| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 6490290 | Journal of Biotechnology | 2018 | 16 Pages | 
Abstract
												In this work an automated high-throughput platform for a site-specific multi-step conjugation process on a liquid-handling station is presented by use of a model conjugation system. A high-throughput solid-phase buffer exchange was successfully incorporated for reagent removal by utilization of a batch cation exchange step. To ensure accurate screening of conjugation parameters, an intermediate UV/Vis-based concentration determination was established including feedback to the process. For conjugate characterization, a high-throughput compatible reversed-phase chromatography method with a runtime of 7â¯min and no sample preparation was developed. Two case studies illustrate the efficient use for mapping the operating space of a conjugation process. Due to the degree of automation and parallelization, the platform is capable of significantly reducing process development efforts and material demands and shorten development timelines for antibody-drug conjugates.
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											Authors
												Sebastian Andris, Michaela Wendeler, Xiangyang Wang, Jürgen Hubbuch, 
											