Herfst Sander, de Graaf Miranda, Schrauwen Eefje J A, Sprong Leo, Hussain Karim, van den Hoogen Bernadette G, Osterhaus Albert D M E, Fouchier Ron A M
Department of Virology, Erasmus Medical Center, Rotterdam, The Netherlands.
J Gen Virol. 2008 Jul;89(Pt 7):1553-1562. doi: 10.1099/vir.0.2008/002022-0.
Human metapneumovirus (HMPV) causes acute respiratory tract illness primarily in young children, immunocompromised individuals and the elderly. Vaccines would be desirable to prevent severe illnesses in these risk groups. Here, we describe the generation and evaluation of cold-passage (cp) temperature-sensitive (ts) HMPV strains as vaccine candidates. Repeated passage of HMPV at low temperatures in Vero cells resulted in the accumulation of mutations in the viral genome. Introduction of these mutations in a recombinant HMPV by reverse genetics resulted in a ts-phenotype, judged on the decreased shut-off temperature for virus replication in vitro. As an alternative approach, three previously described cp-respiratory syncytial virus (cp-HRSV) mutations were introduced in a recombinant HMPV, which also resulted in a low shut-off temperature in vitro. Replication of these ts-viruses containing either the cp-HMPV or cp-HRSV mutations was reduced in the upper respiratory tract (URT) and undetectable in the lower respiratory tract (LRT) of hamsters. Nevertheless, high titres of HMPV-specific antibodies were induced by both ts-viruses. Upon immunization with the ts-viruses, the LRT of hamsters were completely protected against challenge infection with a heterologous HMPV strain, and URT viral titres were reduced by 10 000-fold. In conclusion, we provide proof-of-principle for two candidate live-attenuated HMPV vaccines that induce cross-protective immunity to prevent infection of the LRT in Syrian golden hamsters. Further mapping of the molecular determinants of attenuation of HMPV should be the subject of future studies.
人偏肺病毒(HMPV)主要在幼儿、免疫功能低下者和老年人中引起急性呼吸道疾病。疫苗对于预防这些高危人群的严重疾病是很有必要的。在此,我们描述了冷传代(cp)温度敏感(ts)HMPV毒株作为候选疫苗的产生和评估。HMPV在Vero细胞中低温反复传代导致病毒基因组中突变的积累。通过反向遗传学将这些突变引入重组HMPV中,根据体外病毒复制的关闭温度降低来判断,其产生了ts表型。作为一种替代方法,将三个先前描述的cp呼吸道合胞病毒(cp-HRSV)突变引入重组HMPV中,这也导致了体外的低关闭温度。这些含有cp-HMPV或cp-HRSV突变的ts病毒在仓鼠的上呼吸道(URT)中复制减少,在下呼吸道(LRT)中无法检测到。然而,两种ts病毒都诱导产生了高滴度的HMPV特异性抗体。用ts病毒免疫后,仓鼠的LRT完全受到保护,免受异源HMPV毒株的攻击感染,URT病毒滴度降低了10000倍。总之,我们为两种候选减毒活HMPV疫苗提供了原理证明,它们能诱导交叉保护性免疫,以预防叙利亚金黄仓鼠的LRT感染。HMPV减毒分子决定因素的进一步定位应是未来研究的主题。