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中文摘要
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淋巴组织中的辅助性T细胞(Th)根据其位置发育成不同的Th亚群 调节炎症和防御。在肠粘膜中,主要的表型是调节型。 T(Treg)细胞。粘膜佐剂,通过超越粘膜Treg细胞的耐受影响,是独特的工具 用于解剖免疫调节和炎症。我们的初步数据显示霍乱毒素(CT) 相关化合物通过cAMP依赖和IL-6/转化生长因子(3-非依赖性)诱导Thi7细胞分化 路径。阐明腺酰环化酶毒素和其他腔微生物的作用机制 产品(TLR配体)刺激和调节粘膜微环境以促进效应器Thi7 响应,我们在目标1中提出定义口服CT是如何促进Th17促进树突状细胞的 细胞(DC)并抑制促进Treg的DC。我们将探索cAMP和维甲酸在这些过程中的作用 过程,并表征由不同的mln DC亚群引起的后续Th细胞应答。在……里面 目的2、研究人外周血中CD4T细胞的表型、稳定性和谱系分化标志物。 体外和体内分化的CT诱导的Thi7亚群,并评估炎症/调节 口服CT对Thi7细胞介导性结肠炎预后的影响目标3将探讨 由CT激活的DC在粘膜Thi7反应中产生CGRPP。目标4将调查潜在的 TLR刺激在CT诱导Thi7分化中的作用剖析CT和CT的影响 其他cAMP诱导化合物对粘膜DC成熟的影响将极大地拓宽我们对 粘膜Th反应的产生。通过解剖CT诱导的粘膜Thi7的谱系稳定性 细胞,它们的效应器功能,谱系承诺,运输以及它们与其他Th细胞的相互作用,我们将 增加我们对粘膜部位炎症和免疫调节的了解。数据 这些研究的结果可能有助于设计新的粘膜炎症治疗方法 疾病和新型粘膜佐剂。 相关性(请参阅说明): 粘膜佐剂对于口服疫苗接种策略的成功至关重要,因为抗原暴露本身就能做到。 而不是引发保护性免疫。这些研究旨在增加对这些机制的理解。 通过这种佐剂促进保护性免疫,并将产生对自然 肠道维持正常免疫平衡的机制。
英文摘要
T helper (Th) cells in lymphoid tissues, depending on their location, develop into various Th subsets to regulate inflammation and defense. In the intestinal mucosa, fheir dominant phenotype is that of regulatory T (Treg) cells. Mucosal adjuvants, by overriding the tolerizing impact of mucosal Treg cells, are unique tools for dissecting immune regulation and inflammafion. Our preliminary data indicate that cholera toxin (CT) and related compounds induce Thi7 cell differentiation via a cAMP-dependent and IL-6/TGF(3-independent pathway. To elucidate the mechanism by which adenylyl cyclase toxins and other luminal microbial products (TLR ligands) stimulate and modulate the mucosal microenvironment to promote effector Thi7 responses, we propose in Aim 1 to define how oral CT administrafion enhances Th17-promoting dendritic cells (DC) and suppresses Treg-promoting DC. We will explore the role of cAMP and retinoic acid in these processes, and characterize the subsequent Th cell response provoked by different MLN DC subsets. In Aim 2, we will characterize the phenotype, stability and lineage differentiation markers of CD4 T cells from in vitro- and in vivo-differentiated CT-induced Thi7 subsets, and evaluate the infiammatory/regulatory impact of orally delivered CT on the outcome of Thi7 cell-mediated colitis. Aim 3 will explore the role of CGRPP produced by CT-activated DC in a mucosal Thi7 response. Aim 4 will investigate the potential contributing role of TLR stimulation to CT-induced Thi7 differentiation. Dissecting the impact of CT and other cAMP-inducing compounds on mucosal DC maturation will significantiy broaden our knowledge on the generation of mucosal Th responses. By dissecting the lineage stability of CT-induced mucosal Thi7 cells, their effector function, lineage commitment, trafficking and their interactions with other Th cells, we will increase our understanding of the regulation of inflammation and immunity at mucosal sites. The data generated in these studies may help to design new therapeutic approaches for mucosal inflammatory diseases and novel mucosal adjuvants. RELEVANCE (See instmctions): Mucosal adjuvants are critical for success of oral vaccination strategies, since antigen exposure alone does not elicit protective immunity. The studies are designed to increase the understanding of the mechanisms by which such adjuvants promote protective immunity, and will also generate new insights into the natural mechanisms by which the gut maintains normal immune homeostasis.
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A novel pathway of Th17/Th2 induction: The role of cAMP signaling in DC
Control of mucosal immunity by Gas- vs Gai-linked GPCR signaling in dendritic cells
Control of mucosal immunity by Gas- vs Gai-linked GPCR signaling in dendritic cells
Th17 subsets: Differential roles in immune defense mechanisms at the G-I mucosa
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