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猪霍乱沙门菌载体介导猪瘟病毒DNA免疫研究
引用本文:乔红伟,孙金福,韩文瑜,李作生,余兴龙,涂长春.猪霍乱沙门菌载体介导猪瘟病毒DNA免疫研究[J].生物工程学报,2005,21(6):865-870.
作者姓名:乔红伟  孙金福  韩文瑜  李作生  余兴龙  涂长春
作者单位:1. 吉林大学农学部,长春,130062
2. 军事医学科学院军事兽医研究所,长春,130062
3. 军事医学科学院军事兽医研究所,长春,130062;吉林大学农学部,长春,130062
基金项目:国家高技术研究与发展计划项目资助(No.2004AA213101).
摘    要:构建了猪瘟病毒(CSFV)主要保护性抗原E2基因的真核表达质粒pVAXE2。将其电转化猪霍乱沙门氏菌C500疫苗株,得到了携带pVAXE2质粒的猪霍乱沙门氏菌工程菌株S.C500/pVAXE2,对该菌株的特征、培养特性和生化特性进行了鉴定。分别用1×108CFU、2×109CFU S.C500/pVAXE2经口服或肌肉注射免疫小鼠和家兔,间接ELISA检测免疫动物的特异性抗体,在第三次免疫后2周用20ID50猪瘟兔化弱毒和致死量猪霍乱沙门氏菌强毒株对免疫兔进行攻击。结果表明,S.C500/pVAXE2保持了猪霍乱沙门氏菌原有形态特征、培养特性和生化特性,免疫鼠和兔都产生了抗CSFV和猪霍乱沙门菌的ELISA抗体,免疫家兔能抵抗猪瘟兔化弱毒株和猪霍乱沙门氏菌强毒株的攻击。显示了以S.C500为DNA运输载体构建二联或多联猪用疫苗的可行性。

关 键 词:猪瘟病毒,  DNA免疫,  猪霍乱沙门菌弱毒疫苗株
文章编号:1000-3061(2005)06-0865-06
收稿时间:05 7 2005 12:00AM
修稿时间:07 12 2005 12:00AM

Salmonella choleraesuis C500 Delivering DNA Immunization Against Classical Swine Fever Virus
QIAO Hong-Wei,SUN Jin-Fu,HAN Wen-Yu,LI Zuo-Sheng,YU Xing-Long,TU Chang-Chun.Salmonella choleraesuis C500 Delivering DNA Immunization Against Classical Swine Fever Virus[J].Chinese Journal of Biotechnology,2005,21(6):865-870.
Authors:QIAO Hong-Wei  SUN Jin-Fu  HAN Wen-Yu  LI Zuo-Sheng  YU Xing-Long  TU Chang-Chun
Institution:Agricultural Division of Jilin University, Changchun 130062, China.
Abstract:Classical Swine Fever Virus (CSFV) E2 protein eukaryotic expression plasmid pVAXE2 was constructed. The plasmid pVAXE2 was transformed into Salmonella choleraesuis C500 (S. C500) attenuated vaccine strain by electroporation to generate Salmonella choleraesuis engineering strain S. C500/pVAXE2. The characterization of S. C500/pVAXE2 in morphology, growth, biochemistry and serology indicated that it retained the same properties as its original strain S. C500 with exception of kanamycin resistance originated from the plasmid pVAXE2. The plasmid stable in the bacteria after 15 passages. Kunming mice and rabbits were vaccinated three times at two weeks interval with S. C500/pVAXE2 in oral and intramuscular routes at the dosage of 1 x 10(8) CFU for mice and 2 x 10(9) CFU for rabbits each time. The specific antibody response against CSFV and Salmonella choleraesuis was detected by ELISA. Two weeks after the third boost the immunized rabbits were challenged with 20 ID50 of hog cholera lapinized virus (HCLV), followed by a virulent strain of Salmonella choleraesuis two week later than HCLV challenge. The results showed that all immunized mice and rabbits produced significant antibodies against CSFV and Salmonella choleraesuis, and the immunized rabbits demonstrated the effective protection against the challenge of HCLV and virulent Salmonella choleraesuis. These results indicated the potential of developing multiplex swine DNA vaccine by using this bacteria as the vector.
Keywords:CSFV  DNA immunization  Salmonella choleraesuis
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