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A gene expression control technology for cell-free systems and synthetic cells via targeted gene silencing and transfection
Wakana Sato, Melanie Rasmussen, Nathaniel Gaut, Mahima Devarajan, Kaitlin Stokes, Christopher Deich, Aaron E. Engelhart, Katarzyna P. Adamala
doi: https://doi.org/10.1101/2022.07.28.501919
Wakana Sato
1Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US
Melanie Rasmussen
1Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US
Nathaniel Gaut
1Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US
Mahima Devarajan
1Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US
Kaitlin Stokes
1Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US
Christopher Deich
1Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US
Aaron E. Engelhart
1Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US
Katarzyna P. Adamala
1Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US
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Posted July 28, 2022.
A gene expression control technology for cell-free systems and synthetic cells via targeted gene silencing and transfection
Wakana Sato, Melanie Rasmussen, Nathaniel Gaut, Mahima Devarajan, Kaitlin Stokes, Christopher Deich, Aaron E. Engelhart, Katarzyna P. Adamala
bioRxiv 2022.07.28.501919; doi: https://doi.org/10.1101/2022.07.28.501919
A gene expression control technology for cell-free systems and synthetic cells via targeted gene silencing and transfection
Wakana Sato, Melanie Rasmussen, Nathaniel Gaut, Mahima Devarajan, Kaitlin Stokes, Christopher Deich, Aaron E. Engelhart, Katarzyna P. Adamala
bioRxiv 2022.07.28.501919; doi: https://doi.org/10.1101/2022.07.28.501919
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