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首页> 外文期刊>Research in Veterinary Science >The design and application of a bacterial ghost vaccine to evaluate immune response and defense against avian pathogenic Escherichia coli O2:K1 serotype
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The design and application of a bacterial ghost vaccine to evaluate immune response and defense against avian pathogenic Escherichia coli O2:K1 serotype

机译:细菌幽灵疫苗的设计与应用,评价免疫应答对抗禽病原体大肠杆菌O2:K1血清型

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摘要

An Escherichia coli (E. coli) O2:K1 bacterial ghost was produced by controlled expression of bacteriophage PhiX 174 lysis gene E. Temperature controlled expression of this gene caused tunnels and holes in the cell wall of E. coli O2:K1 bacterium, leading to loss of cytoplasmic contents. Formation of E. coli O2:K1 ghost was confirmed by scanning electron microscopy and determination of colony forming units. To evaluate the efficiency of this bacterial ghost vaccine to elicit cellular and humoral immune responses, 85 one day old chickens from Ross 308 breed were divided into the following 5 groups; group 1 (non-immunized control), group 2 (vaccine administered by injection of E. coil O2:K1 killed vaccine), group 3 (vaccine administered by injection of E. coli O2:K1 ghost), group 4 (vaccine administered by inhalation of E. coli O2:K1 ghost), and group 5 (neither immunized, nor challenged as negative control). The groups of 2, 3, and 4 were received vaccines at days 7, 14, and 22. Groups 1 to 4 were challenged with the wild type at day 33. Evaluation of post-mortem lesions and immune responses in all groups showed that chicken injected with the killed vaccine and the bacterial ghost had the best protection. These findings suggest that this bacterial ghost has the potential to be used as a poultry colibacillosis vaccine.
机译:通过受到噬菌体Phix 174裂解基因E的对照表达产生了大肠杆菌(大肠杆菌)O 2:K1细菌鬼。该基因的温度控制表达导致大肠杆菌O2:K1细菌的细胞壁中的隧道和孔。失去细胞质含量。通过扫描电子显微镜确认大肠杆菌O2:K1 Ghost的形成和菌落形成单元的测定。为了评估这种细菌幽灵疫苗的效率,以引发细胞和体液免疫应答,85只来自Ross 308品种的鸡鸡被分成以下5组;第1组(非免疫控制),第2组(注射E.卷烟型疫苗杀死疫苗),第3组(通过注射大肠杆菌O2:K1 Ghost施用的疫苗),第4组(疫苗给药吸入大肠杆菌O2:K1 Ghost)和第5组(既不免疫,也不挑战阴性对照)。在第7,14和22天接受2,3和4的基团。第1至4组在第33天用野生型攻击。所有组中尸体病变和免疫应答的评估显示鸡用杀死的疫苗注射,细菌幽灵具有最好的保护。这些发现表明,这种细菌幽灵有可能被用作家禽大肠杆菌病疫苗。

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