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A Recombinant Newcastle Disease Virus (NDV) Expressing S Protein of Infectious Bronchitis Virus (IBV) Protects Chickens against IBV and NDV

机译:表达传染性支气管炎病毒(IBV)S蛋白的重组新城疫病毒(NDV)保护鸡免受IBV和NDV侵害

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摘要

Infectious bronchitis virus (IBV) causes a highly contagious respiratory, reproductive and urogenital tract disease in chickens worldwide, resulting in substantial economic losses for the poultry industry. Currently, live-attenuated IBV vaccines are used to control the disease. However, safety, attenuation and immunization outcomes of current vaccines are not guaranteed. Several studies indicate that attenuated IBV vaccine strains contribute to the emergence of variant viruses in the field due to mutations and recombination. Therefore, there is a need to develop a stable and safe IBV vaccine that will not create variant viruses. In this study, we generated recombinant Newcastle disease viruses (rNDVs) expressing the S1, S2 and S proteins of IBV using reverse genetics technology. Our results showed that the rNDV expressing the S protein of IBV provided better protection than the rNDV expressing S1 or S2 protein of IBV, indicating that the S protein is the best protective antigen of IBV. Immunization of 4-week-old SPF chickens with the rNDV expressing S protein elicited IBV-specific neutralizing antibodies and provided complete protection against virulent IBV and virulent NDV challenges. These results suggest that the rNDV expressing the S protein of IBV is a safe and effective bivalent vaccine candidate for both IBV and NDV.
机译:传染性支气管炎病毒(IBV)在全世界的鸡中引起高度传染性的呼吸道,生殖道和泌尿生殖道疾病,给家禽业造成巨大的经济损失。当前,减毒活的IBV疫苗用于控制该疾病。但是,不能保证当前疫苗的安全性,减毒和免疫效果。几项研究表明,由于突变和重组,减毒的IBV疫苗株在现场导致了变异病毒的出现。因此,需要开发不会产生变异病毒的稳定且安全的IBV疫苗。在这项研究中,我们使用反向遗传学技术生成了表达IBV的S1,S2和S蛋白的重组新城疫病毒(rNDV)。我们的结果表明,表达IBV的S蛋白的rNDV提供了比表达IBV的S1或S2蛋白的rNDV更好的保护,表明S蛋白是IBV的最佳保护抗原。用表达S蛋白的rNDV免疫4周龄SPF鸡引发了IBV特异性中和抗体,并提供了针对有毒IBV和有毒NDV攻击的完全保护。这些结果表明,表达IBV的S蛋白的rNDV是IBV和NDV的安全有效的二价疫苗候选者。

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