- ORCID iD
- 0000-0003-2858-3749
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Engineering orthogonal transcription for the development of a cross-bacterial, orthogonal and tuneable gene expression toolbox.
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Computational design of new-to-nature biological sensors : unlocking the full potential of transcriptional regulation for custom biosensor development
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Promoter engineering to create quorum sensing-based genetic circuits
(2023) -
Unlocking transcription factor-based biosensors for industrial biotechnology
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- Journal Article
- A1
- open access
MoBioS : modular platform technology for high-throughput construction and characterization of tunable transcriptional biological sensors
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High-throughput in vivo screening of novel prokaryotic, metabolite-responsive transcription factors for biosensor development
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A cross-bacterial, orthogonal and tuneable gene expression toolbox for development of microbial cell factories in diverse bacterial hosts.
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New-to-nature biological sensors: unlocking the full potential of biological sensors beyond nature
(2022) -
Quorum sensing-based genetic circuits for the automated delay of microbial production
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Quorum sensing-based switches to bypass the growth-production trade-off in microbial cell factories