SARS-CoV-2 spike-ferritin-nanoparticle adjuvanted with ALFQ induces long-lived plasma cells and cross-neutralizing antibodies.
Shikha ShrivastavaJoshua M CarmenZhongyan LuShraddha BasuRajeshwer S SankhalaWei-Hung ChenPhuong NguyenWilliam C ChangJocelyn KingCourtney CorbittSandra V MayerJessica S BoltonAlexander AndersonIsabella SwaffordGuillermo D TerriquezHung V TrinhJiae KimOusman JobeDominic Paquin-ProulxGary R MatyasGregory D GromowskiJeffrey R CurrierElke S Bergmann-LeitnerKayvon ModjarradNelson L MichaelM Gordon JoyceAllison M W MalloyMangala RaoPublished in: NPJ vaccines (2023)
This study demonstrates the impact of adjuvant on the development of T follicular helper (Tfh) and B cells, and their influence on antibody responses in mice vaccinated with SARS-CoV-2-spike-ferritin-nanoparticle (SpFN) adjuvanted with either Army Liposome Formulation containing QS-21 (SpFN + ALFQ) or Alhydrogel ® (SpFN + AH). SpFN + ALFQ increased the size and frequency of germinal center (GC) B cells in the vaccine-draining lymph nodes and increased the frequency of antigen-specific naive B cells. A single vaccination with SpFN + ALFQ resulted in a higher frequency of IL-21-producing-spike-specific Tfh and GC B cells in the draining lymph nodes and spleen, S-2P protein-specific IgM and IgG antibodies, and elicitation of robust cross-neutralizing antibodies against SARS-CoV-2 variants as early as day 7, which was enhanced by a second vaccination. This was associated with the generation of high titer, high avidity binding antibodies. The third vaccination with SpFN + ALFQ elicited high levels of neutralizing antibodies against the Omicron variant. No cross-neutralizing antibodies against Omicron were induced with SpFN + AH. These findings highlight the importance of ALFQ in orchestrating early induction of antigen-specific Tfh and GC B cell responses and long-lived plasma cells in the bone marrow. The early engagement of S-2P specific naive B cells and high titer IgM antibodies shape the development of long-term neutralization breadth.
Keyphrases
- sars cov
- lymph node
- induced apoptosis
- respiratory syndrome coronavirus
- dengue virus
- metabolic syndrome
- hiv infected
- early stage
- gene expression
- dna methylation
- mesenchymal stem cells
- small molecule
- type diabetes
- social media
- oxidative stress
- signaling pathway
- cell death
- high resolution
- endoplasmic reticulum stress
- copy number
- endothelial cells
- transcription factor
- protein protein
- cell proliferation
- skeletal muscle
- rectal cancer
- binding protein
- insulin resistance