遗传增强
转导(生物物理学)
基因传递
囊性纤维化
病毒载体
生物
转基因
气道
免疫学
细胞生物学
病理
基因
医学
重组DNA
遗传学
生物化学
外科
作者
Huibi Cao,Hong Ouyang,Hartmut Grasemann,Claire Bartlett,Kai Du,Rongqi Duan,Fushan Shi,Marvin Estrada,Kyle Seigel,Allan L. Coates,Herman Yeger,Christine E. Bear,Tanja Gonska,Theo J. Moraes,Jim Hu
出处
期刊:Human Gene Therapy
[Mary Ann Liebert, Inc.]
日期:2018-01-11
卷期号:29 (6): 643-652
被引量:61
摘要
A major challenge in developing gene-based therapies for airway diseases such as cystic fibrosis (CF) is sustaining therapeutic levels of transgene expression over time. This is largely due to airway epithelial cell turnover and the host immunogenicity to gene delivery vectors. Modern gene editing tools and delivery vehicles hold great potential for overcoming this challenge. There is currently not much known about how to deliver genes into airway stem cells, of which basal cells are the major type in human airways. In this study, helper-dependent adenoviral (HD-Ad) vectors were delivered to mouse and pig airways via intranasal delivery, and direct bronchoscopic instillation, respectively. Vector transduction was assessed by immunostaining of lung tissue sections, which revealed that airway basal cells of mice and pigs can be targeted in vivo. In addition, efficient transduction of primary human airway basal cells was verified with an HD-Ad vector expressing green fluorescent protein. Furthermore, we successfully delivered the human CFTR gene to airway basal cells from CF patients, and demonstrated restoration of CFTR channel activity following cell differentiation in air-liquid interface culture. Our results provide a strong rationale for utilizing HD-Ad vectors to target airway basal cells for permanent gene correction of genetic airway diseases.
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