School of Biological Sciences , Royal Holloway University of London, Egham, Surrey TW20 0EX, UK.
J Control Release. 2012 May 10;159(3):376-83. doi: 10.1016/j.jconrel.2012.01.035. Epub 2012 Jan 28.
Particulate antigen assemblies in the nanometer range and DNA plasmids are particularly interesting for designing vaccines. We hypothesised that a combination of these approaches could result in a new delivery method of gp160 envelope HIV-1 vaccine which could combine the potency of virus-like particles (VLPs) and the simplicity of use of DNA vaccines. Characterisation of lentivirus-like particles (lentiVLPs) by western blot, dynamic light scattering and electron microscopy revealed that their protein pattern, size and structure make them promising candidates for HIV-1 vaccines. Although all particles were similar with regard to size and distribution, they clearly differed in p24 capsid protein content suggesting that Rev may be required for particle maturation and Gag processing. In vivo, lentiVLP pseudotyping with the gp160 envelope or with a combination of gp160 and VSV-G envelopes did not influence the magnitude of the immune response but the combination of lentiVLPs with Alum adjuvant resulted in a more potent response. Interestingly, the strongest immune response was obtained when plasmids encoding lentiVLPs were co-delivered to mice muscles by electrotransfer, suggesting that lentiVLPs were efficiently produced in vivo or the packaging genes mediate an adjuvant effect. DNA electrotransfer of plasmids encoding lentivirus-like particles offers many advantages and appears therefore as a promising delivery method of HIV-1 vaccines.
纳米级颗粒性抗原组装体和 DNA 质体特别适合用于设计疫苗。我们假设,这些方法的结合可能会产生一种新的 HIV-1 包膜 gp160 疫苗传递方法,这种方法可以结合病毒样颗粒(VLPs)的效力和 DNA 疫苗的使用简单性。通过 Western blot、动态光散射和电子显微镜对慢病毒样颗粒(lentiVLPs)进行了表征,发现它们的蛋白模式、大小和结构使它们成为 HIV-1 疫苗的有前途的候选物。尽管所有颗粒在大小和分布方面都相似,但它们在 p24 衣壳蛋白含量上明显不同,这表明 Rev 可能是颗粒成熟和 Gag 加工所必需的。在体内,用 gp160 包膜或 gp160 和 VSV-G 包膜的组合对 lentiVLP 进行假型化并不影响免疫反应的大小,但将 lentiVLPs 与 Alum 佐剂联合使用会导致更有效的反应。有趣的是,当通过电转移将编码 lentiVLPs 的质粒共递送至小鼠肌肉时,会获得最强的免疫反应,这表明 lentiVLPs 在体内被有效地产生,或者包装基因介导了佐剂效应。编码慢病毒样颗粒的质粒的 DNA 电转移具有许多优势,因此似乎是 HIV-1 疫苗的一种很有前途的传递方法。