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Trade-off between the antiviral and vaccinal effects of antibody therapy in the humoral response to HIV. | LitMetric

AI Article Synopsis

  • * A computational model was created to analyze how these two effects interact, showing that while increasing antibody dosage can enhance immune response, too much of the antiviral effect can actually harm the immune response by lowering antigen levels.
  • * This research highlights a trade-off in antibody therapy that was also observed in clinical studies, suggesting that understanding this balance is crucial for optimizing treatments aimed at achieving long-term remission in HIV-1 patients.

Article Abstract

Antibody therapy for HIV-1 infection exerts two broad effects: a drug-like, antiviral effect, which rapidly lowers the viral load, and a vaccinal effect, which may control the viral load long-term by improving the immune response. Here, we elucidate a trade-off between these two effects as they pertain to the humoral response, which may compromise antibody therapy aimed at eliciting long-term HIV-1 remission. We developed a multi-scale computational model that combined within-host viral dynamics and stochastic simulations of the germinal centre (GC) reaction, enabling simultaneous quantification of the antiviral and vaccinal effects of antibody therapy. The model predicted that increasing antibody dosage or antibody-antigen affinity increased immune complex formation and enhanced GC output. Beyond a point, however, a strong antiviral effect reduced antigen levels substantially, extinguishing GCs and limiting the humoral response. We found signatures of this trade-off in clinical studies. Accounting for the trade-off could be important in optimizing antibody therapy for HIV-1 remission.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11614529PMC
http://dx.doi.org/10.1098/rsif.2024.0535DOI Listing

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