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Prophylactic and therapeutic HBV vaccination by an HBs-expressing cytomegalovirus vector lacking an interferon antagonist in mice

机译:预防和治疗乙型肝炎病毒疫苗接种的缺乏一个HBs-expressing巨细胞病毒向量干扰素拮抗剂对小鼠

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摘要

Cytomegalovirus (CMV)-based vaccines show promising effects against chronic infections in nonhuman primates. Therefore, we examined the potential of hepatitis B virus (HBV) vaccines based on mouse CMV (MCMV) vectors expressing the small HBsAg. Immuno-logical consequences of vaccine virus attenuation were addressed by either replacing the dispensable gene m157 ("MCMV-HBso) or the gene M27 ("ΔM27-HBs"), the latter encodes a potent IFN antagonist targeting the transcription factor STAT2. M27 was chosen, since human CMV encodes an analogous gene product, which also induced proteasomal STAT2 degradation by exploiting Cullin RING ubiquitin ligases. Vaccinated mice were challenged with HBV through hydrodynamic injection. MCMV-HBs and ΔM27-HBs vaccination achieved accelerated HBV clearance in serum and liver as well as robust HBV-specific CD8~+ T-cell responses. When we explored the therapeutic potential of MCMV-based vaccines, especially the combination of ΔM27-HBs prime and DNA boost vaccination resulted in increased intrahepatic HBs-specific CD8~+ T-cell responses and HBV clearance in persistently infected mice. Our results demonstrated that vaccines based on a replication competent MCMV attenuated through the deletion of an IFN antagonist targeting STAT2 elicit robust anti-HBV immune responses and mediate HBV clearance in mice in prophylactic and therapeutic immunization regimes.
机译:巨细胞病毒(CMV)的疫苗有前途的影响对慢性感染非人灵长类动物。乙型肝炎病毒(HBV)疫苗的潜力基于小鼠巨细胞病毒(MCMV)向量表示小的表面。疫苗病毒衰减得到解决要么替换m157可有可无的基因”(“MCMV-HBso)或基因M27(ΔM27-HBs”),后者编码一个强有力的干扰素拮抗剂瞄准转录因子STAT2。自从人类巨细胞病毒编码一个类似的基因产品,也诱导蛋白酶体STAT2泛素降解利用Cullin戒指连接酶。通过水动力喷射。ΔM27-HBs接种实现加速乙肝病毒间隙在血清和肝脏和健壮HBV-specific CD8 ~ + t细胞反应。探索MCMV-based的治疗潜力疫苗,特别是结合ΔM27-HBs总理和DNA提高疫苗接种导致增加肝内HBs-specific CD8 ~ + t细胞反应和乙肝病毒持续的间隙受感染的老鼠。疫苗基于复制MCMV主管减毒通过干扰素的删除对手针对STAT2引出anti-HBV强劲免疫反应以及调节乙肝病毒清除小鼠免疫预防和治疗疾病政权。

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