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通过在SCIDhu小鼠模型的皮肤异种移植中评估嵌合亲本Oka/疫苗Oka重组病毒来分析水痘带状疱疹病毒的减毒情况。

Analysis of varicella zoster virus attenuation by evaluation of chimeric parent Oka/vaccine Oka recombinant viruses in skin xenografts in the SCIDhu mouse model.

作者信息

Zerboni Leigh, Hinchliffe Stewart, Sommer Marvin H, Ito Hideki, Besser Jaya, Stamatis Shaye, Cheng Jason, Distefano Daniel, Kraiouchkine Nikolai, Shaw Alan, Arvin Ann M

机构信息

Department of Pediatrics, S-356, Stanford University School of Medicine, 300 Pasteur Drive, Stanford, CA 94305-5208, USA.

出版信息

Virology. 2005 Feb 5;332(1):337-46. doi: 10.1016/j.virol.2004.10.047.

Abstract

Varicella-zoster virus (VZV) is the only human herpes virus for which a vaccine has been licensed. A clinical VZV isolate, designated the parent Oka (pOka) strain was passed in human and non-human fibroblasts to produce vaccine Oka (vOka). The pOka and vOka viruses exhibit similar infectivity in cultured cells but healthy susceptible individuals given vaccines derived from vOka rarely develop the cutaneous vesicular lesions characteristic of varicella. Inoculation of skin xenografts in the SCIDhu mouse model of VZV pathogenesis demonstrated that vOka had a reduced capacity to replicate in differentiated human epidermal cells in vivo (Moffat, J.F., Zerboni, L., Kinchington, P.R., Grose, C., Kaneshima, H., Arvin A.M., 1998a. Attenuation of the vaccine Oka strain of varicella-zoster virus and role of glycoprotein C in alphaherpesvirus virulence demonstrated in the SCID-hu mouse. J Virol. 72:965-74). In order to investigate the attenuation of vOka in skin, we made chimeric pOka and vOka recombinant viruses from VZV cosmids. Six chimeric pOka/vOka viruses were generated using cosmid sets that incorporate linear overlapping fragments of VZV DNA from cells infected with pOka or vOka. The cosmid sets consist of pOka and vOka DNA segments that have identical restriction sites. As expected, the growth kinetics and plaque morphologies of the six chimeric pOka/vOka viruses were indistinguishable in vitro. However, the chimeric viruses exhibited varying capacities to replicate when evaluated in skin xenografts in vivo. The presence of ORFs 30-55 from the pOka genome was sufficient to maintain wild-type infectivity in skin. Chimeric viruses containing different vOka components retained the attenuation phenotype, suggesting that vOka attenuation is multi-factorial and can be produced by genes from different regions of the vOka genome.

摘要

水痘带状疱疹病毒(VZV)是唯一一种已获许可使用疫苗的人类疱疹病毒。一株临床VZV分离株,命名为亲本Oka(pOka)株,在人源和非人源成纤维细胞中传代以生产疫苗Oka(vOka)。pOka和vOka病毒在培养细胞中表现出相似的感染性,但接种源自vOka的疫苗的健康易感个体很少出现水痘特有的皮肤水疱病变。在VZV发病机制的SCIDhu小鼠模型中接种皮肤异种移植物表明,vOka在体内分化的人表皮细胞中复制的能力降低(莫法特,J.F.,泽博尼,L.,金钦顿,P.R.,格罗斯,C.,卡内希马,H.,阿尔文,A.M.,1998年a。水痘带状疱疹病毒疫苗Oka株的减毒及糖蛋白C在α疱疹病毒毒力中的作用在SCID-hu小鼠中得到证实。《病毒学杂志》。72:965 - 74)。为了研究vOka在皮肤中的减毒情况,我们从VZV黏粒构建了嵌合pOka和vOka重组病毒。使用包含来自感染pOka或vOka的细胞的VZV DNA线性重叠片段的黏粒组产生了六种嵌合pOka/vOka病毒。这些黏粒组由具有相同限制性酶切位点的pOka和vOka DNA片段组成。正如预期的那样,六种嵌合pOka/vOka病毒的生长动力学和噬斑形态在体外无法区分。然而,当在体内皮肤异种移植物中评估时,嵌合病毒表现出不同的复制能力。来自pOka基因组的ORF 30 - 55的存在足以维持在皮肤中的野生型感染性。含有不同vOka成分的嵌合病毒保留了减毒表型,表明vOka减毒是多因素的,并且可以由vOka基因组不同区域的基因产生。

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