Impact of various vaccine boosters on neutralization against Omicron following prime vaccinations with inactivated or adenovirus-vectored vaccine

Qingrui Huang,Jiawei Zeng, Qingyun Lang, Feng Gao, Dejun Liu,Siyu Tian, Rui Shi,Ling Luo,Hao Wang, Liping Hu,Linrui Jiang, Yawei Liu,Kailiang Li, Yunbo Wu, Junjie Xu, Wenxi Jiang,Ning Guo,Zhihai Chen,Xiaohua Hao,Ronghua Jin,Jinghua Yan,Yufa Sun

Science Bulletin(2022)

Cited 5|Views27
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Abstract
Since the first report on November 24, 2021, the Omicron SARS-CoV-2 variant is now overwhelmingly spreading across the world. Two SARS-CoV-2 inactivated vaccines (IAVs), one recombinant protein subunit vaccine (PRV), and one adenovirus-vectored vaccine (AdV) have been widely administrated in many countries including China to pursue herd immunity. Here we investigated cross-neutralizing activities in 341 human serum specimens elicited by full-course vaccinations with IAV, PRV and AdV, and by various vaccine boosters following prime IAV and AdV vaccinations. We found that all types of vaccines induced significantly lower neutralizing antibody titers against the Omicron variant than against the prototype strain. For prime vaccinations with IAV and AdV, heterologous boosters with AdV and PRV, respectively, elevated serum Omicron-neutralizing activities to the highest degrees. In a mouse model, we further demonstrated that among a series of variant-derived RBD-encoding mRNA vaccine boosters, it is only the Omicron booster that significantly enhanced Omicron neutralizing antibody titers compared with the prototype booster following a prime immunization with a prototype S-encoding mRNA vaccine candidate. In summary, our systematical investigations of various vaccine boosters inform potential booster administrations in the future to combat the Omicron variant. ### Competing Interest Statement The Institute of Microbiology, Chinese Academy of Sciences (IMCAS) holds the patent on ZF2001 vaccine.
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