首页> 美国卫生研究院文献>Journal of Veterinary Science >Enhancement of protective immune responses by oral vaccination with Saccharomyces cerevisiae expressing recombinant Actinobacillus pleuropneumoniae ApxIA or ApxIIA in mice
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Enhancement of protective immune responses by oral vaccination with Saccharomyces cerevisiae expressing recombinant Actinobacillus pleuropneumoniae ApxIA or ApxIIA in mice

机译:通过口服接种表达重组胸膜肺炎放线杆菌肺炎放线杆菌ApxIA或ApxIIA的啤酒酵母增强保护性免疫反应

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摘要

We previously induced protective immune response by oral immunization with yeast expressing the ApxIIA antigen. The ApxI antigen is also an important factor in the protection against Actinobacillus pleuropneumoniae serotype 5 infection; therefore, the protective immunity in mice following oral immunization with Saccharomyces cerevisiae expressing either ApxIA (group C) or ApxIIA (group D) alone or both (group E) was compared with that in two control groups (group A and B). The immunogenicity of the rApxIA antigen derived from the yeast was confirmed by a high survival rate and an ApxIA-specific IgG antibody response (p < 0.01). The highest systemic (IgG) and local (IgA) humoral immune responses to ApxIA and ApxIIA were detected in group E after the third immunization (p < 0.05). The levels of IL-1β and IL-6 after challenge with an A. pleuropneumoniae field isolate did not change significantly in the vaccinated groups. The level of TNF-α increased in a time-dependent manner in group E but was not significantly different after the challenge. After the challenge, the mice in group E had a significantly lower infectious burden and a higher level of protection than the mice in the other groups (p < 0.05). The survival rate in each group was closely correlated to the immune response and histopathological observations in the lung following the challenge. These results suggested that immunity to the ApxIA antigen is required for optimal protection.
机译:我们以前通过用表达ApxIIA抗原的酵母进行口服免疫来诱导保护性免疫应答。 ApxI抗原也是预防胸膜肺炎放线杆菌血清型5感染的重要因素。因此,将口服表达ApxIA(C组)或ApxIIA(D组)或两者(E组)的啤酒酵母的小鼠的保护性免疫与两个对照组(A和B组)进行了比较。高存活率和ApxIA特异性IgG抗体应答可证实源自酵母的rApxIA抗原的免疫原性(p <0.01)。在第三次免疫后,E组检测到对ApxIA和ApxIIA的最高全身(IgG)和局部(IgA)体液免疫反应(p <0.05)。接种肺炎链球菌田间分离株攻击后,IL-1β和IL-6的水平在接种组中没有显着变化。 E组中TNF-α的水平呈时间依赖性增加,但攻击后无明显差异。攻击后,与其他组相比,E组中的小鼠具有明显更低的感染负担和更高的保护水平(p <0.05)。攻击后,每组的存活率与肺中的免疫反应和组织病理学观察密切相关。这些结果表明对ApxIA抗原的免疫是最佳保护所必需的。

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