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Mucosal and systemic immune responses induced by immunisation of cotton rats with recombinant adenoviruses.

机译:用重组腺病毒免疫棉鼠诱导的粘膜和全身免疫反应。

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摘要

Replication-defective and replication-competent recombinant human adenovirus type 5 vectors efficiently expressed the glycoprotein D (gD) or the transmembrane anchor truncated gD (tgD) of bovine herpesvirus type 1 (BHV-1) in vitro. To facilitate the evaluation of the efficacy of immunisation with these recombinant adenoviruses in conferring protection against BHV-1 infection, a cotton rat (Sigmodon hispidus) model for intranasal BHV-1 challenge was developed. I used this model to assess the ability of different routes of immunisation with the recombinant adenoviruses to elicit gD-specific systemic and mucosal immunity and confer protection against BHV-1 challenge. Immunisation with gD-expressing vectors induced better immunity and protection than immunisation with tgD-expressing viruses. Mucosal immunisation with the replication-competent virus was more efficient than that with the replication-defective vector in inducing gD-specific antibody in the serum and the respiratory tract. In contrast, systemic immunisation with the two vectors stimulated similar gD-specific antibody levels. These results indicate that the route of immunisation was crucial when assessing the efficacy of recombinant adenoviruses as vaccine vectors. The importance of the route of administration was further demonstrated by the finding that intranasal immunisation with the replication-competent vector stimulated higher antigen-specific IgA levels and antibody-secreting cell numbers in the respiratory tract than intradermal, intraperitoneal or enteric immunisation. Protection correlated with gD-specific antibody levels such that intranasal immunisation, even 3 months following vaccination, conferred complete, while intradermal or enteric immunisation conferred partial protection of the lungs of cotton rats against intranasal BHV-1 challenge. Pre-existing active adenovirus-specific immunity significantly inhibited the development of gD-specific antibody responses and protection against BHV-1 challenge following immunisation with recombinant adenovirus, while only a slight inhibition was observed by passive transfer of adenovirus-specific antibody. Overall, the results demonstrated that mucosal and systemic immunisation with adenovirus vectors could induce antigen-specific immunity and protection against BHV-1 challenge. The level of gD-specific immune responses and protection from challenge were, however, dependent on the cellular localisation of the foreign gene expressed by the vectors, the replication-capability of the viruses, the route of immunisation and the presence or absence of pre-existing adenovirus-specific immunity in the cotton rat.
机译:具有复制缺陷和具有复制能力的重组人5型腺病毒载体在体外有效表达1型牛疱疹病毒(BHV-1)的糖蛋白D(gD)或跨膜锚截短的gD(tgD)。为了促进对这些重组腺病毒进行免疫接种以预防BHV-1感染的效力进行评估,开发了用于鼻内BHV-1攻击的棉鼠(Sigmodon hispidus)模型。我使用该模型评估了重组腺病毒不同免疫途径引发gD特异性全身和粘膜免疫力并提供针对BHV-1攻击的保护能力。用表达gD的载体免疫比表达tgD的病毒免疫诱导更好的免疫和保护作用。具有复制能力的病毒的粘膜免疫在复制血清和呼吸道中的gD特异性抗体方面比复制缺陷型载体更有效。相反,用两种载体进行的全身免疫刺激了相似的gD特异性抗体水平。这些结果表明,在评估重组腺病毒作为疫苗载体的功效时,免疫途径至关重要。通过发现具有复制能力的载体的鼻内免疫比真皮内,腹膜内或肠内免疫刺激在呼吸道中刺激更高的抗原特异性IgA水平和分泌抗体的细胞数量,进一步证明了给药途径的重要性。保护作用与gD特异性抗体水平相关,因此,即使在疫苗接种后3个月,鼻内免疫也能完全免疫,而皮内或肠内免疫则能部分保护棉鼠肺部免受鼻内BHV-1攻击。重组腺病毒免疫后,预先存在的活性腺病毒特异性免疫显着抑制了gD特异性抗体反应的发展和对BHV-1攻击的保护,而通过腺病毒特异性抗体的被动转移仅观察到了轻微的抑制作用。总体而言,结果表明,用腺病毒载体进行粘膜和全身免疫可诱导抗原特异性免疫并抵抗BHV-1攻击。然而,gD特异性免疫反应的水平和免受攻击的能力取决于载体表达的外源基因在细胞中的定位,病毒的复制能力,免疫途径以及是否存在预感染。棉鼠中现有的腺病毒特异性免疫。

著录项

  • 作者

    Papp, Zsuzsanna.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Health Sciences Immunology.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 预防医学、卫生学;
  • 关键词

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