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The newly identified CpG-N ODN208 protects mice from challenge with CpG-S ODN by decreasing TNF-alpha release
Liangxi Wang1, Weiwei Jiang, Guofu Ding
1Department of Pharmacology, College of Medicine, The Third Military Medical University, Chongqing 400038, PR China.
Abstract:
Administration of an excess of oligodeoxynucleotides containing immunostimulatory CpG motifs (CpG-S ODNs) may induce systemic inflammatory response syndrome (SIRS) and sepsis. Therefore, it is important to develop neutralizing CpG ODNs (CpG-N ODNs), which can be used to reduce the release of cytokines induced by the presence of CpG-S ODNs. In the present study, CpG-N ODN208 (5'-TGCCGCGGCAGA-3'), a neutralizing twelve-oligodeoxynucleotide molecule recently identified in our laboratory, inhibited TNF-alpha release from human peripheral blood mononuclear cells (hPBMCs) and murine RAW264.7 cells induced by CpG-S ODN exposure in a dose- and time-dependent manner. Flow cytometry revealed that CpG-N ODN208 decreased cell-surface binding and internalization of 6-FAM-CpG-S ODN. However, the decreased cell-surface binding and internalization of CpG-S ODN could not completely account for the decreased TNF-alpha release. RT-PCR experiments revealed that CpG-N ODN treatment could down-regulate the CpG-S ODN-induced upregulation of Toll-like receptor 9 (TLR9) mRNA expression. This finding suggested that the decreased cytokine release following CpG-N ODN treatment might be related to decreased TLR9 mRNA expression. In in vivo experiments, no protection was found when the ratio of CpG-N ODN to CpG-S ODN delivered to mice was 3:1. However, at a 5:1 ratio, CpG-N ODN208 could protect mice from an ordinarily lethal dose of CpG-S ODN. Furthermore, we found that CpG-N ODN208 treatment decreased serum TNF-alpha levels in mice injected with sublethal doses of CpG-S ODN whether the CpG-N ODN208 was added prior to or concurrent with the CpG-S ODN. Our results demonstrated that CpG-N ODN-mediated protection against a lethal challenge by CpG-S ODN was associated with the reduction of TNF-alpha release.
Insights
Neutralizing CpG oligodeoxynucleotides (CpG-N ODNs) can inhibit inflammatory cytokine release induced by immunostimulatory CpG ODNs (CpG-S ODNs). CpG-N ODN208 protects mice from lethal CpG-S ODN challenge by reducing TNF-alpha levels and TLR9 mRNA expression.
Area of Science:
- Immunology
- Molecular Biology
- Pharmacology
Background:
- Immunostimulatory CpG oligodeoxynucleotides (CpG-S ODNs) can trigger systemic inflammatory response syndrome (SIRS) and sepsis.
- Development of neutralizing CpG ODNs (CpG-N ODNs) is crucial for mitigating CpG-S ODN-induced cytokine release.
Purpose of the Study:
- To evaluate the efficacy of a novel CpG-N ODN, CpG-N ODN208, in neutralizing CpG-S ODN-induced inflammation.
- To elucidate the mechanisms underlying CpG-N ODN208's protective effects.
Main Methods:
- In vitro studies using human peripheral blood mononuclear cells (hPBMCs) and murine RAW264.7 cells.
- Flow cytometry to assess CpG-S ODN binding and internalization.
- RT-PCR to analyze Toll-like receptor 9 (TLR9) mRNA expression.
- In vivo experiments in mice challenged with CpG-S ODN.
Main Results:
- CpG-N ODN208 dose- and time-dependently inhibited TNF-alpha release induced by CpG-S ODN in vitro.
- CpG-N ODN208 reduced cell-surface binding and internalization of CpG-S ODN, and down-regulated TLR9 mRNA expression.
- In vivo, CpG-N ODN208 (at a 5:1 ratio) protected mice from a lethal dose of CpG-S ODN and reduced serum TNF-alpha levels.
Conclusions:
- CpG-N ODN208 effectively neutralizes CpG-S ODN-induced inflammation in vitro and in vivo.
- The protective mechanism involves reduced TNF-alpha release and down-regulation of TLR9 mRNA expression.
- CpG-N ODNs represent a promising therapeutic strategy against CpG-S ODN-induced sepsis.
