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首页> 外文期刊>Avian Pathology >Evaluation of the adjuvant effect of Salmonella-based Escherichia coli heat-labile toxin B subunits on the efficacy of a live Salmonella-delivered avian pathogenic Escherichia coli vaccine.
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Evaluation of the adjuvant effect of Salmonella-based Escherichia coli heat-labile toxin B subunits on the efficacy of a live Salmonella-delivered avian pathogenic Escherichia coli vaccine.

机译:评估沙门氏菌为基础的热不稳定毒素B亚基对活沙门氏菌递送的禽致病性大肠杆菌疫苗的功效的佐剂作用。

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摘要

The present study evaluated the adjuvant effect of live attenuated salmonella organisms expressing the heat-labile toxin of Escherichia coli B subunit (LTB) on the efficacy of an avian pathogenic Escherichia coli (APEC) vaccine. The Asd+ (aspartate semialdehyde dehydrogenase) plasmid pMMP906 containing the LTB gene was introduced into a Salmonella enterica Typhimurium strain lacking the lon, cpxR and asd genes to generate the adjuvant strain. Live recombinant Salmonella-delivered APEC vaccine candidates were used for this study. The birds were divided into three groups: group A, non-vaccinated controls; group B, immunized with vaccine candidates only; and group C, immunized with vaccine candidates and the LTB strain. The immune responses were measured and the birds were challenged at 21 days of age with a virulent APEC strain. Group C showed a significant increase in plasma IgG and intestinal IgA levels and a significantly higher lymphocyte proliferation response compared with the other groups. Upon challenge with the virulent APEC strain, group C showed effective protection whereas group B did not. We also attempted to optimize the effective dose of the adjuvant. The birds were immunized with the vaccine candidates together with 1x107 or 1x108 colony-forming units of the LTB strain and were subsequently challenged at 3 weeks of age. The 1x107 colony-forming units of the LTB strain showed a greater adjuvant effect with increased levels of serum IgG, intestinal IgA and a potent lymphocyte proliferation response, and yielded higher protection against challenge. Overall, the LTB strain increased the efficacy of the Salmonella-delivered APEC vaccine, indicating that vaccination for APEC along with the LTB strain appears to increase the efficacy for protection against colibacillosis in broiler chickens.
机译:本研究评估了表达大肠杆菌B亚基(LTB)热不稳定毒素的减毒活沙门氏菌对禽病原性大肠杆菌(APEC)疫苗功效的佐剂作用。将含有LTB基因的Asd + (天冬氨酸半醛脱氢酶)质粒pMMP906引入缺乏lon,cpxR和asd基因的肠伤寒沙门氏菌菌株,以产生佐剂菌株。活重组沙门氏菌递送的APEC疫苗候选物用于本研究。禽类分为三组:A组,未接种疫苗的对照组; A组,未接种疫苗的对照组。 B组,仅用候选疫苗免疫; C组,用候选疫苗和LTB菌株免疫。测量免疫应答,并用强力APEC株在21日龄时对鸡进行攻击。与其他组相比,C组显示血浆IgG和肠道IgA水平显着增加,并且淋巴细胞增殖反应显着提高。用强力APEC菌株攻击后,C组显示出有效的保护作用,而B组则没有。我们还试图优化佐剂的有效剂量。用候选疫苗以及LTB菌株的1x10 7 或1x10 8 菌落形成单位对禽类进行免疫,然后在3周龄时对其进行攻击。 LTB菌株的1x10 7 集落形成单位表现出更大的佐剂作用,其血清IgG水平,肠道IgA含量增加和有效的淋巴细胞增殖反应增强,并且对攻击具有更高的保护作用。总体而言,LTB菌株提高了沙门氏菌运送的APEC疫苗的功效,表明APEC的疫苗接种与LTB菌株一起似乎增强了肉鸡预防大肠杆菌病的功效。

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