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Liren Wang

Showing results (81-90 of 94) with videos related to

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Protein & Cell|May 16, 2019
Correction to: Increasing targeting scope of adenosine base editors in mouse and rat embryos through fusion of TadA deaminase with Cas9 variantsLei Yang, Xiaohui Zhang, Liren Wang, et al.
Cell Stem Cell|May 21, 2024
Efficient expansion and CRISPR-Cas9-mediated gene correction of patient-derived hepatocytes for treatment of inherited liver diseasesKun Zhang, Ping Wan, Liren Wang, et al.
Nature Cell Biology|May 13, 2020
Increasing the efficiency and targeting range of cytidine base editors through fusion of a single-stranded DNA-binding protein domainXiaohui Zhang, Liang Chen, Biyun Zhu, et al.
Nature Biotechnology|March 31, 2025
Engineering a photoactivatable A-to-I RNA base editor for gene therapy in vivoHuiying Li, Yuhao Qiu, Bowen Song, et al.
Nature Biotechnology|June 15, 2023
Adenine transversion editors enable precise, efficient A•T-to-C•G base editing in mammalian cells and embryosLiang Chen, Mengjia Hong, Changming Luan, et al.
Bone Research|February 24, 2025
CCN2 mediates fibroblast-macrophage interaction in knee arthrofibrosis based on single-cell RNA-seq analysisZiyun Li, Jia Jiang, Kangwen Cai, et al.
Nature Chemical Biology|March 30, 2024
Engineering APOBEC3A deaminase for highly accurate and efficient base editingLei Yang, Yanan Huo, Man Wang, et al.
Science Advances|July 15, 2026
Reduction of appearance artifacts in wearable on-skin electronicsYijun Liu, Soutaro Ito, Takeo Kato, et al.
Nature Chemical Biology|October 13, 2022
Engineering a precise adenine base editor with minimal bystander editingLiang Chen, Shun Zhang, Niannian Xue, et al.
Nature Biotechnology|November 11, 2022
Re-engineering the adenine deaminase TadA-8e for efficient and specific CRISPR-based cytosine base editingLiang Chen, Biyun Zhu, Gaomeng Ru, et al.
Pageof 10

Showing results (81-90 of 94) with videos related to

Sort By:
Pageof 10
Protein & Cell|May 16, 2019
Correction to: Increasing targeting scope of adenosine base editors in mouse and rat embryos through fusion of TadA deaminase with Cas9 variantsLei Yang, Xiaohui Zhang, Liren Wang, et al.
Cell Stem Cell|May 21, 2024
Efficient expansion and CRISPR-Cas9-mediated gene correction of patient-derived hepatocytes for treatment of inherited liver diseasesKun Zhang, Ping Wan, Liren Wang, et al.
Nature Cell Biology|May 13, 2020
Increasing the efficiency and targeting range of cytidine base editors through fusion of a single-stranded DNA-binding protein domainXiaohui Zhang, Liang Chen, Biyun Zhu, et al.
Nature Biotechnology|March 31, 2025
Engineering a photoactivatable A-to-I RNA base editor for gene therapy in vivoHuiying Li, Yuhao Qiu, Bowen Song, et al.
Nature Biotechnology|June 15, 2023
Adenine transversion editors enable precise, efficient A•T-to-C•G base editing in mammalian cells and embryosLiang Chen, Mengjia Hong, Changming Luan, et al.
Bone Research|February 24, 2025
CCN2 mediates fibroblast-macrophage interaction in knee arthrofibrosis based on single-cell RNA-seq analysisZiyun Li, Jia Jiang, Kangwen Cai, et al.
Nature Chemical Biology|March 30, 2024
Engineering APOBEC3A deaminase for highly accurate and efficient base editingLei Yang, Yanan Huo, Man Wang, et al.
Science Advances|July 15, 2026
Reduction of appearance artifacts in wearable on-skin electronicsYijun Liu, Soutaro Ito, Takeo Kato, et al.
Nature Chemical Biology|October 13, 2022
Engineering a precise adenine base editor with minimal bystander editingLiang Chen, Shun Zhang, Niannian Xue, et al.
Nature Biotechnology|November 11, 2022
Re-engineering the adenine deaminase TadA-8e for efficient and specific CRISPR-based cytosine base editingLiang Chen, Biyun Zhu, Gaomeng Ru, et al.
Pageof 10