首页> 外文OA文献 >Enhancement of Immune Responses by an Attenuated Salmonella enterica Serovar Typhimurium Strain Secreting an Escherichia coli Heat-Labile Enterotoxin B Subunit Protein as an Adjuvant for a Live Salmonella Vaccine Candidate▿
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Enhancement of Immune Responses by an Attenuated Salmonella enterica Serovar Typhimurium Strain Secreting an Escherichia coli Heat-Labile Enterotoxin B Subunit Protein as an Adjuvant for a Live Salmonella Vaccine Candidate▿

机译:减毒肠炎沙门氏菌血清型鼠伤寒沙门氏菌菌株的分泌,该菌株分泌大肠杆菌热不稳定肠毒素B亚基蛋白作为活沙门氏菌疫苗候选者的佐剂▿

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摘要

A plasmid harboring eltB, the gene encoding heat-labile enterotoxin (LTB), was constructed by insertion of eltB into an Asd+ β-lactamase signal plasmid (pMMP65). This was introduced into the Δlon ΔcpxR Δasd Salmonella enterica serovar Typhimurium strain and designated the LTB adjuvant strain. LTB protein production and secretion from the strain were demonstrated with an immunoblot assay and enzyme-linked immunosorbent assay. The LTB strain was evaluated for enhancement of immunity and protection efficacy induced by a previously constructed live Salmonella vaccine candidate. In addition, immunization strategies using the LTB strain were optimized for effective salmonellosis protection. Seventy female BALB/c mice were divided into seven groups (A to G; n = 10 mice per group). Mice were primed at 6 weeks of age and boosted at 9 weeks of age. All mice were orally challenged with a virulent wild-type strain at week 3 postbooster. Serum IgG and IgA titers from mice immunized with the LTB strain alone or with a mixture of the LTB strain and the vaccine candidate were significantly increased. The secretory IgA titers from mice immunized with the LTB strain alone or with the mixture were at least 2.2 times greater than those of control mice. In addition, all group E mice (primed with the vaccine-LTB mixture and boosted with the vaccine candidate) were free of clinical signs of salmonellosis and survived a virulent challenge. In contrast, death due to the challenge was 100% in control mice, 80% in group A mice (single immunization with the vaccine candidate), 60% in group B mice (primed and boosted with the vaccine candidate), 40% in group C mice (single immunization with the LTB strain), 30% in group D mice (primed and boosted with the LTB strain), and 30% in group F mice (primed and boosted with the vaccine-LTB mixture). These results suggest that vaccination with the LTB strain, especially when added at the prime stage only, effectively enhances immune responses and protection against salmonellosis.
机译:通过将eltB插入Asd +β-内酰胺酶信号质粒(pMMP65)中,构建了一个带有eltB的质粒,该基因编码不耐热肠毒素(LTB)。将其引入ΔlonΔcpxRΔasd肠沙门氏菌鼠伤寒沙门氏菌菌株,并命名为LTB佐剂菌株。用免疫印迹测定法和酶联免疫吸附测定法证实了菌株中LTB蛋白的产生和分泌。评估了LTB菌株增强了先前构建的活沙门氏菌疫苗候选物诱导的免疫力和保护功效。此外,使用LTB菌株的免疫策略已得到优化,可有效保护沙门氏菌病。将70只雌性BALB / c小鼠分成7组(A至G;每组n = 10只小鼠)。小鼠在6周龄时被启动,并在9周龄时被加强。升压后第3周,所有小鼠均经强毒野生型菌株口服攻击。单独使用LTB菌株或LTB菌株与候选疫苗混合免疫的小鼠的血清IgG和IgA滴度显着提高。单独用LTB菌株或用混合物免疫的小鼠的分泌型IgA滴度至少是对照小鼠的2.2倍。此外,所有E组小鼠(用疫苗-LTB混合物进行初次接种,并用候选疫苗加强接种)均无沙门氏菌病的临床征象,并在强毒攻击中幸免。相比之下,攻击引起的死亡在对照组小鼠中为100%,在A组小鼠中为80%(用候选疫苗单次免疫),在B组小鼠中为60%(用疫苗候选者初免和加强免疫),在组中为40% C小鼠(用LTB菌株单次免疫),D组小鼠(用LTB菌株初免和加强)30%和F组小鼠(用疫苗-LTB混合物初免和加强)30%。这些结果表明,LTB菌株的疫苗接种(尤其是仅在初生阶段添加疫苗)可有效增强免疫反应和预防沙门氏菌病。

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    Hur, Jin; Lee, John Hwa;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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