Automated, Generic Reagent and Ultratargeted 2D-LC-MS/MS Enabling Quantification of Biotherapeutics and Soluble Targets Down to Pg/mL Range in Serum
Affiliations
Mass spectrometry has recently emerged as a powerful analytical tool for the assessment of pharmacokinetics and biomarkers in drug development. Compared with ligand binding assays, a major advantage of mass spectrometry-based assays is that they are less dependent on high quality binding reagents, while a key limitation is the relatively lower sensitivity. To address the sensitivity issue, we have developed a generic reagent, ultratargeted two-dimensional liquid chromatography-tandem mass spectrometry (2D-LC-MS/MS) method which combines commercially available protein A affinity capture, targeted analyte isolation by 2D-LC, and targeted detection by multiple reaction monitoring (MRM). A targeted-2D-with-dilution configuration was designed to automate 2D-LC-MS/MS. This method was systematically evaluated using an anti-CD22 monoclonal antibody spiked into monkey and human serum, where lower limits of quantification (LLOQ) of 0.78 and 1.56 ng/mL were achieved, respectively. This represents an over 100-fold improvement in assay sensitivity compared to the conventional LC-MS/MS method. The performance of the method was further confirmed by analyzing another monoclonal antibody, bevacizumab, as well as a soluble antigen, circulating PD-L1. The results indicate that our method enables quantification of antibody therapeutics and antigen biomarkers in both clinical and nonclinical samples in the pg/mL to low ng/mL range. Protein A affinity capture was employed as a universal sample preparation procedure applicable to both full-length antibody therapeutics and antibody-antigen complexes. This novel method is also fully automated and proven to be highly robust for routine bioanalysis in drug development.
Immunocapture LC-MS methods for pharmacokinetics of large molecule drugs.
Werth E, Roos D, Philip E Bioanalysis. 2024; 16(7):165-177.
PMID: 38348660 PMC: 11845110. DOI: 10.4155/bio-2023-0261.
Papatheocharidou C, Samanidou V Molecules. 2023; 28(13).
PMID: 37446719 PMC: 10343842. DOI: 10.3390/molecules28135056.
Mu R, Huang Y, Bouquet J, Yuan J, Kubiak R, Ma E Anal Chem. 2022; 94(43):14835-14845.
PMID: 36269894 PMC: 9631352. DOI: 10.1021/acs.analchem.2c01320.
Ogiso H, Suno R, Kobayashi T, Kawami M, Takano M, Ogasawara M Molecules. 2022; 27(15).
PMID: 35956840 PMC: 9369908. DOI: 10.3390/molecules27154889.