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利用抗生素抗性游离质粒生成安全性增强的鸡沙门氏菌“幽灵”及其作为禽伤寒有效灭活疫苗候选物的潜力。

Generation of a safety enhanced Salmonella Gallinarum ghost using antibiotic resistance free plasmid and its potential as an effective inactivated vaccine candidate against fowl typhoid.

机构信息

College of Veterinary Medicine, Chonbuk National University, Jeonju 561-756, Republic of Korea.

出版信息

Vaccine. 2014 Feb 19;32(9):1093-9. doi: 10.1016/j.vaccine.2013.12.053. Epub 2014 Jan 7.

Abstract

A safety enhanced Salmonella Gallinarum (SG) ghost was constructed using an antibiotic resistance gene free plasmid and evaluated its potential as fowl typhoid (FT) vaccine candidate. The antibiotic resistance free pYA3342 plasmid possesses aspartate semialdehyde dehydrogenase gene which is complimentary to the deletion of the chromosomal asd gene in the bacterial host. This plasmid was incorporated with a ghost cassette containing the bacteriophage PhiX174 lysis gene E, designated as pJHL101. The plasmid pJHL101 was transformed into a two virulence genes-deleted SG. The SG ghosts with tunnel formation and loss of cytoplasmic contents were observed by scanning electron microscopy and transmission electron microscopy. The cell viability of the culture solution was decreased to 0% at 24h after the induction of gene E expression by an increase in temperature from 37°C to 42°C. The safety and protective efficacy of the SG ghost vaccine was further examined in chickens which were divided into three groups: group A (non-immunized control), group B (orally immunized), and group C (intramuscularly immunized). The birds were immunized at 7d of age. No clinical symptoms associated with FT such as anorexia, depression and greenish diarrhea were observed in the immunized chickens. Upon challenge with a virulent SG strain at 3 week post-immunization, the chickens immunized with the SG ghost via various routes were efficiently protected, as shown by significantly lower mortality and post-mortem lesions in comparison with control group. In addition, all the immunized chickens showed significantly higher antibody responses accompanied by a potent antigen-specific lymphocyte proliferative response along with significantly increased numbers of CD4⁺ and CD8⁺ T lymphocytes. Overall, our results provide a promising approach of generating SG ghosts using the antibiotic resistance free plasmid in order to prepare a non-living bacterial vaccine candidate which could be environmentally safe yet efficient to prevent FT in chickens.

摘要

构建了一种安全性增强的鸡白痢沙门氏菌(SG)噬菌体,该噬菌体不含抗生素抗性基因,并评估了其作为禽伤寒(FT)疫苗候选物的潜力。该抗生素抗性质粒 pYA3342 含有天冬氨酸半醛脱氢酶基因,该基因与细菌宿主中染色体 asd 基因的缺失互补。该质粒与包含噬菌体 PhiX174 裂解基因 E 的噬菌体空壳基因盒一起,命名为 pJHL101。将质粒 pJHL101 转化到两个毒力基因缺失的 SG 中。通过将温度从 37°C 升高到 42°C,诱导基因 E 表达后 24 小时,观察到具有隧道形成和细胞质内容物丢失的 SG 噬菌体空壳。当培养物中的细胞活力在基因 E 表达后 24 小时内降低至 0%时,用扫描电子显微镜和透射电子显微镜观察到。将鸡分为三组:A 组(未免疫对照)、B 组(口服免疫)和 C 组(肌肉内免疫)进一步研究 SG 噬菌体空壳疫苗的安全性和保护效力。鸡在 7 日龄时免疫。免疫鸡未观察到与 FT 相关的临床症状,如厌食、抑郁和绿色腹泻。在免疫后 3 周攻毒强毒 SG 株时,通过各种途径用 SG 噬菌体空壳免疫的鸡得到了有效保护,与对照组相比,死亡率和死后病变明显降低。此外,所有免疫鸡均表现出明显更高的抗体反应,并伴随着强烈的抗原特异性淋巴细胞增殖反应,同时 CD4+和 CD8+T 淋巴细胞数量显著增加。总的来说,我们的结果提供了一种有前途的方法,即用抗生素抗性质粒制备 SG 噬菌体空壳,以制备一种非生活细菌疫苗候选物,该候选物在环境上安全且高效,可预防鸡的 FT。

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