2023 AIChE Annual Meeting
(55e) SMA and ACT: A Tale of Two Isotherms
Author
In a similar spirit, we have aimed to address a gap in the modeling of affinity chromatography for protein separations such Protein A (ProA) based capture of monoclonal antibodies (mAbs): the need to either manually manipulate Langmuir isotherm parameters or to empirically modify isotherm expressions to be able to describe both adsorption and elution operations. We derived a pH-dependent isotherm that accounts for an averaged number of contributing, titratable amino acid residues within the primary mAb and ProA binding sites as well as for the mAb-ProA binding stoichiometry. We have termed this model the affinity complex titration (ACT) isotherm. Weâve demonstrated the utility of the ACT isotherm by estimating model parameters with a limited number of gradient elution experiments (typically two) and then making accurate, extrapolative predictions of mAb breakthrough during loading and elution during step, linear and non-linear pH gradients. Further, the estimated ACT parameters yield biophysically satisfying interpretations, including the use of differences in elution pH during linear gradient elution to estimate differences in binding free energies for different mAbs and to predict competitive mAb adsorption phenomena in polyclonal antibody separations. We expect the ACT isotherm to be generalizable to a broad range of titrable, competitive affinity chromatography media.