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Comparative analysis of the Rotarix™ vaccine strain and G1P8 rotaviruses detected before and after vaccine introduction in Belgium

机译:比利时引入疫苗前后检测的Rotarix™疫苗株和G1P 8轮状病毒的比较分析

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摘要

G1P[8] rotaviruses are responsible for the majority of human rotavirus infections worldwide. The effect of universal mass vaccination with rotavirus vaccines on circulating G1P[8] rotaviruses is still poorly understood. Therefore we analyzed the complete genomes of the Rotarix™ vaccine strain, and 70 G1P[8] rotaviruses, detected between 1999 and 2010 in Belgium (36 before and 34 after vaccine introduction) to investigate the impact of rotavirus vaccine introduction on circulating G1P[8] strains. All rotaviruses possessed a complete Wa-like genotype constellation, but frequent intra-genogroup reassortments were observed as well as multiple different cluster constellations circulating in a single season. In addition, identical cluster constellations were found to circulate persistently over multiple seasons. The Rotarix™ vaccine strain possessed a unique cluster constellation that was not present in currently circulating G1P[8] strains. At the nucleotide level, the VP6, VP2 and NSP2 gene segments of Rotarix™ were relatively distantly related to any Belgian G1P[8] strain, but other gene segments of Rotarix™ were found in clusters also containing circulating Belgian strains. At the amino acid level, the genetic distance between Rotarix™ and circulating Belgian strains was considerably lower, except for NSP1. When we compared the Belgian G1P[8] strains collected before and after vaccine introduction a reduction in the proportion of strains that were found in the same cluster as the Rotarix™ vaccine strain was observed for most gene segments. The reduction in the proportion of strains belonging to the same cluster may be the result of the vaccine introduction, although natural fluctuations cannot be ruled out.
机译:G1P [8]轮状病毒是世界范围内大多数人类轮状病毒感染的原因。轮状病毒疫苗的普遍大规模疫苗接种对循环G1P [8]轮状病毒的影响仍然知之甚少。因此,我们分析了Rotarix™疫苗株的完整基因组,以及在1999年至2010年之间在比利时检测到的70种G1P [8]轮状病毒(疫苗接种前36例和接种后34例),以研究轮状病毒疫苗对循环G1P的影响[8 ]菌株。所有轮状病毒均具有完整的Wa样基因型构象,但观察到频繁的基因组内重组以及在单个季节中循环的多个不同簇群。此外,发现相同的星群星座在多个季节持续循环。 Rotarix™疫苗菌株具有独特的簇构象,这在当前流通的G1P [8]菌株中不存在。在核苷酸水平上,Rotarix™的VP6,VP2和NSP2基因片段与任何比利时G1P [8]菌株都有相对较远的相关性,但Rotarix™的其他基因片段在也包含循环比利时菌株的簇中发现。在氨基酸水平上,除了NSP1外,Rotarix™与比利时循环菌株之间的遗传距离要低得多。当我们比较在疫苗引入之前和之后收集的比利时G1P [8]菌株时,对于大多数基因片段,观察到与Rotarix™疫苗菌株在同一簇中发现的菌株比例减少。尽管不能排除自然波动,但属于同一簇的菌株比例的降低可能是疫苗引入的结果。

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