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编码C3d-VP1融合蛋白的DNA疫苗免疫增强了针对口蹄疫病毒的保护性免疫反应。

Immunization of DNA vaccine encoding C3d-VP1 fusion enhanced protective immune response against foot-and-mouth disease virus.

作者信息

Fan Huiying, Tong Tiezhu, Chen Huanchun, Guo Aizhen

机构信息

National Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan, China.

出版信息

Virus Genes. 2007 Oct;35(2):347-57. doi: 10.1007/s11262-007-0105-0. Epub 2007 May 12.

Abstract

Because foot-and-mouth disease virus (FMDV) remains a great problem to many livestock of agricultural importance, safe, effective vaccines are in great need. DNA vaccine would be a promising candidate but the design remains to be optimized. VP1 gene of FMDV strain O/ES/2001 was linked to three copies of either porcine or murine C3d or four copies of a 28-aa fragment of murine C3d containing the CR2 receptor binding domain (M28). The resultant plasmids encoding C3d/M28-VP1 fusion or only VP1 as control were immunized guinea pigs. Both cellular and humoral immune responses were evaluated and protection was observed after virus challenge. As a result, although the plasmid encoding only VP1 could elicit virus-binding antibody detected by ELISA, splenocyte proliferation, IL-4 and IFN-gamma production, the levels were significantly less than C3d/M28-VP1 fusion. Furthermore, VP1 failed to induce neutralization antibody and protect animals against virus challenge, while murine C3d-VP1 fusion efficiently induced neutralization antibody response and provided 87.50% of the animals with complete protection and 12.50% with partial protection. Among murine C3d, M28, and porcine C3d, the adjuvant effect of murine C3d is strongest, followed by porcine C3d, and last murine M28. In conclusion, the fact that C3d genes, when coupled to VP1 gene, are able to greatly enhance the protective immune response of VP1 DNA in guinea pigs suggests that C3d-VP1 DNA chimera has a significant potential for use as a novel DNA vaccine against FMDV.

摘要

由于口蹄疫病毒(FMDV)仍然对许多具有农业重要性的家畜构成重大问题,因此迫切需要安全、有效的疫苗。DNA疫苗可能是一个有前途的候选者,但设计仍有待优化。将FMDV O/ES/2001株的VP1基因与猪或鼠C3d的三个拷贝或包含CR2受体结合域的鼠C3d的28个氨基酸片段(M28)的四个拷贝相连。将编码C3d/M28-VP1融合蛋白或仅编码VP1作为对照的所得质粒免疫豚鼠。评估了细胞免疫和体液免疫反应,并在病毒攻击后观察到了保护作用。结果,尽管仅编码VP1的质粒可诱导通过ELISA检测到的病毒结合抗体、脾细胞增殖、IL-4和IFN-γ产生,但水平明显低于C3d/M28-VP1融合蛋白。此外,VP1未能诱导中和抗体,也不能保护动物免受病毒攻击,而鼠C3d-VP1融合蛋白有效地诱导了中和抗体反应,并为87.50%的动物提供了完全保护,为12.50%的动物提供了部分保护。在鼠C3d、M28和猪C3d中,鼠C3d的佐剂作用最强,其次是猪C3d,最后是鼠M28。总之,C3d基因与VP1基因偶联时能够大大增强VP1 DNA在豚鼠中的保护性免疫反应,这一事实表明C3d-VP1 DNA嵌合体作为一种新型抗FMDV DNA疫苗具有巨大的应用潜力。

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