Parallelized disruption of prokaryotic and eukaryotic cells via miniaturized and automated bead mill

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Abstract

The application of integrated microbioreactor systems is rapidly becoming of more interest to accelerate strain characterization and bioprocess development. However, available high-throughput screening capabilities are often limited to target extracellular compounds only. Consequently, there is a great demand for automated technologies allowing for miniaturized and parallel cell disruption providing access to intracellular measurements. In this study, a fully automated bead mill workflow was developed and validated for four different industrial platform organisms: Escherichia coli, Corynebacterium glutamicum, Saccharomyces cerevisiae, and Aspergillus niger. The workflow enables up to 48 parallel cell disruptions in microtiter plates and is applicable at-line to running lab-scale cultivations. The resulting cell extracts form the basis for quantitative omics studies where no rapid metabolic quenching is required (e.g., genomics and proteomics).

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Jansen, R. P., Müller, M. F., Schröter, S. E., Kappelmann, J., Klein, B., Oldiges, M., & Noack, S. (2020). Parallelized disruption of prokaryotic and eukaryotic cells via miniaturized and automated bead mill. Engineering in Life Sciences, 20(8), 350–356. https://doi.org/10.1002/elsc.202000002

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