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基于与霍乱毒素无毒B亚基相连的CpG寡脱氧核苷酸的新型免疫刺激剂。

Novel immunostimulatory agent based on CpG oligodeoxynucleotide linked to the nontoxic B subunit of cholera toxin.

作者信息

Adamsson Jenni, Lindblad Marianne, Lundqvist Annika, Kelly Denise, Holmgren Jan, Harandi Ali M

机构信息

Department of Medical Microbiology and Immunology, Göteborg University Vaccine Research Institute, Göteborg University, Göteborg, Sweden.

出版信息

J Immunol. 2006 Apr 15;176(8):4902-13. doi: 10.4049/jimmunol.176.8.4902.

Abstract

In this study, we report the development of a novel, rationally designed immunostimulatory adjuvant based on chemical conjugation of CpG oligodeoxynucleotide (ODN) to the nontoxic B subunit of cholera toxin (CTB). We demonstrate that the immunostimulatory effects of CpG can be dramatically enhanced by conjugation to CTB. Thus, CpG ODN linked to CTB (CTB-CpG) was shown to be a more potent stimulator of proinflammatory cytokine and chemokine responses in murine splenocytes and human PBMCs than those of CpG ODN alone in vitro. The presence of CpG motif, but not modified phosphorothioate ODN backbone, was found to be critical for the enhanced immunostimulatory effects of CTB-CpG. Our mode-of-action studies, including studies on cells from specifically gene knockout mice suggest that similar to CpG, CTB-CpG exerts its immunostimulatory effects through a TLR9/MyD88- and NF-kappaB-dependent pathway. Surprisingly, and as opposed to CpG ODN, CTB-CpG-induced immunity was shown to be independent of endosomal acidification and resistant to inhibitory ODN. Furthermore, preincubation of CTB-CpG with GM1 ganglioside reduced the immunostimulatory effects of CTB-CpG to those of CpG ODN alone. Interestingly, conjugation of CpG ODN to CTB confers an enhanced cross-species activity to CpG ODN. Furthermore, using tetanus toxoid as a vaccine Ag for s.c. immunization, CTB-CpG markedly enhanced the Ag-specific IgG Ab response and altered the specific pattern of Ab isotypes toward a Th1 type response. To our knowledge, CTB is the first nontoxic derivative of microbial toxins discovered that when chemically linked to CpG remarkably augments the CpG-mediated immune responses.

摘要

在本研究中,我们报道了一种基于将CpG寡脱氧核苷酸(ODN)化学偶联至霍乱毒素(CTB)无毒B亚基而合理设计的新型免疫刺激佐剂的研发。我们证明,通过与CTB偶联,CpG的免疫刺激作用可显著增强。因此,在体外,与单独的CpG ODN相比,与CTB偶联的CpG ODN(CTB-CpG)在小鼠脾细胞和人外周血单核细胞(PBMC)中是更有效的促炎细胞因子和趋化因子反应刺激剂。发现CpG基序的存在而非修饰的硫代磷酸酯ODN主链对于CTB-CpG增强的免疫刺激作用至关重要。我们的作用机制研究,包括对来自特定基因敲除小鼠的细胞的研究表明,与CpG类似,CTB-CpG通过TLR9/MyD88和NF-κB依赖性途径发挥其免疫刺激作用。令人惊讶的是,与CpG ODN相反,CTB-CpG诱导的免疫被证明独立于内体酸化且对抑制性ODN具有抗性。此外,CTB-CpG与GM1神经节苷脂预孵育可将CTB-CpG的免疫刺激作用降低至单独的CpG ODN的水平。有趣的是,CpG ODN与CTB偶联赋予了CpG ODN增强的跨物种活性。此外,使用破伤风类毒素作为皮下免疫的疫苗抗原,CTB-CpG显著增强了抗原特异性IgG抗体反应,并将抗体亚型的特定模式改变为Th1型反应。据我们所知,CTB是发现的第一种微生物毒素无毒衍生物,当与CpG化学连接时,可显著增强CpG介导的免疫反应。

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