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皮内 DNA 疫苗接种通过低电流电穿孔增强,可提高抗原表达并诱导强烈的细胞和体液免疫应答。

Intradermal DNA vaccination enhanced by low-current electroporation improves antigen expression and induces robust cellular and humoral immune responses.

机构信息

Department of Pathology, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Hum Gene Ther. 2012 Sep;23(9):943-50. doi: 10.1089/hum.2012.055. Epub 2012 Aug 2.

Abstract

DNA represents an ideal vaccine platform for HIV and many infectious diseases because of its safety, stability, and ease of manufacture. However, the immunogenicity of DNA vaccines has traditionally been low compared with viral vectors, recombinant protein, and live attenuated vaccines. The immunogenicity of DNA vaccines has been significantly enhanced by delivery with in vivo electroporation. Further improvements now allow electroporation to be performed in the dermis, which could potentially improve patient tolerability and may further enhance immunogenicity. In this study we examined how the current of intradermal vaccination impacts antigen expression, inflammation, and the induction of both humoral and cellular immunity in guinea pigs and nonhuman primates. We observed that a lower (0.1 A) current reduced inflammation and improved antigen expression compared with a 0.2 A current. The improved antigen expression resulted in a trend toward higher cellular immune responses but no impact on HIV- and influenza-specific binding titers. This study highlights the need for optimization of electroporation conditions in vivo in order to balance enhanced plasmid transfection with a loss of expression due to tissue inflammation and necrosis. These results suggest that a lower, 0.1-A current may not only improve patient tolerability but also improve immunogenicity.

摘要

DNA 因其安全性、稳定性和易于制造而成为 HIV 和许多传染病的理想疫苗平台。然而,与病毒载体、重组蛋白和减毒活疫苗相比,DNA 疫苗的免疫原性通常较低。通过体内电穿孔递送可显著提高 DNA 疫苗的免疫原性。进一步的改进现在允许在真皮中进行电穿孔,这可能潜在地提高患者的耐受性,并可能进一步增强免疫原性。在这项研究中,我们研究了皮内接种的电流如何影响抗原表达、炎症以及豚鼠和非人灵长类动物体液和细胞免疫的诱导。我们观察到,与 0.2 A 电流相比,较低的(0.1 A)电流可减少炎症并改善抗原表达。改善的抗原表达导致细胞免疫反应呈上升趋势,但对 HIV 和流感特异性结合滴度没有影响。这项研究强调了需要优化体内电穿孔条件,以平衡增强的质粒转染与因组织炎症和坏死导致的表达丧失。这些结果表明,较低的 0.1 A 电流不仅可以提高患者的耐受性,还可以提高免疫原性。

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