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A Three-dimensional Thymic Culture System to Generate Murine Induced Pluripotent Stem Cell-derived Tumor Antigen-specific Thymic Emigrants
Published on: August 9, 2019
[Anti-tumor immunity induced by OK-432-derived DNA]
Tetsuya Oshikawa1, Masato Okamoto, Sharif Uddin Ahmed
1Second Dept. of Oral and Maxillofacial Surgery, Tokushima University School of Dentistry.
Abstract:
We have tried to identify the effective components of OK-432, a Streptococcus-derived anti-cancer immunotherapeutic agent. In the current study, we investigated the effect of OK-432-derived DNA (OK-DNA) in augmenting anti-cancer immune response. Analysis of OK-DNA with the restriction enzymes Hpa II and Msp I revealed that OK-DNA contained unmethylated CpG motifs. OK-DNA induced Th1-type cytokines, such as IFN-gamma and IL-12, and augmented killer cell activities in vitro on human peripheral blood mononuclear cells, whereas the methylated OK-DNA did not. Cytokines were also produced by OK-DNA-stimulated splenocytes derived from wild-type mice but not from TLR9-deficient mice. In the in vivo study, a peritumoral administration of OK-DNA resulted in a significant inhibition of tumor growth in syngeneic tumor-bearing wild-type and TLR4-deficient mice but not in TLR9-deficient mice. Anti-tumor effect of OK-432 in TLR9-deficient mice was significantly but partially reduced as compared with that in wild-type mice, while the effect of OK-432 was almost completely eliminated in TLR4-deficient mice. These findings suggest that unmethylated CpG-DNA in OK-432 functions as an active component in OK-432-induced anti-cancer immunity via TLR9, at least in part.
Insights
Unmethylated CpG-DNA within OK-432 is a key component driving anti-cancer immunity. This DNA activates immune cells via Toll-like receptor 9 (TLR9), enhancing the therapeutic effect of OK-432.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Context:
- OK-432 is a Streptococcus-derived immunotherapeutic agent used in cancer treatment.
- The precise active components and mechanisms of OK-432 are not fully understood.
Purpose:
- To identify the active component of OK-432 responsible for augmenting anti-cancer immune responses.
- To investigate the role of OK-432-derived DNA (OK-DNA) and its CpG motifs in immune activation.
Summary:
- Analysis revealed OK-DNA contains unmethylated CpG motifs, which stimulate Th1-type cytokines (IFN-gamma, IL-12) and enhance killer cell activity in vitro.
- Splenocyte stimulation with OK-DNA was dependent on Toll-like receptor 9 (TLR9).
- In vivo, OK-DNA administration inhibited tumor growth in wild-type and TLR4-deficient mice, but not in TLR9-deficient mice, indicating a crucial role for TLR9.
Impact:
- These findings highlight unmethylated CpG-DNA as a critical functional component of OK-432.
- The study elucidates the mechanism of OK-432-induced anti-cancer immunity, primarily mediated through TLR9 activation by CpG motifs.
- This knowledge can inform the development of more targeted and effective immunotherapies.
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