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Outputs (2)

Toward Full-Stack In Silico Synthetic Biology: Integrating Model Specification, Simulation, Verification, and Biological Compilation (2021)
Journal Article
Konur, S., Mierla, L., Fellermann, H., Ladroue, C., Brown, B., Wipat, A., Twycross, J., Dun, B. P., Kalvala, S., Gheorghe, M., & Krasnogor, N. (2021). Toward Full-Stack In Silico Synthetic Biology: Integrating Model Specification, Simulation, Verification, and Biological Compilation. ACS Synthetic Biology, 10(8), 1931-1945. https://doi.org/10.1021/acssynbio.1c00143

We present the Infobiotics Workbench (IBW), a user-friendly, scalable, and integrated computational environment for the computer-aided design of synthetic biological systems. It supports an iterative workflow that begins with specification of the des... Read More about Toward Full-Stack In Silico Synthetic Biology: Integrating Model Specification, Simulation, Verification, and Biological Compilation.

Engineering improved ethylene production: Leveraging systems Biology and adaptive laboratory evolution (2021)
Journal Article
Vaud, S., Pearcy, N., Hanževački, M., Van Hagen, A. M., Abdelrazig, S., Safo, L., Ehsaan, M., Jonczyk, M., Millat, T., Craig, S., Spence, E., Fothergill, J., Bommareddy, R. R., Colin, P.-Y., Twycross, J., Dalby, P., Minton, N., Jäger, C. M., Kim, D.-H., Yu, J., …Bryan, S. J. (2021). Engineering improved ethylene production: Leveraging systems Biology and adaptive laboratory evolution. Metabolic Engineering, 67, 308-320. https://doi.org/10.1016/j.ymben.2021.07.001

Ethylene is a small hydrocarbon gas widely used in the chemical industry. Annual worldwide production currently exceeds 150 million tons, producing considerable amounts of CO2 contributing to climate change. The need for a sustainable alternative is... Read More about Engineering improved ethylene production: Leveraging systems Biology and adaptive laboratory evolution.