
In vivo genome editing in mouse restores dystrophin expression in Duchenne muscular dystrophy patient muscle fibers
简介:
- 作者: Menglong Chen, Hui Shi, Shixue Gou, Xiaomin Wang, Lei Li, Qin Jin, Han Wu, Huili Zhang, Yaqin Li, Liang Wang, Huan Li, Jinfu Lin, Wenjing Guo, Zhiwu Jiang, Xiaoyu Yang, Anding Xu, Yuling Zhu, Cheng Zhang, Liangxue Lai, and Xiaoping Li
- 杂志: Genome Medicine
- Doi: https://www.doi.org/10.1186/s13073-021-00876-0
- 出版日期: 2021 Apr 12
论文中使用的产品/服务
Quotation shows PackGene:CRISPR AAV vectors were generated by PackGene Biotech.
Research Field:Muscle
AAV Serotype:AAV9
Targeted organ:DMD muscle fibers
Animal or cell line strain:NSI mice/PDX mouse
摘要
Mutations in the DMD gene encoding dystrophin—a critical structural element in muscle cells—cause Duchenne muscular dystrophy (DMD), which is the most common fatal genetic disease. Clustered regularly interspaced short palindromic repeat (CRISPR)-mediated gene editing is a promising strategy for permanently curing DMD.
关于派真
作为一家专注于AAV 技术十余年,深耕基因治疗领域的CRO&CDMO,派真生物可提供从载体设计、构建到 AAV、慢病毒和 mRNA 服务的一站式解决方案。凭借深厚的技术实力、卓越的运营管理和高标准的服务交付,我们为全球客户提供一站式CMC解决方案,包括从早期概念验证、成药性评估到IIT、IND及BLA的各个阶段。
凭借我们独立知识产权的π-alphaTM 293 细胞AAV高产技术平台,我们能将AAV产量提高多至10倍,每批次产量可达1×10¹⁷vg,以满足多样化的商业化和临床项目需求。此外,我们定制化的mRNA和脂质纳米颗粒(LNP)产品及服务覆盖药物和疫苗开发的各个阶段,从研发到符合GMP的生产,提供端到端的一站式解决方案。
