Kanazawa T, Takashima Y, Hirayama S, Okada H
Laboratories of Pharmaceutics and Drug Delivery, Department of Pharmaceutical Science, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo 192-0392, Japan.
Int J Pharm. 2008 Aug 6;360(1-2):164-70. doi: 10.1016/j.ijpharm.2008.04.038. Epub 2008 May 3.
Human immunodeficiency virus (HIV) infections mainly occur through the vaginal and rectal mucosal membranes. In the present study, to develop a DNA vaginal vaccine against viral and bacterial infections, the effects of the menstrual cycle on DNA transfection through the vaginal mucosa in female mice and transfection enhancement by electroporation, a chelating agent, cell-penetrating peptides (CPP) and nuclear localizing signals (NLS) were investigated. The transfection efficiencies of a marker plasmid DNA (pDNA), pCMV-Luc, on the vaginal mucosal membrane in mice at the stages of metestrus and diestrus were significantly higher than those at the stages of proestrus and estrus. The gene expression was markedly enhanced by electroporation and by pretreatment with the chelating agent. The highest level of expression was obtained by 2h pretreatment with 5% citric acid solution combined with electroporation with 15 pulses at 250 V/cm for 5 milliseconds (ms). Furthermore, a synergistic promoting effect on pDNA transfection was obtained by co-administration of CPP, the Tat peptide analog, and NLS, the NF-kappaB analog. These results indicate that effective DNA vaccination administered through the vaginal tract is possible by selecting the menstrual stage and overcoming the mucosal barrier using a combination of methods that promotes uptake.
人类免疫缺陷病毒(HIV)感染主要通过阴道和直肠黏膜发生。在本研究中,为开发一种针对病毒和细菌感染的DNA阴道疫苗,研究了月经周期对雌性小鼠阴道黏膜DNA转染的影响,以及电穿孔、螯合剂、细胞穿透肽(CPP)和核定位信号(NLS)对转染的增强作用。标记质粒DNA(pDNA)pCMV-Luc在小鼠阴道黏膜的间情期和动情后期阶段的转染效率显著高于发情前期和发情期阶段。电穿孔和用螯合剂预处理可显著增强基因表达。通过用5%柠檬酸溶液预处理2小时并结合在250 V/cm下以15个脉冲进行5毫秒(ms)的电穿孔,可获得最高水平的表达。此外,通过共同施用CPP(Tat肽类似物)和NLS(NF-κB类似物),对pDNA转染产生了协同促进作用。这些结果表明,通过选择月经阶段并使用促进摄取的方法组合克服黏膜屏障,通过阴道途径进行有效的DNA疫苗接种是可能的。