课题基金 / 基金详情

Anti-viral immune responses in lymph node

Anti-viral immune responses in lymph node
淋巴结的抗病毒免疫反应
批准号:
8121530
负责人:
ULRICH H VON ANDRIAN
金额:
$239.33万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-08-15 至 2013-07-31

项目摘要

项目成果

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中文摘要
翻译
描述(申请人提供):这个名为“淋巴中的抗病毒免疫反应”的项目旨在更深入地了解由淋巴中的病毒抗原引发的免疫事件的诱导和调节。许多病毒和大多数传统疫苗通过皮肤进入人体,并通过淋巴管传播到排出淋巴结节。这些器官被认为在周围感染的适应性免疫反应中起着关键作用;因此,了解LNS内发生的细胞和分子相互作用将提供有助于改进疫苗开发的见解。淋巴传播的异物进入LNS后被抗原提呈细胞(APC)捕获和处理,然后将这些物质递送给B和T细胞,以激发效应器反应和长期的免疫记忆。确定淋巴来源的抗原物质在淋巴结节中如何处理的规则,特别是在持续感染的情况下,以及哪些细胞和分子必须相互作用才能引起保护性免疫反应(或未能做到这一点)的规则知之甚少。为什么一些病毒(例如小鼠的VSV)会诱导有效的多管齐下的保护性免疫反应来消灭病原体,而另一些病毒(例如流感)只会产生短暂的保护性免疫,而少数病毒(例如人类的艾滋病毒)则通过不断颠覆并最终耗尽宿主的抗病毒防御来建立长期存在?这些不同结果背后的机制可能是多因素的,并取决于单个病毒与宿主相互作用的方式的差异。为了探索活体动物中这些相互作用的动态,该计划的所有组成部分项目将在完整的LN中使用多光子活内显微镜(MP-IVM),这将在活内显微镜核心中提供,用于对淋巴携带的病毒粒子的先天和适应性免疫反应进行时间和空间分辨率的可视化。在项目1中,冯·安德里安博士将探索使用VSV和其他几种病毒病原体对淋巴传播病毒感染的先天和获得性免疫反应。在项目2中,Sharpe和Wherry博士将可视化负共刺激通路PD-1:PD-L1、PD-1:PD-L2和PDL1:B7.1在抗流感和LCMV抗病毒免疫中的作用。在项目3中,卡罗尔博士将剖析补体和补体受体在流感病毒体液免疫中的作用。最后,在项目4中,光泽博士。Mempel和Tager将描述人源化小鼠感染艾滋病毒的淋巴结中的细胞动力学和病毒传播。希望从这些高度互动和协同的实验中获得的机械性见解将导致抗病毒疫苗的新的、以证据为基础和知识驱动的开发战略。
英文摘要
DESCRIPTION (provided by applicant): This Program entitled "Anti-viral Immune Responses in Lymph Nodes" seeks to gain a deeper understanding of the induction and regulation of immunological events that are elicited by viral antigens in lymph nodes (LNs). Many viruses and most conventional vaccines enter the body through the skin and travel via lymphatics to draining LNs. These organs are believed to have a critical role in the adaptive immune response to peripheral infections; therefore, understanding the cellular and molecular interactions that occur within LNs will provide insights that may be useful for improved vaccine development. Lymph-borne foreign matter entering LNs is captured and processed by antigen-presenting cells (APCs), which then present this material to B and T cells to elicit effector responses and long-lived immunological memory. The rules that determine how lymph-derived antigenic material is handled in LNs, especially in the context of ongoing infections, and what cells and molecules must interact to elicit a protective immune response (or fail to do so) are poorly understood. Why do some viruses (e.g. VSV in mice) induce a potent, multi-pronged protective immune response that eliminates the pathogen, while others (e.g. influenza) generate only transient protective immunity, and a few (e.g. HIV in humans) establish a chronic presence by continuously subverting and eventually exhausting the host's anti-viral defenses? The mechanisms behind these different outcomes are likely multi-factorial and depend upon differences in the way individual viruses interact with their hosts. To explore the dynamics of these interactions in living animals, all component projects of this Program will employ multi-photon intravital microscopy (MP-IVM) in intact LNs that will be offered in the Intravital Microscopy Core for time-and space-resolved visualization of the innate and adaptive immune response to lymph-borne virions. In Project 1, Dr. von Andrian will explore innate and adaptive immune responses to lymph-borne viral infections using VSV and several other viral pathogens. In Project 2. Drs. Sharpe and Wherry will visualize the effects of the negative costimulatory pathways, PD-1:PD-L1, PD-1:PD-L2 and PDL1 :B7.1 on antiviral immunity to influenza and LCMV. In Project 3. Dr. Carroll will dissect the role of complement and complement receptors in humoral immunity to influenza virus. Finally, in Project 4, Drs. Luster. Mempel and Tager will characterize the cellular dynamics and viral dissemination in HIV-infected lymph nodes of humanized mice. It is hoped that the mechanistic insights gained from these highly interactive and synergistic experiments will lead to new, evidence-based and knowledge-driven development strategies for anti-viral vaccines.
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