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Kayeong Lim

Showing results (11-20 of 24) with videos related to

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Nature Biotechnology|August 9, 2017
Erratum: Genome-wide target specificities of CRISPR RNA-guided programmable deaminasesDaesik Kim, Kayeong Lim, Sang-Tae Kim, et al.
Computational and Structural Biotechnology Journal|July 17, 2020
CRISPR-sub: Analysis of DNA substitution mutations caused by CRISPR-Cas9 in human cellsGue-Ho Hwang, Jihyeon Yu, Soyeon Yang, et al.
Advanced Materials (Deerfield Beach, Fla.)|March 12, 2026
A Cryoprotectant-Compatible Nanoporous Platform for Stable and Scalable Delivery of BiopharmaceuticalsSian Lee, Seongchan Kim, Jooyeun Chong, et al.
Nature Biotechnology|March 1, 2017
Highly efficient RNA-guided base editing in mouse embryosKyoungmi Kim, Seuk-Min Ryu, Sang-Tae Kim, et al.
Cell|April 26, 2022
Targeted A-to-G base editing in human mitochondrial DNA with programmable deaminasesSung-Ik Cho, Seonghyun Lee, Young Geun Mok, et al.
Nature Communications|March 30, 2023
Prime editing with genuine Cas9 nickases minimizes unwanted indelsJaesuk Lee, Kayeong Lim, Annie Kim, et al.
Nature Communications|July 2, 2025
Engineered Sdd7 cytosine base editors with enhanced specificityHye-Yeon Hwang, Minyoung Lee, Hwalin Yi, et al.
BMC Bioinformatics|December 28, 2018
Web-based design and analysis tools for CRISPR base editingGue-Ho Hwang, Jeongbin Park, Kayeong Lim, et al.
Nature Biotechnology|April 28, 2018
Adenine base editing in mouse embryos and an adult mouse model of Duchenne muscular dystrophySeuk-Min Ryu, Taeyoung Koo, Kyoungmi Kim, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|August 9, 2025
High-efficiency base editing for nuclear and mitochondrial DNA with an optimized DYW-like deaminaseJiyeon Kweon, Soomin Park, Mi Yeon Jeon, et al.
Pageof 3

Showing results (11-20 of 24) with videos related to

Sort By:
Pageof 3
Nature Biotechnology|August 9, 2017
Erratum: Genome-wide target specificities of CRISPR RNA-guided programmable deaminasesDaesik Kim, Kayeong Lim, Sang-Tae Kim, et al.
Computational and Structural Biotechnology Journal|July 17, 2020
CRISPR-sub: Analysis of DNA substitution mutations caused by CRISPR-Cas9 in human cellsGue-Ho Hwang, Jihyeon Yu, Soyeon Yang, et al.
Advanced Materials (Deerfield Beach, Fla.)|March 12, 2026
A Cryoprotectant-Compatible Nanoporous Platform for Stable and Scalable Delivery of BiopharmaceuticalsSian Lee, Seongchan Kim, Jooyeun Chong, et al.
Nature Biotechnology|March 1, 2017
Highly efficient RNA-guided base editing in mouse embryosKyoungmi Kim, Seuk-Min Ryu, Sang-Tae Kim, et al.
Cell|April 26, 2022
Targeted A-to-G base editing in human mitochondrial DNA with programmable deaminasesSung-Ik Cho, Seonghyun Lee, Young Geun Mok, et al.
Nature Communications|March 30, 2023
Prime editing with genuine Cas9 nickases minimizes unwanted indelsJaesuk Lee, Kayeong Lim, Annie Kim, et al.
Nature Communications|July 2, 2025
Engineered Sdd7 cytosine base editors with enhanced specificityHye-Yeon Hwang, Minyoung Lee, Hwalin Yi, et al.
BMC Bioinformatics|December 28, 2018
Web-based design and analysis tools for CRISPR base editingGue-Ho Hwang, Jeongbin Park, Kayeong Lim, et al.
Nature Biotechnology|April 28, 2018
Adenine base editing in mouse embryos and an adult mouse model of Duchenne muscular dystrophySeuk-Min Ryu, Taeyoung Koo, Kyoungmi Kim, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|August 9, 2025
High-efficiency base editing for nuclear and mitochondrial DNA with an optimized DYW-like deaminaseJiyeon Kweon, Soomin Park, Mi Yeon Jeon, et al.
Pageof 3