| Literature DB >> 24104599 |
Huibi Cao1, Tiago N Machuca, Jonathan C Yeung, Jing Wu, Kai Du, Cathleen Duan, Kohei Hashimoto, Virginia Linacre, Allan L Coates, Kitty Leung, Jian Wang, Herman Yeger, Ernest Cutz, Mingyao Liu, Shaf Keshavjee, Jim Hu.
Abstract
Airway gene delivery is a promising strategy to treat patients with life-threatening lung diseases such as cystic fibrosis (CF). However, this strategy has to be evaluated in large animal preclinical studies in order to translate it to human applications. Because of anatomic and physiological similarities between the human and pig lungs, we utilized pig as a large animal model to examine the safety and efficiency of airway gene delivery with helper-dependent adenoviral vectors. Helper-dependent vectors carrying human CFTR or reporter gene LacZ were aerosolized intratracheally into pigs under bronchoscopic guidance. We found that the LacZ reporter and hCFTR transgene products were efficiently expressed in lung airway epithelial cells. The transgene vectors with this delivery can also reach to submucosal glands. Moreover, the hCFTR transgene protein localized to the apical membrane of both ciliated and nonciliated epithelial cells, mirroring the location of wild-type CF transmembrane conductance regulator (CFTR). Aerosol delivery procedure was well tolerated by pigs without showing systemic toxicity based on the limited number of pigs tested. These results provide important insights into developing clinical strategies for human CF lung gene therapy.Molecular Therapy-Nucleic Acids (2013) 2, e127; doi:10.1038/mtna.2013.55; published online 8 October 2013.Entities:
Year: 2013 PMID: 24104599 PMCID: PMC3890457 DOI: 10.1038/mtna.2013.55
Source DB: PubMed Journal: Mol Ther Nucleic Acids ISSN: 2162-2531 Impact factor: 10.183
LacZ positive cells in pig lung airways
Expression levels of hCFTR mRNA in pig lung airways
Vector cystic fibrosis transmembrane conductance regulator (CFTR)-positive cells in pig airways
Distribution of hCFTR protein in pig lung airways assessed by immunostaining
No acute systemic toxicity observed following helper-dependent (HD) vector aerosol delivery
No systemic toxicity observed after 1 week of aerosol delivery of helper-dependent Ad vector
Pulmonary mechanics before and after helper-dependent vector treatment with aerosol delivery