Distinct immune cell dynamics correlate with the immunogenicity and reactogenicity of SARS-CoV-2 mRNA vaccine.

Takano, Tomohiro; Morikawa, Miwa; Adachi, Yu; Kabasawa, Kiyomi; Sax, Nicolas; Moriyama, Saya; Sun, Lin; Isogawa, Masanori et al. · Cell Rep Med · 2022

prospective_cohort · Level II

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Abstract

Two doses of Pfizer/BioNTech BNT162b2 mRNA vaccine elicit robust severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)-neutralizing antibodies with frequent adverse events. Here, by applying a high-dimensional immune profiling on 92 vaccinees, we identify six vaccine-induced immune dynamics that correlate with the amounts of neutralizing antibodies, the severity of adverse events, or both. The early dynamics of natural killer (NK)/monocyte subsets (CD16<sup>+</sup> NK cells, CD56<sup>high</sup> NK cells, and non-classical monocytes), dendritic cell (DC) subsets (DC3s and CD11c<sup>-</sup> Axl<sup>+</sup> Siglec-6<sup>+</sup> [AS]-DCs), and NKT-like cells are revealed as the distinct cell correlates for neutralizing-antibody titers, severity of adverse events, and both, respectively. The cell correlates for neutralizing antibodies or adverse events are consistently associated with elevation of interferon gamma (IFN-γ)-inducible chemokines, but the chemokine receptors CCR2 and CXCR3 are expressed in distinct manners between the two correlates: vaccine-induced expression on the neutralizing-antibody correlate and constitutive expression on the adverse-event correlate. The finding may guide vaccine strategies that balance immunogenicity and reactogenicity.

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