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一种表达多阶段疟原虫抗原的重组嵌合Ad5/3载体,采用异源初免-加强免疫方案可在小鼠中诱导保护性免疫。

A Recombinant Chimeric Ad5/3 Vector Expressing a Multistage Plasmodium Antigen Induces Protective Immunity in Mice Using Heterologous Prime-Boost Immunization Regimens.

作者信息

Cabrera-Mora Monica, Fonseca Jairo Andres, Singh Balwan, Zhao Chunxia, Makarova Natalia, Dmitriev Igor, Curiel David T, Blackwell Jerry, Moreno Alberto

机构信息

Emory Vaccine Center, Yerkes National Primate Research Center, Emory University, Atlanta, GA 30329;

Emory Vaccine Center, Yerkes National Primate Research Center, Emory University, Atlanta, GA 30329; Division of Infectious Diseases, Department of Medicine, Emory University, Atlanta, GA 30303; and.

出版信息

J Immunol. 2016 Oct 1;197(7):2748-61. doi: 10.4049/jimmunol.1501926. Epub 2016 Aug 29.

Abstract

An ideal malaria vaccine should target several stages of the parasite life cycle and induce antiparasite and antidisease immunity. We have reported a Plasmodium yoelii chimeric multistage recombinant protein (P. yoelii linear peptide chimera/recombinant modular chimera), engineered to express several autologous T cell epitopes and sequences derived from the circumsporozoite protein and the merozoite surface protein 1. This chimeric protein elicits protective immunity, mediated by CD4(+) T cells and neutralizing Abs. However, experimental evidence, from pre-erythrocytic vaccine candidates and irradiated sporozoites, has shown that CD8(+) T cells play a significant role in protection. Recombinant viral vectors have been used as a vaccine platform to elicit effective CD8(+) T cell responses. The human adenovirus (Ad) serotype 5 has been tested in malaria vaccine clinical trials with excellent safety profile. Nevertheless, a major concern for the use of Ad5 is the high prevalence of anti-vector neutralizing Abs in humans, hampering its immunogenicity. To minimize the impact of anti-vector pre-existing immunity, we developed a chimeric Ad5/3 vector in which the knob region of Ad5 was replaced with that of Ad3, conferring partial resistance to anti-Ad5 neutralizing Abs. Furthermore, we implemented heterologous Ad/protein immunization regimens that include a single immunization with recombinant Ad vectors. Our data show that immunization with the recombinant Ad5/3 vector induces protective efficacy indistinguishable from that elicited by Ad5. Our study also demonstrates that the dose of the Ad vectors has an impact on the memory profile and protective efficacy. The results support further studies with Ad5/3 for malaria vaccine development.

摘要

理想的疟疾疫苗应针对疟原虫生命周期的多个阶段,并诱导抗寄生虫和抗病免疫。我们报道了一种约氏疟原虫嵌合多阶段重组蛋白(约氏疟原虫线性肽嵌合体/重组模块化嵌合体),其经过工程改造以表达几种自体T细胞表位以及源自环子孢子蛋白和裂殖子表面蛋白1的序列。这种嵌合蛋白可引发由CD4(+) T细胞和中和抗体介导的保护性免疫。然而,来自红细胞前期疫苗候选物和辐照子孢子的实验证据表明,CD8(+) T细胞在保护中起重要作用。重组病毒载体已被用作疫苗平台以引发有效的CD8(+) T细胞反应。人5型腺病毒(Ad)已在疟疾疫苗临床试验中进行了测试,具有出色的安全性。尽管如此,使用Ad5的一个主要问题是人类中抗载体中和抗体的高流行率,这妨碍了其免疫原性。为了尽量减少抗载体预先存在的免疫的影响,我们开发了一种嵌合Ad5/3载体,其中Ad5的纤突区域被Ad3的纤突区域取代,赋予了对抗Ad5中和抗体的部分抗性。此外,我们实施了包括用重组Ad载体进行单次免疫的异源Ad/蛋白免疫方案。我们的数据表明,用重组Ad5/3载体免疫诱导的保护效力与Ad5诱导的保护效力没有区别。我们的研究还表明,Ad载体的剂量对记忆特征和保护效力有影响。这些结果支持对Ad5/3进行进一步研究以开发疟疾疫苗。

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