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Intramuscular DNA Vaccination of Juvenile Carp against Spring Viremia of Carp Virus Induces Full Protection and Establishes a Virus-Specific B and T Cell Response

机译:幼鲤对鲤鱼病毒春季病毒血症的肌内DNa疫苗接种诱导全面保护并建立病毒特异性B细胞和T细胞应答

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摘要

Although spring viremia of carp virus (SVCV) can cause high mortalities in common carp, a commercial vaccine is not available for worldwide use. Here, we report a DNA vaccine based on the expression of the SVCV glycoprotein (G) which, when injected in the muscle even at a single low dose of 0.1 μg DNA/g of fish, confers up to 100% protection against a subsequent bath challenge with SVCV. Importantly, to best validate vaccine efficacy, we also optimized a reliable bath challenge model closely mimicking a natural infection, based on a prolonged exposure of carp to SVCV at 15°C. Using this optimized bath challenge, we showed a strong age-dependent susceptibility of carp to SVCV, with high susceptibility at young age (3 months) and a full resistance at 9 months. We visualized local expression of the G protein and associated early inflammatory response by immunohistochemistry and described changes in the gene expression of pro inflammatory cytokines, chemokines, and antiviral genes in the muscle of vaccinated fish. Adaptive immune responses were investigated by analyzing neutralizing titers against SVCV in the serum of vaccinated fish and the in vitro proliferation capacity of peripheral SVCV-specific T cells. We show significantly higher serum neutralizing titers and the presence of SVCV-specific T cells in the blood of vaccinated fish, which proliferated upon stimulation with SVCV. Altogether, this is the first study reporting on a protective DNA vaccine against SVCV in carp and the first to provide a detailed characterization of local innate as well as systemic adaptive immune responses elicited upon DNA vaccination that suggest a role not only of B cells but also of T cells in the protection conferred by the SVCV-G DNA vaccine.
机译:尽管春季鲤鱼病毒血症(SVCV)可能导致鲤鱼死亡,但商业疫苗尚未在全球范围内使用。在这里,我们报告了一种基于SVCV糖蛋白(G)表达的DNA疫苗,即使以0.1μgDNA / g的单次低剂量将其注射到肌肉中,也能提供100%的保护,防止随后的洗澡SVCV挑战。重要的是,为了最好地验证疫苗的有效性,我们还根据鲤鱼在15°C下长时间暴露于SVCV的情况,优化了一种可模仿自然感染的可靠的入浴挑战模型。使用这种优化的浴池挑战,我们显示出鲤鱼对SVCV的年龄依赖性强,在幼龄(3个月)时具有很高的敏感性,而在9个月时具有完全抗性。我们通过免疫组织化学可视化了G蛋白的局部表达和相关的早期炎症反应,并描述了在接种鱼的肌肉中促炎性细胞因子,趋化因子和抗病毒基因的基因表达变化。通过分析接种鱼血清中针对SVCV的中和效价以及外周SVCV特异性T细胞的体外增殖能力,研究了适应性免疫应答。我们显示出明显更高的血清中和滴度和接种鱼血中存在SVCV特异性T细胞,这些病毒在受到SVCV刺激后会增殖。总而言之,这是第一项报道针对鲤鱼抗SVCV的保护性DNA疫苗的研究,并且是第一项提供DNA疫苗引发的局部先天性和全身性适应性免疫应答的详细表征的研究,这不仅暗示着B细胞的作用,而且还暗示了这种作用。 SVCV-G DNA疫苗赋予T细胞的保护作用。

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