首页> 外文期刊>Veterinary research >Fowl adenovirus (FAdV) fiber-based vaccine against inclusion body hepatitis (IBH) provides type-specific protection guided by humoral immunity and regulation of B and T cell response
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Fowl adenovirus (FAdV) fiber-based vaccine against inclusion body hepatitis (IBH) provides type-specific protection guided by humoral immunity and regulation of B and T cell response

机译:Fowl腺病毒(赋予)基于纤维的纤维疫苗,反对包涵体肝炎(IBH)提供了由体液免疫和B和T细胞应答的监管引导的类型特异性保护

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A recombinant fowl adenovirus (FAdV) fiber protein, derived from a FAdV-8a strain, was tested for its efficacy to protect chickens against inclusion body hepatitis (IBH). FAdV-E field isolates belonging to both a homotypic (FAdV-8a) and heterotypic (-8b) serotype were used as challenge. Mechanisms underlying fiber-induced protective immunity were investigated by fiber-based ELISA, virus neutralization assays and flow cytometry of peripheral blood mononuclear cells, monitoring the temporal developments of humoral and cellular responses after vaccination and challenge exposure. Birds were clinically protected from the homologous challenge and showed a significant reduction of viral load in investigated target organs, whereas fiber-based immunity failed to counteract the heterologous serotype infection. These findings were supported in vitro by the strictly type-specific neutralizing activity of fiber immune sera. In protected birds, fiber vaccination prevented a post-challenge drop of peripheral B cells in blood. Furthermore, fiber immunization stimulated CD4+ T lymphocyte proliferation while moderating the CD8α+ T cell response and prevented challenge-induced changes in systemic monocytes/macrophages and γδ+ T cell subpopulations. Both vaccinated and adjuvant-only injected birds experienced a priming of systemic B cells and TCRγδ+ T lymphocytes, which masked possible pre-challenge effects due to the antigen. In conclusion, within FAdV-E, recombinant fiber represents a vaccine candidate to control the adverse effects of homotypic infection by eliciting an effective humoral immunity and regulating B and T cell response, whereas the failure of heterotypic protection suggests a primordial role of humoral immunity for this vaccine.
机译:衍生自赋予Fadv-8a菌株的重组饲料腺病毒(Fadv)纤维蛋白,用于保护鸡抗包涵体肝炎(IBH)的疗效。属于偶曲面(Fadv-8a)和异质型(-8b)血清型的野外隔离物被用作挑战。通过基于纤维的ELISA,病毒中和测定和外周血液单核细胞的流式细胞术,研究了纤维诱导的保护免疫的机制,监测疫苗接种和攻击暴露后的体液和细胞反应的时间发育。鸟类在临床上保护来自同源攻击,并在研究的靶器官中显示出病毒载量的显着降低,而基于纤维的免疫未能抵消异源血清型感染。通过纤维免疫血清的严格型测量活性来体外支持这些发现。在受保护的鸟类中,纤维疫苗接种阻碍了血液中外周B细胞的攻击后丢失。此外,纤维免疫刺激CD4 + T淋巴细胞增殖,同时调节CD8α+ T细胞响应并防止攻击诱导的全身单核细胞/巨噬细胞和γδ+ T细胞亚群的变化。疫苗和佐剂的注射鸟类均经历了系统性B细胞和TCRγδ+ T淋巴细胞的引发,其掩盖了由于抗原引起的可能预攻击效果。总之,重组纤维在重组纤维中表示通过引发有效的体液免疫和调节B和T细胞反应来控制患型感染的疫苗候选疫苗候选者,而异型保护的失败表明体液免疫的原始作用这个疫苗。

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