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将γ干扰素与表达土拨鼠肝炎病毒(WHV)核心抗原的DNA疫苗联合使用,可增强特异性免疫反应并预防WHV感染。

Coadministration of gamma interferon with DNA vaccine expressing woodchuck hepatitis virus (WHV) core antigen enhances the specific immune response and protects against WHV infection.

作者信息

Siegel F, Lu M, Roggendorf M

机构信息

Institut für Virologie, Universitätsklinikum Essen, Essen, Germany.

出版信息

J Virol. 2001 Jun;75(11):5036-42. doi: 10.1128/JVI.75.11.5036-5042.2001.

Abstract

DNA vaccinations are able to induce strong cellular immune responses in mice and confer protection against infectious agents. However, DNA vaccination of large animals appears to be less effective and requires repeated injections of large amounts of plasmid DNA. Enhancement of the efficiency of DNA vaccines may be achieved by coapplication of cytokine-expressing plasmids. Here we investigated, with woodchucks, whether coadministration of an expression plasmid for woodchuck gamma interferon (IFN-gamma), pWIFN-gamma, can improve DNA vaccination with woodchuck hepatitis virus core antigen (WHcAg). Animals were immunized with pWHcIm (a plasmid expressing WHcAg) alone or with a combination of pWHcIm and pWIFN-gamma using a gene gun. Six weeks postimmunization, all animals were challenged with 10(5) genome equivalents of woodchuck hepatitis virus (WHV). The antibody and lymphoproliferative immune responses to WHV proteins were determined after immunization and after challenge. Vaccination with pWHcIm and pWIFN-gamma led to a pronounced lymphoproliferative response to WHcAg and protected woodchucks against subsequent virus challenge. Two of three animals vaccinated with pWHcIm alone did not show a detectable lymphoproliferative response to WHcAg. A low-level WHV infection occurred in these woodchucks after challenge, as WHV DNA was detectable in the serum by PCR. None of the pWHcIm-vaccinated animals showed an anti-WHcAg antibody response after DNA vaccination or an anamnestic response after virus challenge. Our results indicate that coadministration of the WIFN-gamma gene with pWHcIm enhanced the specific cellular immune response and improved the protective efficacy of WHV-specific DNA vaccines.

摘要

DNA疫苗能够在小鼠体内诱导强烈的细胞免疫反应,并提供针对感染因子的保护。然而,对大型动物进行DNA疫苗接种似乎效果较差,需要反复注射大量的质粒DNA。通过共同应用表达细胞因子的质粒,或许可以提高DNA疫苗的效率。在此,我们以土拨鼠为研究对象,探究共同给予土拨鼠γ干扰素(IFN-γ)表达质粒pWIFN-γ,是否能够增强土拨鼠肝炎病毒核心抗原(WHcAg)DNA疫苗接种的效果。使用基因枪,单独用pWHcIm(一种表达WHcAg的质粒)或pWHcIm与pWIFN-γ的组合对动物进行免疫。免疫后六周,所有动物均接受10⁵个土拨鼠肝炎病毒(WHV)基因组当量的攻击。在免疫后和攻击后,测定对WHV蛋白的抗体和淋巴细胞增殖免疫反应。用pWHcIm和pWIFN-γ进行疫苗接种,导致对WHcAg产生明显的淋巴细胞增殖反应,并保护土拨鼠免受后续病毒攻击。单独用pWHcIm接种的三只动物中有两只对WHcAg未表现出可检测到的淋巴细胞增殖反应。攻击后,这些土拨鼠发生了低水平的WHV感染,因为通过PCR可在血清中检测到WHV DNA。在DNA疫苗接种后,没有一只接种pWHcIm的动物表现出抗WHcAg抗体反应,在病毒攻击后也没有出现回忆反应。我们的结果表明,WIFN-γ基因与pWHcIm共同给药可增强特异性细胞免疫反应,并提高WHV特异性DNA疫苗的保护效果。

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