Xia Ming, Huang Pengwei, Tan Ming
Division of Infectious Diseases, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA.
Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, OH 45229, USA.
Pharmaceutics. 2022 Jul 30;14(8):1597. doi: 10.3390/pharmaceutics14081597.
Rotavirus infection continues to cause significant morbidity and mortality globally. In this study, we further developed the S-VP8* pseudovirus nanoparticles (PVNPs) displaying the glycan receptor binding VP8* domains of rotavirus spike proteins as a parenteral vaccine candidate. First, we established a scalable method for the large production of tag-free S-VP8* PVNPs representing four rotavirus P types, P[8], P[4], P[6], and P[11]. The approach consists of two major steps: selective precipitation of the S-VP8* proteins from bacterial lysates using ammonium sulfate, followed by anion exchange chromatography to further purify the target proteins to a high purity. The purified soluble proteins self-assembled into S-VP8* PVNPs. Importantly, after intramuscular injections, the trivalent vaccine consisting of three PVNPs covering VP8* antigens of P[8], P[4], and P[6] rotaviruses elicited high and broad immunogenicity in mice toward the three predominant P-type rotaviruses. Specifically, the trivalent vaccine-immunized mouse sera showed (1) high and balanced IgG and IgA antibody titers toward all three VP8* types, (2) high blocking titer against the VP8*-glycan receptor interaction, and (3) high and broad neutralizing titers against replications of all P[8], P[4], and P[6] rotaviruses. Therefore, trivalent S-VP8* PVNPs are a promising non-replicating, parenteral vaccine candidate against the most prevalent rotaviruses worldwide.
轮状病毒感染在全球范围内继续导致严重的发病和死亡。在本研究中,我们进一步开发了展示轮状病毒刺突蛋白聚糖受体结合VP8结构域的S-VP8假病毒纳米颗粒(PVNPs)作为一种肠胃外疫苗候选物。首先,我们建立了一种可扩展的方法,用于大量生产代表四种轮状病毒P型(P[8]、P[4]、P[6]和P[11])的无标签S-VP8* PVNPs。该方法包括两个主要步骤:使用硫酸铵从细菌裂解物中选择性沉淀S-VP8蛋白,然后进行阴离子交换色谱以进一步将目标蛋白纯化至高纯度。纯化的可溶性蛋白自组装成S-VP8 PVNPs。重要的是,肌肉注射后,由覆盖P[8]、P[4]和P[6]轮状病毒VP8抗原的三种PVNPs组成的三价疫苗在小鼠中引发了针对三种主要P型轮状病毒的高且广泛的免疫原性。具体而言,三价疫苗免疫的小鼠血清显示:(1)针对所有三种VP8类型具有高且平衡的IgG和IgA抗体滴度;(2)针对VP8*-聚糖受体相互作用具有高阻断滴度;(3)针对所有P[8]、P[4]和P[6]轮状病毒的复制具有高且广泛的中和滴度。因此,三价S-VP8* PVNPs是一种有前景的非复制型肠胃外疫苗候选物,可用于对抗全球最流行的轮状病毒。