Pre-existing and early cellular immune factors correlate with functionally complete protection against primary controlled human SARS-CoV-2 infection
Abstract
Abstract Identifying host factors that mediate protection against newly-emergent viruses is needed for improved pandemic preparedness. Here, we analysed pre- and early post-exposure immune factors associated with resisting SARS-CoV-2 infection after human challenge in seronegative individuals, using multiplex protein, cytometric and RNA sequencing approaches in the nasopharynx and circulation. Pre-existing cross-reactive antibodies correlate poorly with clinical outcome. Instead, protection is associated with heightened nasopharyngeal CCL13 levels locally produced by conventional dendritic cells and monocytes, along with cross-reactive T cells and less differentiated NK cells. Conditional independence network analysis implicates nasal CCL13 as the central node connected to pre-existing non-structural protein-specific T cells by CD1c + DCs. In those who became infected, baseline cross-reactive T cell and less differentiated NK cell frequencies also correlate with shorter infection duration. Thus, pre-existing mucosal chemokine levels may promote rapid innate and innate-like responses that effectively block infection. ClinicalTrials.gov identifier NCT04865237.
Article Details
Authors (26)
Helen R. Wagstaffe
Ryan S. Thwaites
National Heart and Lung Institute, Imperial College London
Jasmin K. Sidhu
Rik G. H. Lindeboom
Netherlands Cancer Institute
Lorenz Kretschmer
Kaylee B. Worlock
Lisa M. Dratva
Ao Huang
Stephanie Ascough
Loukas Papargyris
Richard McKendry
Ashley M. Collins
Jiayun Xu
College of Material, Chemistry and Chemical Engineering, Key Laboratory of Organosilicon Chemistry and Material Technology, Ministry of Education
Nana-Marie Lemm
Ben Killingley
Mariya Kalinova
Alex Mann
Andrew Catchpole
Leo Swadling
John S. Tsang
Mala K. Maini
Mahdad Noursadeghi
Marko Z. Nikolić
Sarah A. Teichmann
Peter J. M. Openshaw
Christopher Chiu