Q1 · MEDICINE
ArticleOA
Author: Salleh, Siti Nazihah Mohd ; Rouers, Angeline ; Lye, David C ; Lim, Alicia Jieling ; Hor, Pei Xiang ; Wang, Lin‐Fa ; Chia, Wan Ni ; Renia, Laurent ; Huang, Yuling ; Amrun, Siti Naqiah ; Leo, Yee‐Sin ; Wang, Bei ; Chang, Zi Wei ; Young, Barnaby Edward ; Torres‐Ruesta, Anthony ; Ngoh, Eve Zi Xian ; Tan, Seow‐Yen ; Xu, Weili ; Goh, Yun Shan ; Yeo, Nicholas Kim‐Wah ; Ng, Lisa FP ; Loh, Chiew Yee ; Maurer‐Stroh, Sebastian ; Chavatte, Jean‐Marc ; Wang, Cheng‐I ; Lin, Raymond Valentine Tzer Pin ; Chan, Yi‐Hao ; Tay, Matthew Zirui ; Tan, Chee Wah ; Fong, Siew‐Wai
The SARS-CoV-2 Delta (B.1.617.2) variant is capable of infecting vaccinated persons. An open question remains as to whether deficiencies in specific vaccine-elicited immune responses result in susceptibility to vaccine breakthrough infection. We investigated 55 vaccine breakthrough infection cases (mostly Delta) in Singapore, comparing them against 86 vaccinated close contacts who did not contract infection. Vaccine breakthrough cases showed lower memory B cell frequencies against SARS-CoV-2 receptor-binding domain (RBD). Compared to plasma antibodies, antibodies secreted by memory B cells retained a higher fraction of neutralizing properties against the Delta variant. Inflammatory cytokines including IL-1β and TNF were lower in vaccine breakthrough infections than primary infection of similar disease severity, underscoring the usefulness of vaccination in preventing inflammation. This report highlights the importance of memory B cells against vaccine breakthrough and suggests that lower memory B cell levels may be a correlate of risk for Delta vaccine breakthrough infection.