Design and use of a low cost, automated morbidostat for adaptive evolution of bacteria under antibiotic drug selection

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Abstract

We describe a low cost, configurable morbidostat for characterizing the evolutionary pathway of antibiotic resistance. The morbidostat is a bacterial culture device that continuously monitors bacterial growth and dynamically adjusts the drug concentration to constantly challenge the bacteria as they evolve to acquire drug resistance. The device features a working volume of ~10 ml and is fully automated and equipped with optical density measurement and micro-pumps for medium and drug delivery. To validate the platform, we measured the stepwise acquisition of trimethoprim resistance in Escherichia coli MG 1655, and integrated the device with a multiplexed microfluidic platform to investigate cell morphology and antibiotic susceptibility. The approach can be up-scaled to laboratory studies of antibiotic drug resistance, and is extendible to adaptive evolution for strain improvements in metabolic engineering and other bacterial culture experiments.

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Liu, P. C., Lee, Y. T., Wang, C. Y., & Yang, Y. T. (2016). Design and use of a low cost, automated morbidostat for adaptive evolution of bacteria under antibiotic drug selection. Journal of Visualized Experiments, 2016(115). https://doi.org/10.3791/54426

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