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渔用菌蜕疫苗的研究进展 |
姜娜, 邢薇, 马志宏, 李铁梁, 罗琳 |
北京市农林科学院 北京市水产科学研究所 北京 100068 |
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Research Progress in Aquaculture Ghost Vaccines |
JIANG Na, XING Wei, MA Zhi-hong, LI Tie-liang, LUO Lin |
Beijing Fisheries Research Institute, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100068, China |
引用本文:
姜娜, 邢薇, 马志宏, 李铁梁, 罗琳. 渔用菌蜕疫苗的研究进展[J]. 中国生物工程杂志, 2013, 33(11): 112-117.
JIANG Na, XING Wei, MA Zhi-hong, LI Tie-liang, LUO Lin. Research Progress in Aquaculture Ghost Vaccines. China Biotechnology, 2013, 33(11): 112-117.
链接本文:
https://manu60.magtech.com.cn/biotech/CN/
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https://manu60.magtech.com.cn/biotech/CN/Y2013/V33/I11/112
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J Biotechnol, 1999, 73(2-3): 251-260. [12] Hensel A, Huter V, Katinger A, et al. Intramuscular imnunization with genetically inactivated (ghosts) Actinobacillus pleuropneumoniae serotype 9 protects pigs against homologous aerosol challenge and prevents carrier state. Vaccine, 2000, 18(26): 2945-2955. [13] Eko FO, Schukovskaya T, Lotzmanova EY, et al. Evaluation of the protective efficacy of Vibrio cholerae ghost (VCG) candidate vaccines in rabbits. Vaccine, 2003, 21(25-26): 3663-3674. [14] Marchart J, Dropmann G, Lechleimcr S, et al. Pasteurella multocida-and Pasteurella haemolytica-ghosts: new vaccine candidates. Vaccine, 2003, 21(25-26): 3988-3997. [15] Panthel K, Jechlinger W, Matis A, et al. Generation of Helicobacter pylori ghosts by PhiX protein E-mediated inactivation and their evaluation as vaccine candidates. Infect Immun, 2003, 71(1): 109-116. [16] Kwon S R, Nam Y K, Kim S K, et al.Generation of Edwardsiella tarda ghosts by bacteriophage PhiXl74 lysis gene E. Aquaculture, 2005, 250(1-2): 16-21. [17] Kwon S R, Nam Y K, Kim S K, et al. Protection of tilapia (Oreochromis mosambicus) from edwardsiellosis by vaccination with Edwardsiella tarda ghosts. Fish Shellfish Immunol, 2006, 20(4): 621-626. [18] Kwon S R, Lee E H, Nam Y K, et al. Efficacy of oral immunization with Edwardsiella tarda ghost against edwardsiellosis in olive flounder (Paralichthys olivaceus). Aquaculture, 2007, 269(1-4): 84-88. [19] 李宁求, 余露军, 付小哲等. 鳗源迟缓爱德华氏菌菌蜕的构建及制备条件优化. 水产学报, 2012, 36(11): 1754-1762. Li N, Yu L, Fu X, et al. Construction of Edwardsiella trada ghosts from eel and their optimization of preparation conditions. J of Fisheries of China, 2012, 36(11): 1754-1762. [20] Wang X, Lu C. Mice orally vaccinated with Edwardsiella tarda ghosts are significantly protected against infection. Vaccine, 2009, 27(10): 1571-1578. [21] 储卫华, 庄禧懿, 陆承平. 嗜水气单胞菌菌蜕的制备及其对银鲫的口服免疫. 微生物学报, 2008, 48(2): 202-206. Chu W H, Zhuang X Y, Lu C P. Generation of Aeromonas hydrophila ghosts and their evaluation as oral vaccine candidates in Carassius auratus gibelio. Acta Microbiologica Sinica, 2008, 48(2): 202-206. [22] Tu F P, Chu W H, Zhuang X Y, et al. Effect of oral immunization with Aeromonas hydrophila ghost on protection against experimental fish infection. Lett Appl Microbiol, 2010, 50(1): 13-17. [23] Zhu W, Yang G, Zhang Y, et al. Generation of biotechnology-derived Flavobacterium columnare ghosts by PhiX174 gene E-mediated inactivation and the potential as vaccine candidates against infection in grass carp. J Biomed Biotechnol, 2012: article id 760730. [24] Hossain M M M, Ehsan A, Rahman MA, et al. Responses of monosex nile tilapia (Oreochromis niloticus) to intraperitoneal challenge by Streptococcus iniae after vaccination with ghosts of the bacterium. Bangl Vet, 2012, 29(1): 31-37. [25] Kwon S R, Kang Y J, Lee D J, et al. Generation of vibrio anguillarum ghost by coexpression of PhiX 174 lysis E gene and staphylococcal nuclease a gene. Mol Biotechnol, 2009, 42(2): 154-159. [26] 侯贤, 新型渔用基因工程菌蜕疫苗的研制. 济南:山东师范大学, 2010. Hou X. New strategies for aquaculture vaccines based on the bacterial ghost system. Jinan: Shandong Normal University, 2010. [27] Paukner S, Kohl G, Jalava K, et al. Sealed bacterial ghosts-novel targeting vehicles for advanced drug delivery of water-soluble substances. J Drug Target, 2003, 11(3): 151-161. [28] Choi SH, Nam YK, Kim KH. Novel expression system for combined vaccine production in Edwardsiella tarda ghost and cadaver cells. Mol Biotechnol, 2010, 46(2): 127-133. |
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