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首页> 外文期刊>Clinical and vaccine immunology: CVI >Immunogenicity of a Bovine Herpesvirus 1 Glycoprotein D DNA Vaccine Complexed with Bovine Neutrophil Beta-Defensin 3
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Immunogenicity of a Bovine Herpesvirus 1 Glycoprotein D DNA Vaccine Complexed with Bovine Neutrophil Beta-Defensin 3

机译:牛疱疹病毒1糖蛋白D DNA疫苗与牛中性粒细胞β-防御素3复合的免疫原性。

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Protective efficacy against bovine herpesvirus 1 (BoHV-1) has been demonstrated to be induced by a plasmid encoding bovine neutrophil beta-defensin 3 (BNBD3) as a fusion construct with truncated glycoprotein D (tgD). However, in spite of the increased cell-mediated immune responses induced by this DNA vaccine, the clinical responses of BoHV-1-challenged cattle were not reduced over those observed in animals vaccinated with the plasmid encoding tgD alone; this might have been because the vaccine failed to improve humoral responses. We hypothesized that an alternative vaccine design strategy that utilized the DNA vaccine pMASIA-tgD as a complex with BNBD3 might improve humoral responses while maintaining robust Th1-type cell-mediated responses. C57BL/6 mice were vaccinated with pMASIA-tgD complexed with 0, 0.01875, 0.1875, or 1.875 nmol of a stable synthesized analog of BNBD3 (aBNBD3). The best results were seen in mice immunized with the vaccine composed of pMASIA-tgD complexed to 0.1875 nmol aBNBD3. In this group, humoral responses were improved, as evidenced by increased virus neutralization, tgD-specific early IgG1, and later IgG2a titers, while the strong cell-mediated immune responses, measured based on specific gamma interferon (IFN-γ)-secreting cells, were maintained relative to pMASIA-tgD. Modulation of the immune response might have been due in part to the effect of BNBD3 on dendritic cells (DCs). In vitro studies showed that murine bone marrow-derived DCs (BMDCs) pretreated with aBNBD3 were activated, as evidenced by CD11c downregulation, and were functionally mature, as shown by increased allostimulatory ability. Native, synthetic, and analog forms of BNBD3 were equally capable of inducing functional maturation of BMDCs.
机译:已经证明,编码牛嗜中性粒细胞β-防御素3(BNBD3)的质粒作为与截短的糖蛋白D(tgD)的融合构建体,可以诱导对牛疱疹病毒1(BoHV-1)的保护作用。然而,尽管这种DNA疫苗诱导的细胞介导的免疫反应增加,但BoHV-1攻击牛的临床反应并未比单独接种tgD质粒的动物所观察到的减少。这可能是因为疫苗未能改善体液反应。我们假设利用DNA疫苗pMASIA-tgD与BNBD3形成复合物的另一种疫苗设计策略可能会改善体液反应,同时保持强大的Th1型细胞介导的反应。用与0、0.01875、0.1875或1.875 nmol复合的BNBD3稳定合成类似物(aBNBD3)复合的pMASIA-tgD接种C57BL / 6小鼠。在用pMASIA-tgD与0.1875 nmol aBNBD3复合的疫苗免疫的小鼠中观察到最佳结果。在这一组中,体液反应得到改善,如病毒中和作用增强,tgD特异性早期IgG1和后期IgG2a滴度增加所证明的,而强细胞介导的免疫反应则是基于分泌特定的γ-干扰素(IFN-γ)的细胞测量的相对于pMASIA-tgD维持。免疫应答的调节可能部分归因于BNBD3对树突状细胞(DC)的影响。 体外研究表明,用CD11c下调证明,用aBNBD3预处理的鼠骨髓来源的DC(BMDC)被​​激活,并且功能成熟,如同种异体刺激能力增强所示。 BNBD3的天然,合成和类似形式均具有诱导BMDC功能成熟的能力。

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