首页> 外文期刊>The journal of immunology >Mucosally Delivered Salmonella Typhi Expressing the Yersinia pestis F1 Antigen Elicits Mucosal and Systemic Immunity Early in Life and Primes the Neonatal Immune System for a Vigorous Anamnestic Response to Parenteral F1 Boost
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Mucosally Delivered Salmonella Typhi Expressing the Yersinia pestis F1 Antigen Elicits Mucosal and Systemic Immunity Early in Life and Primes the Neonatal Immune System for a Vigorous Anamnestic Response to Parenteral F1 Boost

机译:鼠伤寒沙门氏菌表达鼠疫耶尔森氏菌F1抗原,可在生命早期诱导粘膜和全身免疫,并引发新生儿免疫系统对胃肠外F1刺激的强烈回忆。

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Neonates respond poorly to conventional vaccines. This has been attributed, in part, to the immaturity of neonatal dendritic cells that lack full capacity for Ag presentation and T cell stimulation. We engineered an attenuated Salmonella Typhi strain to express and export the F1 Ag of Y. pestis ( S . Typhi(F1)) and investigated its immunogenicity early in life using a heterologous prime-boost regimen. Newborn mice primed intranasally with a single dose of S . Typhi(F1) elicited mucosal Ab- and IFN-γ-secreting cells 1 wk after immunization. They also developed a potent and fast anamnestic response to a subsequent parenteral boost with F1-alum, which surpassed those of mice primed and boosted with S . Typhi(F1) or F1-alum. Neonatal priming with S . Typhi(F1), as opposed to priming with F1-alum, resulted in a more balanced IgG2a/IgG1 profile, enhanced avidity maturation and stimulation of B memory cells, and strong Th1-type cell-mediated immunity. S . Typhi(F1) enhanced the activation and maturation of neonatal CD11c+ dendritic cells, shown by increased expression of CD80, CD86, CD40, and MHC-II cell surface markers and production of proinflammatory cytokines IL-12, TNF-α, IL-6, and MCP-1. S . Typhi(F1)-stimulated neonatal DC had improved capacity for Ag presentation and T cell stimulation in vitro and induced F1-specific CD4+ and CD8+ T cell responses when adoptively transferred to newborn mice. Mucosal immunization with S . Typhi expressing a foreign Ag effectively primes the neonatal immune system for potent, fast, and broader responses to a parenteral Ag boost. Such a strategy can prevent infectious diseases, including those considered biowarfare threats, early in life.
机译:新生儿对常规疫苗的反应较差。这部分归因于新生儿树突状细胞的不成熟,其缺乏对Ag呈递和T细胞刺激的完整能力。我们设计了减毒鼠伤寒沙门氏菌菌株来表达和输出鼠疫耶尔森氏菌的F1 Ag(鼠伤寒沙门氏菌(F1)),并使用异源初免-升压方案在生命早期调查了其免疫原性。新生小鼠鼻内注射单剂量的S。免疫后1周,Typh(F1)引起粘膜Ab和IFN-γ分泌细胞。他们还对随后的F1-alum肠胃外加强免疫产生了快速有效的记忆消除作用,超过了用S1引发和加强免疫的小鼠。 Typhi(F1)或F1-alum。新生儿S引发。 Typhi(F1),而不是用F1-alum引发,导致更平衡的IgG2a / IgG1谱图,增强了B记忆细胞的亲和力成熟度和刺激性,以及强大的Th1型细胞介导的免疫力。 。 Typhi(F1)增强了新生CD11c +树突状细胞的活化和成熟,其表现为CD80,CD86,CD40和MHC-II细胞表面标志物的表达增加以及促炎细胞因子IL-12,TNF-α,IL-6的产生,和MCP-1。 。 Typhi(F1)刺激的新生儿DC在体外具有更好的Ag呈递和T细胞刺激能力,并且过继转移到新生小鼠后诱导F1特异性CD4 +和CD8 + T细胞反应。用S进行粘膜免疫。表达外来抗原的伤寒有效地激发了新生儿的免疫系统,从而对肠胃外的抗原刺激产生了有效,快速和广泛的反应。这种策略可以在生命早期预防传染病,包括那些被视为生物战威胁的传染病。

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