北條 大成, Nao KOBAYASHI, Chiho HIRAYAMA, Jiaxing Tong, Naruma Uchidate, Aogu Furusho, Kenji Kojima, Eiji Sugiyama, Hajime Mizuno, Hideki Hayashi, Kenichiro Todoroki
Bioanalysis of the immune checkpoint inhibitor nivolumab is crucial for pharmacokinetic studies. However, conventional ligand-binding assays (LBAs) often suffer from the lot-to-lot variability of capture antibodies. Here, we developed a high-affinity anti-nivolumab DNA aptamer as a robust alternative reagent. An integrated strategy combining Fast Protein Liquid Chromatography-based screening, next-generation sequencing, aptamer search algorithm, and computational modeling enabled rapid aptamer identification and optimization. The anti-nivolumab aptamer, mutant 2-3, discovered through in silico modification exhibited a dissociation constant (KD) of 33 nM. Using this aptamer, an enzyme-linked aptamer assay (ELAA) successfully quantified nivolumab in 400-fold diluted plasma samples over a range of 0.02–5.0 µg/mL, demonstrating good precision with a coefficient of variation less than 11.9%. This novel analytical method provides a sufficient quantitative range for the bioanalysis of nivolumab, thus offering a robust, specific, and cost-effective alternative for future pharmacokinetic studies.