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鼻腔内递送负载 FMDV DNA 疫苗编码 IL-6 的阳离子 PLGA 纳米/微粒引发针对 FMDV 挑战的保护性免疫。

Intranasal delivery of cationic PLGA nano/microparticles-loaded FMDV DNA vaccine encoding IL-6 elicited protective immunity against FMDV challenge.

机构信息

State Key Laboratory of Veterinary Etiological Biology, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, Gansu, China.

出版信息

PLoS One. 2011;6(11):e27605. doi: 10.1371/journal.pone.0027605. Epub 2011 Nov 15.

Abstract

Mucosal vaccination has been demonstrated to be an effective means of eliciting protective immunity against aerosol infections of foot and mouth disease virus (FMDV) and various approaches have been used to improve mucosal response to this pathogen. In this study, cationic PLGA (poly(lactide-co-glycolide)) nano/microparticles were used as an intranasal delivery vehicle as a means administering FMDV DNA vaccine encoding the FMDV capsid protein and the bovine IL-6 gene as a means of enhancing mucosal and systemic immune responses in animals. Three eukaryotic expression plasmids with or without bovine IL-6 gene (pc-P12A3C, pc-IL2AP12A3C and pc-P12AIL3C) were generated. The two latter plasmids were designed with the IL-6 gene located either before or between the P12A and 3C genes, respectively, as a means of determining if the location of the IL-6 gene affected capsid assembly and the subsequent immune response. Guinea pigs and rats were intranasally vaccinated with the respective chitosan-coated PLGA nano/microparticles-loaded FMDV DNA vaccine formulations. Animals immunized with pc-P12AIL3C (followed by animals vaccinated with pc-P12A3C and pc-IL2AP12A3C) developed the highest levels of antigen-specific serum IgG and IgA antibody responses and the highest levels of sIgA (secretory IgA) present in mucosal tissues. However, the highest levels of neutralizing antibodies were generated in pc-IL2AP12A3C-immunized animals (followed by pc-P12AIL3C- and then in pc-P12A3C-immunized animals). pc-IL2AP12A3C-immunized animals also developed stronger cell mediated immune responses (followed by pc-P12AIL3C- and pc-P12A3C-immunized animals) as evidenced by antigen-specific T-cell proliferation and expression levels of IFN-γ by both CD4+ and CD8+ splenic T cells. The percentage of animals protected against FMDV challenge following immunizations with pc-IL2AP12A3C, pc-P12AIL3C or pc-P12A3C were 3/5, 1/5 and 0/5, respectively. These data suggested that intranasal delivery of cationic PLGA nano/microparticles loaded with various FMDV DNA vaccine formulations encoding IL-6 as a molecular adjuvant enhanced protective immunity against FMDV, particularly pc-IL2AP12A3C with IL-6 gene located before P12A3C gene.

摘要

黏膜免疫接种已被证明是一种有效的手段,可以诱导针对口蹄疫病毒(FMDV)气溶胶感染的保护性免疫,并且已经采用了各种方法来提高对这种病原体的黏膜反应。在本研究中,阳离子 PLGA(聚(乳酸-共-乙醇酸))纳米/微球被用作鼻内给药载体,以管理编码 FMDV 衣壳蛋白的 FMDV DNA 疫苗,并将牛 IL-6 基因作为增强动物黏膜和全身免疫反应的手段。生成了三个带有或不带有牛 IL-6 基因的真核表达质粒(pc-P12A3C、pc-IL2AP12A3C 和 pc-P12AIL3C)。后两个质粒的设计分别是将 IL-6 基因置于 P12A 和 3C 基因之前或之间,以确定 IL-6 基因的位置是否影响衣壳组装和随后的免疫反应。豚鼠和大鼠经鼻内接种壳聚糖包被的 PLGA 纳米/微球负载的 FMDV DNA 疫苗制剂。用 pc-P12AIL3C 免疫的动物(随后用 pc-P12A3C 和 pc-IL2AP12A3C 免疫的动物)产生了最高水平的抗原特异性血清 IgG 和 IgA 抗体反应以及在黏膜组织中存在的最高水平的 sIgA(分泌型 IgA)。然而,在 pc-IL2AP12A3C 免疫的动物中产生了最高水平的中和抗体(随后是 pc-P12AIL3C 和 pc-P12A3C 免疫的动物)。pc-IL2AP12A3C 免疫的动物还产生了更强的细胞介导免疫反应(随后是 pc-P12AIL3C 和 pc-P12A3C 免疫的动物),这表现为抗原特异性 T 细胞增殖和 CD4+和 CD8+脾 T 细胞中 IFN-γ的表达水平。用 pc-IL2AP12A3C、pc-P12AIL3C 或 pc-P12A3C 免疫后,动物对 FMDV 攻击的保护率分别为 3/5、1/5 和 0/5。这些数据表明,鼻腔内递呈负载各种 FMDV DNA 疫苗制剂的阳离子 PLGA 纳米/微球,其中编码 IL-6 的作为分子佐剂,增强了针对 FMDV 的保护性免疫,特别是将 IL-6 基因置于 P12A3C 基因之前的 pc-IL2AP12A3C。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/865d/3216981/05866eca2441/pone.0027605.g001.jpg

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