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CpG 寡脱氧核苷酸可以规避新生儿对疫苗反应的 Th2 极化,但可能无法完全重定向由新生儿初次免疫建立的 Th2 反应。

CpG oligodeoxynucleotides can circumvent the Th2 polarization of neonatal responses to vaccines but may fail to fully redirect Th2 responses established by neonatal priming.

作者信息

Kovarik J, Bozzotti P, Love-Homan L, Pihlgren M, Davis H L, Lambert P H, Krieg A M, Siegrist C A

机构信息

World Health Organization Collaborating Centre for Neonatal Vaccinology, University of Geneva, Geneva, Switzerland.

出版信息

J Immunol. 1999 Feb 1;162(3):1611-7.

PMID:9973420
Abstract

Neonatal murine responses to a panel of conventional vaccines differ qualitatively from adult responses by a particular polarization toward a Th2 pattern and a frequent limitation of the Th1 and CTL responses required for protection against intracellular microorganisms. In contrast, DNA vaccines induce adult-like Th1/CTL neonatal responses against the same vaccine Ags. In this report, we show that this can be related to their content in unmethylated CpG motifs. Oligodeoxynucleotides (ODN) containing CpG motifs activate neonatal APCs to produce IL-12 in vitro and induce adult-like Th1 responses to tetanus toxoid and measles Ags in vivo, with production of IgG2a-specific Abs and adult-like secretion of IFN-gamma and IL-5 by Ag-specific T cells. However, in spite of their capacity to trigger neonatal B cell proliferation in vitro, CpG-ODN only partially enhanced early life Ab responses. Finally, using Th1-driving CpG-ODN with the boosting dose of a protein vaccine was sufficient to redirect adult but not neonatally primed Th2 responses. These observations could be important for the development of novel vaccines that will have to be effective early in life.

摘要

新生小鼠对一组传统疫苗的反应在性质上与成年小鼠不同,表现为特别偏向Th2模式,且针对细胞内微生物的保护性Th1和CTL反应常常受到限制。相比之下,DNA疫苗可诱导新生小鼠产生类似成年小鼠的针对相同疫苗抗原的Th1/CTL反应。在本报告中,我们表明这可能与其未甲基化的CpG基序含量有关。含有CpG基序的寡脱氧核苷酸(ODN)在体外可激活新生抗原呈递细胞(APC)产生IL-12,并在体内诱导对破伤风类毒素和麻疹抗原产生类似成年小鼠的Th1反应,产生IgG2a特异性抗体,且抗原特异性T细胞分泌类似成年小鼠的IFN-γ和IL-5。然而,尽管CpG-ODN有能力在体外触发新生B细胞增殖,但它仅部分增强了早期生活中的抗体反应。最后,将促进Th1反应的CpG-ODN与蛋白质疫苗的加强剂量联合使用,足以重定向成年小鼠而非新生小鼠启动的Th2反应。这些观察结果对于开发在生命早期必须有效的新型疫苗可能具有重要意义。

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