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脂质体递送的p-ialB和p-omp25 DNA疫苗可提高免疫原性,但未能完全保护机体免受布鲁氏菌的攻击。

Liposomal delivery of p-ialB and p-omp25 DNA vaccines improves immunogenicity but fails to provide full protection against B. melitensis challenge.

作者信息

Commander Nicola J, Brewer James M, Wren Brendan W, Spencer Stephen A, Macmillan Alastair P, Stack Judith A

机构信息

Veterinary Laboratories Agency, Woodham Lane, New Haw, Addlestone, Surrey, KT15 3NB, UK.

出版信息

Genet Vaccines Ther. 2010 Jul 16;8:5. doi: 10.1186/1479-0556-8-5.

Abstract

BACKGROUND

We have previously demonstrated protective efficacy against B. melitensis using formulations of naked DNA vaccines encoding genes ialB and omp25. The present study was undertaken to further understand the immune response generated by the protective vaccination regimens and to evaluate cationic liposome adsorption as a delivery method to improve vaccine utility.

METHODS

The protective efficacy and immunogenicity of vaccines delivered as four doses of naked DNA, a single dose of naked DNA or a single dose of DNA surface adsorbed to cationic liposomes were compared using the BALB/c murine infection model of B. melitensis. Antigen-specific T cells and antibody responses were compared between the various formulations.

RESULTS

The four dose vaccination strategy was confirmed to be protective against B. melitensis challenge. The immune response elicited by the various vaccines was found to be dependent upon both the antigen and the delivery strategy, with the IalB antigen favouring CD4+ T cell priming and Omp25 antigen favouring CD8+. Delivery of the p-ialB construct as a lipoplex improved antibody generation in comparison to the equivalent quantity of naked DNA. Delivery of p-omp25 as a lipoplex altered the profile of responsive T cells from CD8+ to CD4+ dominated. Under these conditions neither candidate delivered by single dose naked DNA or lipoplex vaccination methods was able to produce a robust protective effect.

CONCLUSIONS

Delivery of the p-omp25 and p-ialB DNA vaccine candidates as a lipoplex was able to enhance antibody production and effect CD4+ T cell priming, but was insufficient to promote protection from a single dose of either vaccine. The enhancement of immunogenicity by lipoplex delivery is a promising step toward improving the practicality of these two candidate vaccines, and suggests that this lipoplex formulation may be of value in situations where improvements to CD4+ responses are required. However, in the case of Brucella vaccine development it is suggested that further modifications to the candidate vaccines and delivery strategies will be required in order to deliver sustained protection.

摘要

背景

我们之前已经证明,使用编码ialB和omp25基因的裸DNA疫苗制剂对布鲁氏菌具有保护效力。本研究旨在进一步了解保护性疫苗接种方案所产生的免疫反应,并评估阳离子脂质体吸附作为一种递送方法以提高疫苗效用。

方法

使用布鲁氏菌的BALB/c小鼠感染模型,比较了以四剂裸DNA、一剂裸DNA或一剂吸附于阳离子脂质体表面的DNA形式递送的疫苗的保护效力和免疫原性。比较了不同制剂之间的抗原特异性T细胞和抗体反应。

结果

四剂接种策略被证实对布鲁氏菌攻击具有保护作用。发现各种疫苗引发的免疫反应取决于抗原和递送策略,IalB抗原有利于CD4+ T细胞启动,而Omp25抗原有利于CD8+ T细胞启动。与等量的裸DNA相比,作为脂质体复合物递送p-ialB构建体可改善抗体产生。作为脂质体复合物递送p-omp25改变了反应性T细胞的概况,从以CD8+为主变为以CD4+为主。在这些条件下,通过单剂量裸DNA或脂质体复合物接种方法递送的任何一种候选疫苗都无法产生强大的保护作用。

结论

作为脂质体复合物递送p-omp25和p-ialB候选DNA疫苗能够增强抗体产生并影响CD4+ T细胞启动,但不足以促进单剂量任何一种疫苗的保护作用。通过脂质体复合物递送增强免疫原性是朝着提高这两种候选疫苗实用性迈出的有希望的一步,并表明这种脂质体复合物制剂在需要改善CD4+反应的情况下可能具有价值。然而,在布鲁氏菌疫苗开发的情况下,建议对候选疫苗和递送策略进行进一步修改,以提供持续的保护。

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