A semi-quantitative visual lateral flow immunoassay for SARS-CoV-2 antibody detection for the follow-up of immune response to vaccination or recovery
Articolo
Data di Pubblicazione:
2024
Abstract:
The lateral flow immunoassay (LFIA) technique is largely employed for the point-of-care detection of
antibodies especially for revealing the immune response in serum. Visual LFIAs usually provide the
qualitative yes/no detection of antibodies, while quantification requires some equipment, making the
assay more expensive and complicated. To achieve visual semi-quantification, the alignment of several
lines (made of the same antigen) along a LFIA strip has been proposed. The numbering of the reacting
lines has been used to correlate with the quantity of some biomarkers in serum. Here, we designed the
first semiquantitative LFIA for detecting antibodies and applied it to classify the immune response to
SARS-CoV-2 raised by vaccination or natural infection. We used a recombinant spike receptor-binding
domain (RBD) as the specific capture reagent to draw two test lines. The detection reagent was selected
among three possible ligands that are able to bind to anti-spike human antibodies: the same RBD,
staphylococcal protein A, and anti-human immunoglobulin G antibodies. The most convenient detector,
adsorbed on gold nanoparticles, was chosen based on the highest correlation with an antibody titre of
171 human sera, measured by a reference serological method, and was the RBD (Spearman’s rho =
0.84). Incorporated into the semiquantitative LFIA, it confirmed the ability to discriminate high- and low-
titre samples and to classify them into two classes (Dunn’s test, P o 0.05). The proposed approach
enabled the semiquantification of the immune response to SARS-CoV-2 by the unaided eye observation,
thus overcoming the requirement of costly and complicated equipment, and represents a general
strategy for the development of semiquantitative serological LFIAs
Tipologia CRIS:
03A-Articolo su Rivista
Elenco autori:
S.Cavalera; F. Di Nardo; T.Serra; V.Testa; C.Baggiani; S.Rosati; B.Colitti; L.Brienza; I.Colasanto; C.Nogarol; D.Cosseddu; C.Guiotto; L.Anfossi
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