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首页> 外文期刊>Vaccine >Salmonella Enteritidis ghost vaccine carrying the hemagglutinin globular head (HA1) domain from H1N1 virus protects against salmonellosis and influenza in chickens
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Salmonella Enteritidis ghost vaccine carrying the hemagglutinin globular head (HA1) domain from H1N1 virus protects against salmonellosis and influenza in chickens

机译:Salmonella Entenitidis幽灵疫苗携带H1N1病毒的H1N1病毒的血凝素球形头(HA1)域保护鸡的沙门氏菌和流感

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摘要

This study evaluated the attenuated Salmonella Enteritidis (SE) ghost strain JOL2114 (Delta lon Delta cpxR Delta asd), which displays on the bacterial surface the H1N1 hemagglutinin globular head portion (HA1; amino acid residues 63-286) on the bacterial surface for protective efficacy against Salmonella and H1N1 challenge in the chicken model, as the birds are the predominant reservoirs for both diseases. The ghost system enhanced the lysis process by converging two lysis processes found in bacteriophages: bacteriophage PhiX174 lysis gene E and holin-endolysin genes found in bacteriophage lambda, complemented with accessory lysis-related proteins Rz/Rz1. The present lysis machinery resulted in complete lysis of host-attenuated SE strains in about 24 hrs of incubation under a non-permissible temperature of 42 degrees C in the absence of L-arabinose, an antisense inducer that blocks lysis gene expression during the growth phase. SE ghost JOL2114 surface display of HA1 was confirmed by Western blot analysis resulting in an immunereactive band of 31 kDa in size. Chicken immunization via intramuscular and oral routes yielded both SE and HA1 antigen-specific immune responses. Protective humoral and cell-mediated immune responses were effectively elicited against both Salmonella and influenza challenge. This efficient strategy of ghost generation employs a dual system of phage lysis for biological generation of SE ghosts that preserves the surface antigenic architecture, offering a rapid and effective way to generate vaccines that could be deployed in urgent circumstances to protect against both Salmonella and influenza infection. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究评估减毒肠炎沙门氏菌(SE)鬼应变JOL2114(德尔塔LON德尔塔CPXR德尔塔ASD),其在细菌表面的血凝素H1N1球状头部部分上的显示器;用于保护在细菌表面(HA1的氨基酸残基63-286)针对鸡模型沙门氏菌和甲型H1N1流感的挑战功效,为鸟类是针对这两种疾病的主要水库。在噬菌体λ噬菌体发现裂解的PhiX174基因E和吗啉-细胞内溶素的基因,用辅助裂解相关蛋白RZ / RZ1补充:鬼系统由会聚在噬菌体发现了两个裂解工艺提高了裂解过程。本裂解机械导致约24小时温育的宿主减毒SE菌株的完全裂解的42℃的非允许温度在不存在L-阿拉伯糖,反义诱导剂在生长阶段块裂解的基因表达的下。 HA1的SE鬼JOL2114表面显示由产生31千道尔顿大小的immunereactive带Western印迹分析证实。通过肌肉注射和口服途径免疫鸡产生SE和HA1抗原特异性免疫应答。保护性体液和细胞介导的免疫反应引起的有效的抗沙门氏菌和甲型流感的挑战。这种高效的重影产生的策略使用噬菌体裂解生物一代保留了表面抗原结构SE鬼的双系统,提供快速而有效的方式产生,可以在紧急情况下进行部署,以防止沙门氏菌和甲型流感感染的疫苗。 (c)2020 elestvier有限公司保留所有权利。

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