High-yield genome engineering in primary cells using a hybrid ssDNA repair template and small-molecule cocktails
Shy, Brian R., Vykunta, Vivasvan S., Ha, Alvin, Talbot, Alexis, Roth, Theodore L., Nguyen, David N., Pfeifer, Wolfgang G., Chen, Yan Yi, Blaeschke, Franziska, Shifrut, Eric, Vedova, Shane, Mamedov, Murad R., Chung, Jing-Yi Jing, Li, Hong, Yu, Ruby, Wu, David, Wolf, Jeffrey, Martin, Thomas G., Castro, Carlos E., Ye, Lumeng, Esensten, Jonathan H., Eyquem, Justin, Marson, Alexander
Published in Nature biotechnology (01.04.2023)
Published in Nature biotechnology (01.04.2023)
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Journal Article
Engineering an Escherichia coli strain for production of long single-stranded DNA
Shen, Konlin, Flood, Jake J, Zhang, Zhihuizi, Ha, Alvin, Shy, Brian R, Dueber, John E, Douglas, Shawn M
Published in Nucleic acids research (24.04.2024)
Published in Nucleic acids research (24.04.2024)
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Journal Article
Engineering an Escherichia coli strain for production of long single-stranded DNA
Shen, Konlin, Flood, Jake J, Zhang, Zhihuizi, Ha, Alvin, Shy, Brian R, Dueber, John E, Douglas, Shawn M
Published in bioRxiv (01.03.2024)
Published in bioRxiv (01.03.2024)
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Journal Article
Paper
Hybrid ssDNA repair templates enable high yield genome engineering in primary cells for disease modeling and cell therapy manufacturing
Shy, Brian R, Vykunta, Vivasvan, Ha, Alvin, Roth, Theodore L, Talbot, Alexis, Nguyen, David N, Yan Yi Chen, Blaeschke, Franziska, Vedova, Shane, Mamedov, Murad, Jing-Yi, Chung, Li, Hong, Wolf, Jeffrey, Martin, Thomas G, Lumeng Ye, Eyquem, Justin, Esensten, Jonathan, Marson, Alexander
Published in bioRxiv (04.09.2021)
Published in bioRxiv (04.09.2021)
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