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M13 噬菌体疫苗的免疫学基础:MyD88 和 TLR9 信号调节。

Immunological basis of M13 phage vaccine: Regulation under MyD88 and TLR9 signaling.

机构信息

Department of Chemistry and Biotechnology, Graduate School of Science and Engineering, Kagoshima University, 1-21-40 Korimoto, Kagoshima 890-0065, Japan.

出版信息

Biochem Biophys Res Commun. 2010 Nov 5;402(1):19-22. doi: 10.1016/j.bbrc.2010.09.094. Epub 2010 Sep 26.

Abstract

Peptide-displaying bacteriophages induce mimotope-specific antibody responses, suggesting a novel application of phage-display library as bacteriophage vaccine. We examined the antibody response against M13 phage in mice induced by an i.p. administration of M13 phage in phosphate-buffered saline. We showed here that firstly, mice showed strong IgG antibody responses, particularly, in IgG2b, IgG2c, and IgG3 subclasses even in primary responses. Secondly, IgG production in primary response is totally dependent on MyD88 signaling. These responses were almost comparable, but slightly weaker, in TLR2-, TLR4- and TLR7-deficient mice relative to wild-type mice, suggesting that this enhancing effect is not due to plausible LPS contamination. Thirdly, although primary IgG1 response was not detected in wild-type mice, remarkable IgG1 response was induced in TLR9-deficient mice, suggesting that TLR9 pathway functions as regulatory, but not a simple augmenting signaling cascade, and furthermore, the enhanced IgG1 response was not due to adjuvant effect of single-stranded DNA derived from M13 phage. Thus, innate immunity including TLR regulation is crucial for M13 phage vaccine design.

摘要

展示肽的噬菌体可诱导模拟表位特异性抗体应答,这表明噬菌体展示文库可作为噬菌体疫苗的一种新应用。我们研究了经腹腔内给予磷酸盐缓冲盐水的 M13 噬菌体后,M13 噬菌体在小鼠体内诱导的抗体应答。我们在此表明:首先,即使在初次应答中,小鼠也表现出强烈的 IgG 抗体应答,特别是 IgG2b、IgG2c 和 IgG3 亚类。其次,初次应答中 IgG 的产生完全依赖于 MyD88 信号转导。与野生型小鼠相比,TLR2-、TLR4-和 TLR7 缺陷型小鼠中的这些应答几乎相当,但略弱,提示这种增强作用不是由于可能的 LPS 污染所致。第三,虽然野生型小鼠中未检测到原发性 IgG1 应答,但 TLR9 缺陷型小鼠中诱导出了显著的 IgG1 应答,提示 TLR9 途径作为调节而不是简单的增强信号级联起作用,此外,增强的 IgG1 应答不是由于源自 M13 噬菌体的单链 DNA 的佐剂作用所致。因此,包括 TLR 调节在内的固有免疫对于 M13 噬菌体疫苗设计至关重要。

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