Structural properties of immune complexes formed by viral antigens and specific antibodies shape the inflammatory response of macrophages.
Asta LučiūnaitėKristina MašalaitėIeva PlikusieneVincentas MaciulisSilvija JuciuteMilda NorkienėAurelija ŽvirblienėPublished in: Cell & bioscience (2024)
Data on the course of viral infections revealed severe inflammation as a consequence of antiviral immune response. Despite extensive research, there are insufficient data on the role of innate immune cells in promoting inflammation mediated by immune complexes (IC) of viral antigens and their specific antibodies. Recently, we demonstrated that antigens of human polyomaviruses (PyVs) induce an inflammatory response in macrophages. Here, we investigated macrophage activation by IC. We used primary murine macrophages as a cell model, virus-like particles (VLPs) of PyV capsid protein as antigens, and a collection of murine monoclonal antibodies (mAbs) of IgG1, IgG2a, IgG2b subclasses. The inflammatory response was investigated by analysing inflammatory chemokines and activation of NLRP3 inflammasome. We observed a diverse pattern of chemokine secretion in macrophages treated with different IC compared to VLPs alone. To link IC properties with cell activation status, we characterised the IC by advanced optical and acoustic techniques. Ellipsometry provided precise real-time kinetics of mAb-antigen interactions, while quartz crystal microbalance measurements showed changes in conformation and viscoelastic properties during IC formation. These results revealed differences in mAb-antigen interaction and mAb binding parameters of the investigated IC. We found that IC-mediated cell activation depends more on IC characteristics, including mAb affinity, than on mAb affinity for the activating Fc receptor. IC formed by the highest affinity mAb showed a significant enhancement of inflammasome activation. This may explain the hyperinflammation related to viral infection and vaccination. Our findings demonstrate that IC promote the viral antigen-induced inflammatory response depending on antibody properties.
Keyphrases
- inflammatory response
- single cell
- lipopolysaccharide induced
- immune response
- sars cov
- oxidative stress
- dendritic cells
- monoclonal antibody
- nlrp inflammasome
- toll like receptor
- atomic force microscopy
- endothelial cells
- induced apoptosis
- binding protein
- signaling pathway
- artificial intelligence
- machine learning
- diabetic rats
- early onset
- amino acid
- cell cycle arrest
- high speed