Microfluidic Antibody Affinity Profiling for In-Solution Characterisation of Alloantibody - HLA Interactions in Human Serum
Schneider, M. M.; Scheidt, T.; Priddey, A. J.; Xu, C. K.; Hu, M.; Devenish, S. R. A.; Meisl, G.; Dobson, C. M.; Kosmoliaptsis, V.; Knowles, T. P. J.
Show abstract
The detection and characterisation of antibodies in human blood is a key for clinical diagnostics and risk assessment for autoimmunity, infectious diseases and transplanta-tion. Antibody titre derived from immunoassays is a commonly used measure for anti-body response, but this metric does not resolve readily the two fundamental properties of antibodies in solution, namely their affinity and concentration. This difficulty originates from the fact that the fundamental parameters describing the binding interaction, affinity and ligand concentration, are convoluted into the titre measurement; moreover, the difficulty of controlling the surface concentration and activity of the immobilised ligand can make it challenging to distinguish between avidity and affinity. To address these challenges, we developed microfluidic antibody affinity profiling, an assay which allows the simultaneous determination of both affinity and antibody concentration, directly in solution, without surface immobilisation or antibody purification. We demonstrate these measurements in the context of alloantibody characterisation in organ transplantation, using complex patient sera, and quantify the concentration and affinity of alloantibodies against donor Human Leukocyte Antigens (HLA), an extensively used clinical biomarker to access the risk of allograft rejection. These results outline a path towards detection and in depth profiling of antibody response in patient sera.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Nanoscale spatial dependence of avidity in an IgG1 antibody 94%
- Giant magnetoresistive biosensors for real-time quantitative detection of protease activity 94%
- Towards middle-up analysis of polyclonal antibodies: subclass-specific N-glycosylation profiling of murine immunoglobulin G (IgG) by means of HPLC-MS 93%
Similar papers in this journal
Similar papers in this journal
- Identification of peptide coatings that enhance diffusive transport of nanoparticles through the tumor microenvironment 91%
- Cooperative dynamics of DNA grafted magnetic nanoparticles optimize magnetic biosensing and coupling to DNA origami 91%
- Programmed transport and release of nanoscale cargo by immune cells 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.