首页> 外文期刊>Poultry Science >Vaccination of chickens with recombinant Salmonella expressing M2e and CD154 epitopes increases protection and decreases viral shedding after low pathogenic avian influenza challenge.
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Vaccination of chickens with recombinant Salmonella expressing M2e and CD154 epitopes increases protection and decreases viral shedding after low pathogenic avian influenza challenge.

机译:在低致病性禽流感攻击后,用表达M2e和CD154表位的重组沙门氏菌对鸡进行疫苗接种可增强保护作用,并减少病毒脱落。

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摘要

Avian influenza (AI) is a significant public health concern and serious economic threat to the commercial poultry industry worldwide. Previous research demonstrates that antibodies against M2e confer protection against influenza challenge. Using the Red recombinase system in combination with overlapping extension PCR, we recently developed several novel attenuated Salmonella Enteritidis strains that express a protective M2e epitope in combination with a potential immune-enhancing CD154 peptide sequence on the Salmonella outer membrane protein lamB. Commercial Leghorn chicks were orally immunized (immunization dose: 10e to 10i cfu/chick) with saline (negative control) or one of the recombinant Salmonella strains [aroA M2e-CD154, htrA M2e-CD154, aroA-htrA M2e(4)-CD154] on day of hatch and 21 d posthatch. These candidate vaccine strains were evaluated for their ability to invade, colonize, and persist in tissues and elicit an M2e-specific antibody response. The vaccine candidate strain aroA M2e-CD154 exhibited significantly greater organ invasion in the liver and spleen at d 7 (P > 0.05); however, no marked differences in colonization of the cecal tonsils were observed. Vaccinated chickens exhibited significantly increased M2e-specific IgG responses, which were further enhanced by simultaneous expression of CD154 (P < 0.05). Virus neutralization assays gave neutralizing indices of 6.6, 6.3, and 6.3 for aroA M2e-CD154, htrA M2e-CD154, and aroA-htrA M2e(4)-CD154 seven days post booster immunization, respectively, indicating effective neutralization of AI by serum IgG of vaccinated chickens. In a subsequent direct challenge study, specific-pathogen-free Leghorn chicks immunized with aroA-htrA M2e(4)-CD154 offered significant protection against direct challenge with low pathogenic AI H7N2, but not highly pathogenic H5N1 AI. Taken together, these data suggest that these Salmonella-vectored vaccines expressing M2e in association with CD154 are effective at protecting chickens against low pathogenic AI.
机译:禽流感(AI)是一项重大的公共卫生问题,对全球商业家禽业造成严重的经济威胁。先前的研究表明,针对M2e的抗体可提供针对流感挑战的保护。使用Red重组酶系统结合重叠延伸PCR,我们最近开发了几种新颖的减毒肠炎沙门氏菌菌株,它们与沙门氏菌外膜蛋白lamB上的潜在免疫增强CD154肽序列结合表达保护性M2e表位。用生理盐水(阴性对照)或一种重组沙门氏菌菌株[aroA M2e-CD154,htrA M2e-CD154,aroA-htrA M2e(4)-CD154)口服免疫(免疫剂量:10e至10i cfu /小鸡)商业来亨鸡雏鸡]在孵化日和孵化后21天。对这些候选疫苗株侵袭,定植和在组织中持续并引发M2e特异性抗体应答的能力进行了评估。候选疫苗aroA M2e-CD154在第7天表现出明显更大的肝脏和脾脏器官侵袭性(P> 0.05)。然而,在盲肠扁桃体的定植中没有观察到明显差异。接种疫苗的鸡表现出明显增强的M2e特异性IgG反应,并通过同时表达CD154进一步增强(P <0.05)。加强免疫后7天,病毒中和测定的aroA M2e-CD154,htrA M2e-CD154和aroA-htrA M2e(4)-CD154的中和指数分别为6.6、6.3和6.3,表明血清IgG对AI的有效中和接种鸡。在随后的直接攻击研究中,用aroA-htrA M2e(4)-CD154免疫的无特定病原的来克亨鸡提供了针对低病原性AI H7N2而不是高病原性H5N1 AI的直接攻击的显着保护作用。综上所述,这些数据表明,这些表达M2e与CD154结合的沙门氏菌载体疫苗可有效保护鸡只抵抗低致病性AI。

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