McCoy Jay R, Mendoza Janess M, Spik Kristin W, Badger Catherine, Gomez Alan F, Schmaljohn Connie S, Sardesai Niranjan Y, Broderick Kate E
a Inovio Pharmaceuticals Inc. ; Plymouth Meeting , PA USA.
Hum Vaccin Immunother. 2014;10(10):3039-47. doi: 10.4161/hv.29671. Epub 2014 Nov 21.
The identification of an effective and tolerable delivery method is a necessity for the success of DNA vaccines in the clinic. This manuscript describes the development and validation of a multi-headed intradermal electroporation device which would be applicable for delivering multiple DNA vaccine plasmids simultaneously but spatially separated. Reporter gene plasmids expressing green and red fluorescent proteins were used to demonstrate the impact of spatial separation on DNA delivery to increase the number of transfected cells and avoid interference through visible expression patterns. To investigate the impact of plasmid interference on immunogenicity, a disease target was investigated where issues with multi-valent vaccines had been previously described. DNA-based Hantaan and Puumala virus vaccines were delivered separately or as a combination and the effect of multi-valence was determined by appropriate assays. While a negative impact was observed for both antigenic vaccines when delivered together, these effects were mitigated when the vaccine was delivered using the multi-head device. We also demonstrate how the multi-head device facilitates higher dose delivery to the skin resulting in improved immune responses. This new multi-head platform device is an efficient, tolerable and non-invasive method to deliver multiple plasmid DNA constructs simultaneously allowing the tailoring of delivery sites for combination vaccines. Additionally, this device would allow the delivery of multi-plasmid vaccine formulations without risk of impacted immune responses through interference. Such a low-cost, easy to use device platform for the delivery of multi-agent DNA vaccines would have direct applications by the military and healthcare sectors for mass vaccination purposes.
确定一种有效且耐受性良好的递送方法是DNA疫苗在临床上取得成功的必要条件。本手稿描述了一种多头皮内电穿孔装置的开发和验证,该装置适用于同时递送多个DNA疫苗质粒,但在空间上是分开的。使用表达绿色和红色荧光蛋白的报告基因质粒来证明空间分离对DNA递送的影响,以增加转染细胞的数量,并通过可见的表达模式避免干扰。为了研究质粒干扰对免疫原性的影响,研究了一个先前已描述过多价疫苗问题的疾病靶点。基于DNA的汉坦病毒和普马拉病毒疫苗分别或联合递送,并通过适当的检测方法确定多价效应。虽然两种抗原疫苗一起递送时观察到负面影响,但当使用多头装置递送疫苗时,这些影响会减轻。我们还展示了多头装置如何促进向皮肤递送更高剂量的疫苗,从而改善免疫反应。这种新的多头平台装置是一种有效、耐受性良好且非侵入性的方法,可同时递送多个质粒DNA构建体,允许为联合疫苗定制递送部位。此外,该装置可递送多质粒疫苗制剂,而不会因干扰而产生影响免疫反应的风险。这样一种低成本、易于使用的多剂DNA疫苗递送装置平台将直接应用于军事和医疗保健部门的大规模疫苗接种目的。