首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Trans-Sialidase Recombinant Protein Mixed with CpG Motif-Containing Oligodeoxynucleotide Induces Protective Mucosal and Systemic Trypanosoma cruzi Immunity Involving CD8+ CTL and B Cell-Mediated Cross-Priming.
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Trans-Sialidase Recombinant Protein Mixed with CpG Motif-Containing Oligodeoxynucleotide Induces Protective Mucosal and Systemic Trypanosoma cruzi Immunity Involving CD8+ CTL and B Cell-Mediated Cross-Priming.

机译:Trans-Sialidase重组蛋白与CpG母基的寡脱氧核苷酸混合,可诱导涉及CD8 + CTL和B细胞介导的交叉刺激的保护性粘膜和全身锥虫锥虫免疫。

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摘要

The Trypanosoma cruzi trans-sialidase (TS) is a unique enzyme with neuraminidase and sialic acid transfer activities important for parasite infectivity. The T. cruzi genome contains a large family of TS homologous genes, and it has been suggested that TS homologues provide a mechanism of immune escape important for chronic infection. We have investigated whether the consensus TS enzymatic domain could induce immunity protective against acute and chronic, as well as mucosal and systemic, T. cruzi infection. We have shown that: 1) TS-specific immunity can protect against acute T. cruzi infection; 2) effective TS-specific immunity is maintained during chronic T. cruzi infection despite the expression of numerous related TS superfamily genes encoding altered peptide ligands that in theory could promote immune tolerization; and 3) the practical intranasal delivery of recombinant TS protein combined with a ssDNA oligodeoxynucleotide (ODN) adjuvant containing unmethylated CpG motifs can induce both mucosal and systemic protective immunity. We have further demonstrated that the intranasal delivery of soluble TS recombinant Ag combined with CpG ODN induces both TS-specific CD4(+) and CD8(+) T cells associated with vaccine-induced protective immunity. In addition, optimal protection induced by intranasal TS Ag combined with CpG ODN requires B cells, which, after treatment with CpG ODN, have the ability to induce TS-specific CD8(+) T cell cross-priming. Our results support the development of TS vaccines for human use, suggest surrogate markers for use in future human vaccine trials, and mechanistically identify B cells as important APC targets for vaccines designed to induce CD8(+) CTL responses.
机译:克鲁氏锥虫转唾液酸酶(TS)是一种独特的酶,具有神经氨酸酶和唾液酸转移活性,对于寄生虫的感染具有重要意义。克鲁氏锥虫基因组包含大量的TS同源基因家族,并且已经提出TS同源物提供了对慢性感染重要的免疫逃逸机制。我们研究了共有的TS酶结构域是否可以诱导针对急性和慢性以及粘膜和全身性克氏锥虫感染的免疫力。我们已经表明:1)TS特异性免疫可以预防急性克鲁氏锥虫感染。 2)尽管存在许多相关的TS超家族基因的表达,这些超家族基因编码改变的肽配体,理论上可以促进免疫耐受,但在慢性克鲁氏杆菌感染期间仍保​​持有效的TS特异性免疫。 3)重组TS蛋白与含未甲基化CpG基序的ssDNA寡脱氧核苷酸(ODN)佐剂结合的实用鼻内给药可以诱导粘膜和全身保护性免疫。我们进一步证明,鼻内递送可溶性TS重组Ag与CpG ODN相结合可诱导与疫苗诱导的保护性免疫相关的TS特异性CD4(+)和CD8(+)T细胞。此外,鼻内TS Ag结合CpG ODN诱导的最佳保护需要B细胞,B细胞在用CpG ODN治疗后具有诱导TS特异性CD8(+)T细胞交叉引发的能力。我们的结果支持人类使用TS疫苗的开发,建议在未来的人类疫苗试验中使用替代标记,并以机械方式将B细胞识别为旨在诱导CD8(+)CTL反应的疫苗的重要APC目标。

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