这项研究,这位研究员还将致力于培养在以本科为主的学院任教和开发适合的研究项目所需的技能。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
This action funds an NSF Postdoctoral Research Fellowship in Biology for FY 2022, Integrative Research Investigating the Rules of Life Governing Interactions Between Genomes, Environment and Phenotypes. The fellowship supports research and training of the fellow that will contribute to the area of Rules of Life in innovative ways. The gut is home to trillions of bacteria. These microorganisms, collectively known as the microbiome, work together with their host’s body. Prior research has shown that, depending on host physiology, gut microbiome function can be altered by outside cues, with these changes leading to consequences in the host body. Using zebra finch birds as a model, this project explores how stress (an environmental variable) and hormones from the ovaries and testes (an internal variable) change the microbiome and thus alter host brain inflammation. Despite far-reaching consequences of the gut microbiome to behavior and health, many complexities of understanding how the microbiome affects the brain remain unprobed. This project will provide additional knowledge of how various environmental and internal conditions can alter this symbiosis to affect the brain. The Fellow will also development and assess improved protocols to increase lab accessibility for undergraduates and high school students. The first aim of this project will determine whether environmental stress alters the microbiome differently in males vs. females to alter neuroinflammation. Male and female finches, with or without microbiome presence will be placed in social isolation or group housing. Microbiome composition and function will be assessed via polymerase chain reaction (PCR) and carbohydrate utilization analysis, respectively. All animals will then be subjected to penetrating brain injury and their neuroimmune responses assessed via analysis of pro- and anti-inflammatory pathways by quantitative PCR and immunoreactivity. The second aim examines the contributions of gonadal hormones to microbiome composition and function and subsequent neuroinflammation in response to penetrating brain injury. Animals will be treated with pharmacological agents to alter androgen or estrogen levels before assessing the microbiome and neuroinflammation profiles as previously stated. In addition to this research, the Fellow will also be working towards developing the skills necessary to teach at and develop a research program suitable for a primarily undergraduate institution.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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