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Small-volume extensional rheology of concentrated protein and protein-excipient solutions

Kathleen T. Lauser, Amy L. Rueter, Michelle A. Calabrese

2021Soft Matter28 citationsDOI

Abstract

DoS both with and without excipient poloxamer 188 (P188). Water and dilute OVA break apart rapidly and demonstrate inertiocapillary (IC) thinning behavior, where longer breakup times in OVA can be attributed to lower surface tension. Further increasing OVA content leads to longer breakup times and deviations from IC thinning at the start of thinning, however, no evidence of elastic behavior is observed. P188 more effectively lowers the droplet surface tension than OVA, transitioning from IC behavior in dilute solution to weakly elastic behavior at higher concentrations. Combined protein/excipient formulations act synergistically at low concentrations, where breakup times are identical to those of the individual components despite the higher total concentration. However concentrated protein/excipient formulations exhibit elasticity, where extensional rheology parameters depend on P188 content and total concentration. These findings imply that excipients intended to stabilize proteins in shear flow can cause undesirable behavior in extensional flows like injection.

Topics & Concepts

ExcipientRheologySurface tensionShear thinningBreakupChemistryChromatographyMaterials scienceChemical engineeringComposite materialThermodynamicsMechanicsEngineeringPhysicsRheology and Fluid Dynamics StudiesProtein purification and stabilityBlood properties and coagulation
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