日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

High-throughput methods leveraging robotics and computer vision for the development of therapeutic phage cocktails

利用机器人技术和计算机视觉技术开发治疗性噬菌体混合物的高通量方法

Penke, Taylor J R; Hammack, Aeron Tynes; McMillan, Lana J; Baker, Ethan; Wilcock, Pearl; Healy, Nick; Wall, Morgan K Y; Chavez, Naomi; Wright, Iain; Tuson, Hannah H; Woessner, Sara; Trama, Ashley; Prybol, Cameron J; Dordi, Eyra; Ghobadian, Ava; Ousterout, David G; Conley, Nicholas R; Garofolo, Paul

In vivo genome editing improves muscle function in a mouse model of Duchenne muscular dystrophy

体内基因组编辑改善杜氏肌营养不良症小鼠模型的肌肉功能

Nelson, Christopher E; Hakim, Chady H; Ousterout, David G; Thakore, Pratiksha I; Moreb, Eirik A; Castellanos Rivera, Ruth M; Madhavan, Sarina; Pan, Xiufang; Ran, F Ann; Yan, Winston X; Asokan, Aravind; Zhang, Feng; Duan, Dongsheng; Gersbach, Charles A

Multiplex CRISPR/Cas9-based genome editing for correction of dystrophin mutations that cause Duchenne muscular dystrophy.

利用基于 CRISPR/Cas9 的多重基因组编辑技术纠正导致杜氏肌营养不良症的肌营养不良蛋白突变

Ousterout David G, Kabadi Ami M, Thakore Pratiksha I, Majoros William H, Reddy Timothy E, Gersbach Charles A

Correction of dystrophin expression in cells from Duchenne muscular dystrophy patients through genomic excision of exon 51 by zinc finger nucleases

通过锌指核酸酶切除外显子 51 来纠正杜氏肌营养不良症患者细胞中的肌营养不良蛋白表达

David G Ousterout, Ami M Kabadi, Pratiksha I Thakore, Pablo Perez-Pinera, Matthew T Brown, William H Majoros, Timothy E Reddy, Charles A Gersbach

Enhanced MyoD-induced transdifferentiation to a myogenic lineage by fusion to a potent transactivation domain

通过与强效转录激活域融合,增强 MyoD 诱导的向成肌谱系的转分化

Ami M Kabadi, Pratiksha I Thakore, Christopher M Vockley, David G Ousterout, Tyler M Gibson, Farshid Guilak, Timothy E Reddy, Charles A Gersbach

Multiplex CRISPR/Cas9-based genome engineering from a single lentiviral vector

使用单个慢病毒载体进行多重 CRISPR/Cas9 基因组工程

Ami M Kabadi, David G Ousterout, Isaac B Hilton, Charles A Gersbach

Synergistic and tunable human gene activation by combinations of synthetic transcription factors

通过合成转录因子的组合实现协同且可调节的人类基因激活

Pablo Perez-Pinera, David G Ousterout, Jonathan M Brunger, Alicia M Farin, Katherine A Glass, Farshid Guilak, Gregory E Crawford, Alexander J Hartemink, Charles A Gersbach

RNA-guided gene activation by CRISPR-Cas9-based transcription factors

基于 CRISPR-Cas9 的转录因子进行 RNA 引导的基因激活

Pablo Perez-Pinera, D Dewran Kocak, Christopher M Vockley, Andrew F Adler, Ami M Kabadi, Lauren R Polstein, Pratiksha I Thakore, Katherine A Glass, David G Ousterout, Kam W Leong, Farshid Guilak, Gregory E Crawford, Timothy E Reddy, Charles A Gersbach

Gene targeting to the ROSA26 locus directed by engineered zinc finger nucleases

利用工程化锌指核酸酶靶向ROSA26基因位点

Perez-Pinera, Pablo; Ousterout, David G; Brown, Matthew T; Gersbach, Charles A