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在单纯疱疹病毒2型生殖器感染小鼠模型中,不同形式的单纯疱疹复制缺陷型突变病毒作为疫苗的比较。

Comparison of different forms of herpes simplex replication-defective mutant viruses as vaccines in a mouse model of HSV-2 genital infection.

作者信息

Da Costa X J, Morrison L A, Knipe D M

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, 200 Longwood Avenue, Boston, Massachusetts 02115, USA.

出版信息

Virology. 2001 Sep 30;288(2):256-63. doi: 10.1006/viro.2001.1094.

Abstract

Some subunit vaccines composed of herpes simplex virus (HSV) glycoproteins have been shown to protect guinea pigs against primary and recurrent genital infection by HSV-2. However, these vaccines were ineffective or only marginally effective in clinical trials. To attempt to define an animal model that would better discriminate the protective capacity of different vaccine formulations, we have examined the requirements for vaccine-induced protection against HSV-2 infection and disease in a mouse genital model. Unlike the guinea pig model where inactivated viral vaccines can protect nearly as well as live viral vaccines, inactivated viral vaccine afforded little protection in this mouse model. Using replication-defective mutant viruses as a form of live viral vaccine, we found that the extent of protection conferred by live vaccine was proportional to the amount of replication-defective mutant virus inoculated, over doses from 10(4) to 10(6) PFU. Furthermore, the mouse genital model showed quantitative differences in the degree of protection induced by various viral vaccine constructs. An HSV-2 replication-defective mutant virus protected better than an HSV-1 replication-defective mutant that expressed HSV-2 glycoprotein D, which in turn protected better than an HSV-2 replication-defective mutant virus. We conclude that this mouse genital model can rank different vaccine constructs for their capacity to induce protective immunity. Thus, genital infection of the mouse with HSV-2 may provide a stringent animal model that can predict the relative capacity of viral vaccines to stimulate protective immunity against HSV-2.

摘要

一些由单纯疱疹病毒(HSV)糖蛋白组成的亚单位疫苗已被证明能保护豚鼠免受HSV - 2引起的原发性和复发性生殖器感染。然而,这些疫苗在临床试验中无效或仅具有微弱的效果。为了尝试定义一种能更好地区分不同疫苗制剂保护能力的动物模型,我们研究了在小鼠生殖器模型中疫苗诱导的针对HSV - 2感染和疾病的保护所需条件。与豚鼠模型不同,在豚鼠模型中灭活病毒疫苗的保护效果几乎与活病毒疫苗一样好,但在这个小鼠模型中,灭活病毒疫苗几乎没有保护作用。使用复制缺陷型突变病毒作为活病毒疫苗的一种形式,我们发现活疫苗提供的保护程度与接种的复制缺陷型突变病毒量成正比,接种剂量范围为10⁴至10⁶PFU。此外,小鼠生殖器模型显示出不同病毒疫苗构建体诱导的保护程度存在定量差异。一种HSV - 2复制缺陷型突变病毒的保护效果优于表达HSV - 2糖蛋白D的HSV - 1复制缺陷型突变病毒,而后者又比HSV - 2复制缺陷型突变病毒的保护效果更好。我们得出结论,这个小鼠生殖器模型可以根据不同疫苗构建体诱导保护性免疫的能力进行排序。因此,用HSV - 2感染小鼠的生殖器可能提供一个严格的动物模型,该模型可以预测病毒疫苗刺激针对HSV - 2的保护性免疫的相对能力。

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