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对由大量复制的、未克隆的猿猴免疫缺陷病毒(SIVmac251)毒株引起的重复感染的抵抗力刺激了减毒活病毒疫苗(SIVmacC8)的复制。

Resistance to superinfection by a vigorously replicating, uncloned stock of simian immunodeficiency virus (SIVmac251) stimulates replication of a live attenuated virus vaccine (SIVmacC8).

作者信息

Berry Neil, Stebbings Richard, Ferguson Debbie, Ham Claire, Alden Jack, Brown Stuart, Jenkins Adrian, Lines Jenny, Duffy Laura, Davis Leanne, Elsley William, Page Mark, Hull Robin, Stott Jim, Almond Neil

机构信息

Division of Retrovirology, National Institute for Biological Standards and Control, Blanche Lane, South Mimms, Potters Bar, Hertfordshire EN6 3QG, UK.

Division of Biotherapeutics, National Institute for Biological Standards and Control, Blanche Lane, South Mimms, Potters Bar, Hertfordshire EN6 3QG, UK.

出版信息

J Gen Virol. 2008 Sep;89(Pt 9):2240-2251. doi: 10.1099/vir.0.2008/001693-0.

Abstract

Vaccination with live attenuated simian immunodeficiency virus (SIVmacC8) confers potent, reproducible protection against homologous wild-type virus challenge (SIVmacJ5). The ability of SIVmacC8 to confer resistance to superinfection with an uncloned ex vivo derivative of SIVmac251 (SIVmac32H/L28) was investigated. In naïve, Mauritian-derived cynomolgus macaques (Macaca fascicularis), SIVmac32H/L28 replicated to high peak titres (>10(8) SIV RNA copies ml(-1)), persisted at high levels and induced distinctive pathology in lymphoid tissues. In cynomolgus macaques vaccinated with SIVmacC8, no evidence of detectable superinfection was observed in 3/8 vaccinates following challenge 3 or 20 weeks later with SIVmac32H/L28. Analyses after SIVmac32H/L28 challenge revealed a significant reduction in viral RNA (P<0.001) and DNA levels between 20 week vaccinates and challenge controls. Amongst 3 week vaccinates, less potent protection was observed. However, analysis of env from breakthrough virus indicated >99% sequence similarity with the vaccine virus. Highly sensitive PCR assays that distinguish vaccine and challenge virus stocks demonstrated restimulation of replication of the vaccine virus SIVmacC8 in the face of potent protection against a vigorous, homologous challenge virus. Vaccine-induced antiviral neutralizing antibodies and anti-Nef CD8+ cytotoxic T cell responses did not correlate with the outcome of the challenge. Defining the mechanism of vaccine protection will need to account for the effective control of a genetically closely related challenge virus whilst remaining unable to suppress replication of the pre-existing vaccine virus. The role of innate and intrinsic anti-retroviral immunity in the protection conferred by live attenuated SIV vaccines warrants careful study.

摘要

用减毒活猿猴免疫缺陷病毒(SIVmacC8)进行疫苗接种可对同源野生型病毒攻击(SIVmacJ5)提供强大、可重复的保护。研究了SIVmacC8赋予对SIVmac251的未克隆体外衍生物(SIVmac32H/L28)重复感染抗性的能力。在来自毛里求斯的未感染食蟹猴(猕猴)中,SIVmac32H/L28复制到高峰滴度(>10⁸ SIV RNA拷贝/ml),高水平持续存在并在淋巴组织中诱导独特的病理变化。在用SIVmacC8接种的食蟹猴中,在3或20周后用SIVmac32H/L28攻击后,8只接种动物中有3只未观察到可检测到的重复感染迹象。SIVmac32H/L28攻击后的分析显示,20周接种动物与攻击对照之间的病毒RNA(P<0.001)和DNA水平显著降低。在3周接种动物中,观察到的保护作用较弱。然而,对突破病毒的env分析表明与疫苗病毒的序列相似性>99%。区分疫苗和攻击病毒株的高度敏感PCR检测显示,面对针对强烈同源攻击病毒的有效保护,疫苗病毒SIVmacC8的复制重新被激活。疫苗诱导的抗病毒中和抗体和抗Nef CD8⁺细胞毒性T细胞反应与攻击结果无关。确定疫苗保护机制需要考虑对遗传密切相关攻击病毒的有效控制,同时仍无法抑制预先存在的疫苗病毒的复制。天然和内在抗逆转录病毒免疫在减毒活SIV疫苗提供的保护中的作用值得仔细研究。

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