National Natural Science Foundation of China (No. 81501741), Fujian Province Science and Technology Innovation Platform (No. 2014Y2004).
In previous studies, we found that truncated rotavirus VP4* (aa 26–476) could be expressed in soluble form in Escherichia coli and confer high protection against rotavirus in the mouse mode. In this study, we further improved the immunogenicity of VP4* by polymerization. The purified VP4* was polymerized through incubation at 37 ℃ for 24 h, and then the homogeneity of the particles was analyzed by HPLC, TEM and AUC, while the thermal stability and antigenicity was analyzed by DSC and ELISA, respectively. Finally, the immunogenicity and protective efficacy of the polymers analyzed by a mouse maternal antibody model. The results showed that VP4* aggregated into homogeneous polymers, with high thermostability and neutralizing antibody binding activity. In addition, VP4* polymers (endotoxin <20 EU/dose) stimulated higher neutralizing antibodies and confer higher protection against rotavirus-induced diarrhoea compared with the VP4* trimers when immunized with aluminium adjuvant. In summary, the study in VP4* polymers provides a new strategy for the development of recombinant rotavirus vaccines.
李毅坚,罗国兴,杨晗,贾连智,曾渊君,赵毕妍,李廷栋,葛胜祥. 轮状病毒VP4*高聚体的制备及其免疫保护性评价[J]. Chinese Journal of Biotechnology, 2019, 35(2): 281-289
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