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电穿孔引起的基因表达增加和炎性细胞浸润对于提高DNA疫苗的疗效均很重要。

Increased gene expression and inflammatory cell infiltration caused by electroporation are both important for improving the efficacy of DNA vaccines.

作者信息

Babiuk Shawn, Baca-Estrada Maria E, Foldvari Marianna, Middleton Dorothy M, Rabussay Deitmar, Widera Georg, Babiuk Lorne A

机构信息

College of Pharmacy and Nutrition, University of Saskatchewan, Saskatoon, Sask., Canada S7N 5C9.

出版信息

J Biotechnol. 2004 May 13;110(1):1-10. doi: 10.1016/j.jbiotec.2004.01.015.

Abstract

One potential reason for the enhancement of immune responses to DNA vaccines following electroporation is increased gene expression. However, the inflammatory response and accompanying cellular infiltration stimulated by electroporation may also be essential for enhancing immune responses to DNA vaccines. These parameters were investigated in pigs, using different electroporation conditions to induce different levels of gene expression and inflammation. Results indicated that the least effective strategy was conventional intramuscular injection where there was low gene expression and low inflammatory cell infiltration. The most efficacious strategy was plasmid administration immediately followed by electroporation. This latter set of conditions elicited a combination of high gene expression and high cellular infiltration. This indicates that electroporation enhances immune responses to DNA vaccines through increased gene expression and inflammatory cell infiltration.

摘要

电穿孔后对DNA疫苗免疫反应增强的一个潜在原因是基因表达增加。然而,电穿孔刺激的炎症反应及伴随的细胞浸润对于增强对DNA疫苗的免疫反应可能也至关重要。在猪身上对这些参数进行了研究,采用不同的电穿孔条件来诱导不同水平的基因表达和炎症。结果表明,最无效的策略是传统肌肉注射,其基因表达低且炎症细胞浸润少。最有效的策略是紧接着电穿孔进行质粒给药。后一组条件引发了高基因表达和高细胞浸润的组合。这表明电穿孔通过增加基因表达和炎症细胞浸润来增强对DNA疫苗的免疫反应。

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