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Cross-Serotype Immunity Induced by Immunization with a Conserved Rhinovirus Capsid Protein

机译:通过保守的鼻病毒衣壳蛋白免疫诱导的交叉血清型免疫。

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摘要

Human rhinovirus (RV) infections are the principle cause of common colds and precipitate asthma and COPD exacerbations. There is currently no RV vaccine, largely due to the existence of ∼150 strains. We aimed to define highly conserved areas of the RV proteome and test their usefulness as candidate antigens for a broadly cross-reactive vaccine, using a mouse infection model. Regions of the VP0 (VP4+VP2) capsid protein were identified as having high homology across RVs. Immunization with a recombinant VP0 combined with a Th1 promoting adjuvant induced systemic, antigen specific, cross-serotype, cellular and humoral immune responses. Similar cross-reactive responses were observed in the lungs of immunized mice after infection with heterologous RV strains. Immunization enhanced the generation of heterosubtypic neutralizing antibodies and lung memory T cells, and caused more rapid virus clearance. Conserved domains of the RV capsid therefore induce cross-reactive immune responses and represent candidates for a subunit RV vaccine.
机译:人鼻病毒(RV)感染是普通感冒,哮喘和COPD加重的主要原因。目前尚无RV疫苗,主要是由于存在约150株。我们旨在定义高度保守的RV蛋白质组区域,并使用小鼠感染模型测试其作为广泛交叉反应疫苗的候选抗原的有用性。 VP0(VP4 + VP2)衣壳蛋白区域被确定为跨RV具有高度同源性。用重组VP0和Th1促进佐剂诱导的免疫接种进行全身,抗原特异性,交叉血清型,细胞和体液免疫反应。异源RV株感染后,在免疫小鼠的肺部观察到类似的交叉反应。免疫增强了异型中和抗体和肺记忆T细胞的生成,并导致更快速的病毒清除。 RV衣壳的保守结构域因此诱导交叉反应性免疫应答,并代表亚单位RV疫苗的候选物。

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