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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >CD154 is essential for protective immunity in experimental salmonella infection: evidence for a dual role in innate and adaptive immune responses.
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CD154 is essential for protective immunity in experimental salmonella infection: evidence for a dual role in innate and adaptive immune responses.

机译:CD154对于沙门氏菌感染实验中的保护性免疫至关重要:在先天性和适应性免疫反应中均具有双重作用。

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CD40-CD154 interactions are of central importance in the induction of humoral and cellular immune responses. In the present study, CD154-deficient (CD154-/-) mice were used to assess the role of CD40-CD154 interactions in regulating the immune response to a systemic Salmonella infection. Compared with C57BL/6 (CD154+/+) controls, CD154-/- mice were hypersusceptible to infection by an attenuated strain of Salmonella enterica serovar Typhimurium (S. typhimurium), as evidenced by decreased survival rate and mean time to death, which correlated with increased bacterial burden and persistence in target organs. CD154-/- mice exhibited a defect both in the production of IL-12, IFN-gamma, and NO during the acute phase of the disease and in the generation of Salmonella-specific Ab responses and Ig isotype switching. Furthermore, when CD154-/- animals were administered a sublethal dose of attenuated S. typhimurium and subsequently challenged with a virulent homologous strain, all mice succumbed to an overwhelming infection. Similar treatment of CD154+/+ mice consistently resulted in > or =90% protection. The lack of protective immunity in CD154-/- mice correlated with a decreased T cell recall response to Salmonella Ags. Significant protection against virulent challenge was conferred to presensitized CD154-/- mice by transfer of serum or T cells from immunized CD154+/+ mice. For best protection, however, a combination of immune serum and T cells was required. We conclude that intercellular communications via the CD40-CD154 pathway play a critical role in the induction of type 1 cytokine responses, memory T cell generation, Ab formation, and protection against primary as well as secondary Salmonella infections.
机译:CD40-CD154相互作用在诱导体液和细胞免疫应答中至关重要。在本研究中,使用CD154缺陷型(CD154-/-)小鼠评估CD40-CD154相互作用在调节对系统性沙门氏菌感染的免疫反应中的作用。与C57BL / 6(CD154 + / +)对照相比,CD154-/-小鼠对减毒肠炎沙门氏菌鼠伤寒沙门氏菌(S. typhimurium)的感染敏感,其存活率和平均死亡时间均降低,这与相关性相关具有增加的细菌负担和对目标器官的持久性。 CD154-/-小鼠在疾病的急性期在IL-12,IFN-γ和NO的产生以及沙门氏菌特异性Ab反应和Ig同种型转换的产生中均表现出缺陷。此外,当给CD154-/-动物施用亚致死剂量的减毒鼠伤寒沙门氏菌并随后用有毒的同源菌株攻击时,所有小鼠都死于压倒性感染。 CD154 + / +小鼠的相似治疗始终导致>或= 90%的保护。 CD154-/-小鼠缺乏保护性免疫,与对沙门氏菌Ag的T细胞召回反应降低有关。通过从免疫的CD154 + / +小鼠转移血清或T细胞,可为预敏CD154-/-小鼠提供有效的抗病毒攻击保护。但是,为了获得最佳保护,需要结合免疫血清和T细胞。我们得出结论,通过CD40-CD154途径的细胞间通讯在诱导1型细胞因子应答,记忆T细胞生成,Ab形成以及对原发性和继发性沙门氏菌感染的保护中起关键作用。

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