Late treatment initiation leads to reduced antiviral potency
The timing of initiation is critical in antiviral treatment and viral dynamic (VD) modeling is a powerful tool to study the within-host viral load changes and evaluate antiviral treatment effects using mathematical equations. Previous simulation studies have shown that early treatment initiation is critical to maximize the therapeutic response in antiviral treatment in an acute viral infection such as influenza and SARS-CoV-2. A recent experimental study demonstrated that late therapy initiation can lead to diminished antiviral potency. However, most VD model simulations with varying treatment initiation time accounted only for the effect of initiation condition (i.e., state of different cell populations when the therapy started), the loss of drug potency has been under-investigated. This may overestimate the antiviral effect, potentially resulting in suboptimal dose selection. To this end, we aimed to characterize relationship between the drug potency (EC50) and the timing of drug addition, using nirmatrelvir and GS-441524 against SARS-CoV-2 as an example. Viral load data were obtained from in vitro experiments with various drug concentrations and treatment initiated between 0 to 3 days post infection. EC50 values were fitted for each treatment initiation group and were found to vary with the timing of treatment initiation in both drugs. Also, a VD model with time-varying EC50 provided better fits than a constant EC50 model (BIC = 1667.90 vs. 1677.84). Further simulations also indicated that a constant EC50 model overestimated the antiviral efficacy when treatment started late. These findings highlighted the importance of considering EC50 shift when optimizing dosage regimens for patients presenting late.