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Discovering the Role of Commensal Microbes on Primary B Lymphocyte Development

Discovering the Role of Commensal Microbes on Primary B Lymphocyte Development
发现共生微生物对原代 B 淋巴细胞发育的作用
批准号:
8967563
负责人:
Duane R. Wesemann
金额:
$69.37万
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:
2014-12-01 至 2019-11-30

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):现代免疫学的一个基本目标是了解促进共生微生物和宿主免疫系统之间稳态平衡的因素。尽管已经做了大量的工作来了解共体在形成T细胞反应中的作用,但在了解共体如何影响B淋巴细胞发育和相关抗体多样化方面仍然存在很大的差距。这一差距的持续存在是一个重要的问题,因为在填补之前,我们对体液免疫适应性以及对过敏和炎症性疾病的易感性的调节原理的理解将仍然不完整。该建议的总体目标是确定共生微生物如何影响原代B细胞发育和免疫前免疫球蛋白(Ig)多样化。根据申请人最近的研究结果,中心假设是共生微生物通过宿主感觉仪器提供输入,调节宿主肠道黏膜的早期B细胞发育活动,从而使腔内抗原具有局部影响初级Ig库的能力。这与其他一些物种,如兔子和羊,在出生后早期利用肠道作为主要Ig多样化的重要场所的观察结果一致。拟议研究的基本原理是,一旦完成,该领域将朝着更深入地了解共生体在免疫稳态中的作用的方向垂直发展,并将为进一步探索可能针对的可改变的环境因素打开大门,从而产生新的和创新的方法来影响与抗体生产相关的各种健康问题。使用新技术和现有技术,该提案的三个目标将建立在申请人最近的工作基础上。随着离体共培养的部署以及体内标记方法的建立,目的1将测试共生体影响肠道和骨髓支持系统以刺激早期B系细胞发育的概念,并有望确定肠道支持机制,使早期B系细胞存活并对微生物输入作出反应。通过使用无菌和非生菌设施,目标2将确定微生物组成在多大程度上对形成初级微生物库具有特定影响。利用复杂的转基因小鼠模型和强大的成像技术,aim 3将评估幼年小鼠肠道抗原进入肠道固有层并与新鲜产生的细胞结合Ig相互作用的程度。提出的研究具有以下三个重要原因:首先,它有望提供更完整的宿主:微生物相互作用在免疫调节中的一般原理;其次,确定生命早期可改变的环境暴露对主要Ig基因库的影响程度将是第一步;第三,它提供了一个重要的组成部分,以建立一个平台,测试未来关于特定共生微生物生态对下游抗体对病原体、过敏原和疫苗的反应的影响的假设。
英文摘要
DESCRIPTION (provided by applicant): A fundamental goal in modern immunology is to understand the factors that contribute to the homeostatic balance between commensal microbes and the host immune system. Although a great deal has been done to understand the role of commensals in shaping T cell responses, a large gap remains in understanding how commensals impact B lymphocyte development and associated antibody diversification. Continued existence of this gap is an important problem because until filled, our understanding of regulatory principles underlying humoral immune fitness as well as vulnerability to allergic and inflammatory diseases will remain incomplete. The overall objective of this proposal is to determine how commensal microbes affect primary B cell development and pre-immune immunoglobulin (Ig) diversification. Based on recent findings from the applicant, the central hypothesis is that commensal microbes provide inputs through host sensory instruments to regulate early B cell developmental activities in the host gut mucosa, thus empowering luminal antigens with the capacity to influence the primary Ig repertoire locally. This is consistent with observations that several other species, such as rabbits and sheep, utilize the intestine as a significant site for primary Ig diversification early in post-natal life. The rationale for the proosed research is that, once accomplished, the field will move vertically towards a greater understanding of the role of commensals in immune homeostasis and will open the door to further exploration of modifiable environmental factors that could be targeted, resulting in new and innovative approaches to influence a variety of health issues relevant to antibody production. Using both new as well as established technologies, this proposal's three aims will build upon the applicant's recent work. With the deployment of ex vivo co-culture as well as established in vivo labeling methods, aim 1 will test the notion that commensals influence both gut-resident as well as bone marrow support systems to stimulate early B lineage cell development and is expected to identify the gut-resident support mechanisms enabling early B lineage cells to survive and respond to microbial input. With the use of germ-free and gnotobiotic facilities, aim 2 will determine the extent to which microbe composition has specific effects to shape the primary Ig repertoire. With sophisticated genetically modified mouse models as well as powerful imaging technologies, aim 3 will evaluate the degree to which luminal antigens gain access to the intestinal lamina propria and interact with freshly-produced, cell-bound Ig in young mice. The proposed research is significant for the following three reasons - first, it promises to provide a more complete picture of the general principles of host:microbe interactions in immune regulation; second, it will be a first step to identify the extent to which primary Ig repertoires can be influenced by modifiable environmental exposures early in life; and third, it provides an essential component to establish a platform for testing future hypotheses regarding the effect of specific commensal microbe ecologies on downstream antibody responses to pathogens, allergens and vaccines.
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Antibody Durability Dynamics
  • 批准号:
    10501415
  • 项目类别:
  • 资助金额:
    $68.64万
  • 财政年份:
    2022
  • 负责人:
    Duane R. Wesemann
  • 依托单位:
Understanding IgE Biology
  • 批准号:
    10375189
  • 项目类别:
  • 资助金额:
    $68.65万
  • 财政年份:
    2022
  • 负责人:
    Duane R. Wesemann
  • 依托单位:
Understanding IgE Biology
  • 批准号:
    10589776
  • 项目类别:
  • 资助金额:
    $79.17万
  • 财政年份:
    2022
  • 负责人:
    Duane R. Wesemann
  • 依托单位:
Antibody Durability Dynamics
  • 批准号:
    10654056
  • 项目类别:
  • 资助金额:
    $68.64万
  • 财政年份:
    2022
  • 负责人:
    Duane R. Wesemann
  • 依托单位:
海外基金