Adjuvant-Free COVID-19 Vaccine with Glycoprotein Antigen Oxidized by Periodate Rapidly Elicits Potent Immune Responses.
Ru-Yan ZhangShi-Hao ZhouRan-Ran FengYu WenDong DingZhi-Ming ZhangHua-Wei WeiJun GuoPublished in: ACS chemical biology (2023)
Modification of antigens to improve their immunogenicity represents a promising direction for the development of protein vaccine. Here, we designed facilely prepared adjuvant-free vaccines in which the N-glycan of SARS-CoV-2 receptor-binding domain (RBD) glycoprotein was oxidized by sodium periodate. This strategy only minimally modifies the glycans and does not interfere with the epitope peptides. The RBD glycoprotein oxidized by high concentrations of periodate (RBD HO ) significantly enhanced antigen uptake mediated by scavenger receptors and promoted the activation of antigen-presenting cells. Without any external adjuvant, two doses of RBD HO elicited 324- and 27-fold increases in IgG antibody titers and neutralizing antibody titers, respectively, compared to the unmodified RBD antigen. Meanwhile, the RBD HO vaccine could cross-neutralize all of the SARS-CoV-2 variants of concern. In addition, RBD HO effectively enhanced cellular immune responses. This study provides a new insight for the development of adjuvant-free protein vaccines.