Ex Vivo and In Vivo Lentivirus-Mediated Transduction of Airway Epithelial Progenitor Cells.
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Accepted version
Accepted version
Author(s)
Type
Journal Article
Abstract
A key challenge in pulmonary gene therapy for cystic fibrosis is to provide long-term correction of the genetic defect. This may be achievable by targeting airway epithelial stem/progenitor cells with an integrating vector. Here, we evaluated the ability of a lentiviral vector, derived from the simian immunodeficiency virus and pseudotyped with F and HN envelope proteins from Sendai virus, to transduce progenitor basal cells of the mouse nasal airways. We first transduced basal cell-enriched cultures ex vivo and confirmed efficient transduction of cytokeratin-5 positive cells. We next asked whether progenitor cells could be transduced in vivo. We evaluated the transduction efficiency in mice pretreated by intranasal administration of polidocanol to expose the progenitor cell layer. Compared to control mice, polidocanol treated mice demonstrated a significant increase in the number of transduced basal cells at 3 and 14 days post vector administration. At 14 days, the epithelium of treated mice contained clusters (4 to 8 adjacent cells) of well differentiated ciliated, as well as basal cells suggesting a clonal expansion. These results indicate that our lentiviral vector can transduce progenitor basal cells in vivo, although transduction required denudation of the surface epithelium prior to vector administration.
Date Issued
2015-11-01
Date Acceptance
2015-11-01
Citation
Current Gene Therapy, 2015, 15 (6), pp.581-590
ISSN
1875-5631
Publisher
Bentham Science Publishers
Start Page
581
End Page
590
Journal / Book Title
Current Gene Therapy
Volume
15
Issue
6
Copyright Statement
© 2015 Bentham Science Publisher
Sponsor
Cystic Fibrosis Trust
Identifier
PII: CGT-EPUB-71122
Grant Number
GT001 - GT006
Subjects
Science & Technology
Life Sciences & Biomedicine
Genetics & Heredity
Cystic fibrosis
Gene therapy
Lentivirus
Progenitor basal cells
Polidocanol
TRANSMEMBRANE CONDUCTANCE REGULATOR
TRACHEAL BASAL-CELLS
CYSTIC-FIBROSIS
GENE-TRANSFER
STEM-CELLS
PSEUDOTYPED LENTIVIRUS
MOUSE TRACHEA
LUNG
THERAPY
VECTOR
Biotechnology
11 Medical And Health Sciences
06 Biological Sciences
Publication Status
Published