Influenza viruses continue to cause morbidity and mortality in the human population each year. HA is the major surface glycoprotein of influenza viruses. Neutralizing antibodies targeting HA are the main immune mechanism that correlates with protection of influenza infection1,2. Hemagglutination inhibition (HI) assays and MN assays are two methods widely used to measure antibody responses in human sera after influenza infection or vaccination3. The HI assay measures antibody inhibition of virus hemagglutination of red blood cells and is considered a surrogate assay. Unlike HI, the MN assay can directly measure the levels of antibodies in human sera that neutralize influenza infection in cell cultures. MDCK cells are often used in influenza virus isolation and MN assays4.
Influenza viruses constantly undergo antigenic drift and shift, acquiring mutations on HA proteins that can alter the receptor binding specificity of viruses. Since 2014, new clusters of A(H3N2) viruses emerged and continued to circulate until the current season. The majority of these viruses belong to the genetic group 3C.2a and 3C.3a based on phylogenetic analysis of the HA proteins. Many of the circulating 3C.2a viruses had reduced ability to hemagglutinate red blood cells and therefore cannot be characterized by HI assays5. Neutralization assays must be used to measure the antibody responses to these viruses that do not hemagglutinate6. Furthermore, studies have shown that these contemporary A(H3N2) viruses have altered receptor binding properties compared with earlier A(H3N2) viruses and tend to accumulate culture adapted mutations and polymorphism when passaged in in vitro cell cultures7,8,9. Compared with conventional MDCK cells, MDCK-SIAT1 is a cell line developed by Matrosovich et al. through stable transfection of MDCK cells with cDNA of human α2,6-sialtransferase (SIAT1). This cell line expresses increased amounts of α2,6-sialic galactose moieties and decreased amounts of α2,3-sialic acid moieties than the parent MDCK cells10. MDCK-SIAT1 cells have shown to improve isolation rates for A(H3N2) viruses compared to MDCK cells11. Recently, Lin et al. reported that for newly emerged 3C.2a and 3C.3a human A(H3N2) influenza viruses, more faithful virus replications and better virus infectivity were achieved when viruses were cultured in MDCK-SIAT1 cell lines compared with MDCK cells7. Thus, the MDCK-SIAT1 cells are better suited in MN assays to characterize antibody responses to the recent clusters of A(H3N2) viruses.
Here we describe a MN assay using MDCK-SIAT1 cells to measure antibody responses to contemporary 3C.2a and 3C.3a A(H3N2) viruses in human sera. Viruses grown in either eggs or cells can be used in this assay. Heat inactivated sera containing neutralizing antibodies are first serially diluted, then incubated with 100 TCID50/well of influenza A(H3N2) virus to allow antibodies in the sera to bind to the virus. MDCK-SIAT1 cells are then added to the virus-antibody mixture, and incubated for 18 - 20 h at 37 °C, 5% CO2 to allow the A(H3N2) virus to infect MDCK-SIAT1 cells and replicate. After overnight incubation, the plates are fixed and the amount of virus in each well is quantified by an ELISA using anti-influenza A NP monoclonal antibodies. The detection of NP indicates the presence of virus infection and the absence of neutralizing antibodies. Neutralizing antibody titer is defined as the reciprocal of the highest serum dilution that provides ≥ 50% inhibition of virus infectivity.