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给药部位会影响DNA疫苗电穿孔诱导的免疫反应的类型和强度。

The site of administration influences both the type and the magnitude of the immune response induced by DNA vaccine electroporation.

作者信息

Vandermeulen Gaëlle, Vanvarenberg Kevin, De Beuckelaer Ans, De Koker Stefaan, Lambricht Laure, Uyttenhove Catherine, Reschner Anca, Vanderplasschen Alain, Grooten Johan, Préat Véronique

机构信息

Université catholique de Louvain, Louvain Drug Research Institute, Advanced Drug Delivery and Biomaterials, Brussels, Belgium.

Department of Biomedical Molecular Biology, Ghent University, Ghent, Belgium.

出版信息

Vaccine. 2015 Jun 22;33(28):3179-85. doi: 10.1016/j.vaccine.2015.05.005. Epub 2015 May 14.

Abstract

We investigated the influence of the site of administration of DNA vaccine on the induced immune response. DNA vaccines were administered by electroporation at three different sites: tibial cranial muscle, abdominal skin and ear pinna. Aiming to draw general conclusions about DNA vaccine delivery, we successively used several plasmids encoding either luciferase and ovalbumin as models or gp160 and P1A as vaccines against HIV and P815 mastocytoma, respectively. Low levels and duration of luciferase transgene expression were observed after electroporation of the abdominal skin, partly explaining its lower immunogenic performance as compared to the other sites of administration. Analyses of OT-I CD8+ and OT-II CD4+ T cell responses highlighted the differential impact of the delivery site on the elicited immune response. Muscle electroporation induced the strongest humoral immune response and both muscle and ear pinna sites induced cellular immunity against gp160. Ear pinna delivery generated the highest level of CTL responses against P1A but electroporation of muscle and ear pinna were equally efficient in delaying P815 growth and improving mice survival. The present study demonstrated that the site of administration is a key factor to be tested in the development of DNA vaccine.

摘要

我们研究了DNA疫苗接种部位对诱导免疫反应的影响。通过电穿孔法在三个不同部位接种DNA疫苗:胫骨颅侧肌、腹部皮肤和耳廓。为了得出关于DNA疫苗递送的一般性结论,我们先后使用了几种分别编码荧光素酶和卵清蛋白作为模型的质粒,以及编码gp160和P1A分别作为抗HIV疫苗和抗P815肥大细胞瘤疫苗的质粒。在腹部皮肤进行电穿孔后,观察到荧光素酶转基因表达水平较低且持续时间较短,这部分解释了其与其他接种部位相比免疫原性较低的原因。对OT-I CD8+和OT-II CD4+ T细胞反应的分析突出了接种部位对引发的免疫反应的不同影响。肌肉电穿孔诱导出最强的体液免疫反应,肌肉和耳廓部位均诱导出针对gp160的细胞免疫。耳廓接种产生了针对P1A的最高水平的CTL反应,但肌肉和耳廓的电穿孔在延缓P815生长和提高小鼠存活率方面同样有效。本研究表明,接种部位是DNA疫苗开发中需要测试的关键因素。

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