Hooper Jay W, Golden Joseph W, Ferro Anthony M, King Alan D
Virology Division, United States Army Medical Research Institute of Infectious Diseases, Fort Detrick, MD 21702, USA.
Vaccine. 2007 Feb 26;25(10):1814-23. doi: 10.1016/j.vaccine.2006.11.017. Epub 2006 Nov 27.
Previously, we demonstrated that an experimental smallpox DNA vaccine comprised of four vaccinia virus genes (4pox) administered by gene gun elicited protective immunity in mice challenged with vaccinia virus, and in nonhuman primates challenged with monkeypox virus (Hooper JW, et al. Smallpox DNA vaccine protects nonhuman primates against lethal monkeypox. J Virol 2004;78:4433-43). Here, we report that this 4pox DNA vaccine can be efficiently delivered by a novel method involving skin electroporation using plasmid DNA-coated microneedle arrays. Mice vaccinated with the 4pox DNA vaccine mounted robust antibody responses against the four immunogens-of-interest, including neutralizing antibody titers that were greater than those elicited by the traditional live virus vaccine administered by scarification. Moreover, vaccinated mice were completely protected against a lethal (>10LD(50)) intranasal challenge with vaccinia virus strain IHD-J. To our knowledge, this is the first demonstration of a protective immune response being elicited by microneedle-mediated skin electroporation.
此前,我们证明了一种由四个痘苗病毒基因组成的实验性天花DNA疫苗(4pox),通过基因枪给药,可在感染痘苗病毒的小鼠以及感染猴痘病毒的非人灵长类动物中引发保护性免疫(Hooper JW等人,《天花DNA疫苗保护非人灵长类动物免受致命猴痘感染》,《病毒学杂志》2004年;78:4433 - 4433)。在此,我们报告这种4pox DNA疫苗可通过一种新方法有效递送,该方法涉及使用包被有质粒DNA的微针阵列进行皮肤电穿孔。用4pox DNA疫苗接种的小鼠针对四种目标免疫原产生了强烈的抗体反应,包括中和抗体滴度,其高于通过划痕接种传统活病毒疫苗所引发的中和抗体滴度。此外,接种疫苗的小鼠完全抵御了痘苗病毒株IHD - J的致死性(>10LD50)鼻内攻击。据我们所知,这是首次证明微针介导的皮肤电穿孔可引发保护性免疫反应。