Influence of Cell Polarity on Retrovirus-Mediated Gene Transfer to Differentiated Human Airway Epithelia

Author:

Wang Guoshun1,Davidson Beverly L.2,Melchert Paul1,Slepushkin Vladimir A.2,van Es Helmuth H. G.3,Bodner Mordechai4,Jolly Doug J.4,McCray Paul B.1

Affiliation:

1. Departments of Pediatrics1 and

2. Internal Medicine,2 University of Iowa College of Medicine, Iowa City, Iowa 52242;

3. IntroGene, Leiden, The Netherlands3; and

4. Chiron Technologies-Center for Gene Therapy, San Diego, California 921214

Abstract

ABSTRACT Gene transfer with recombinant murine leukemia viruses (MuLV) provides the potential to permanently correct inherited lung diseases, such as cystic fibrosis (CF). Several problems prevent the application of MuLV-based recombinant retroviruses to lung gene therapy: (i) the lack of cell proliferation in mature pulmonary epithelia, (ii) inefficient gene transfer with a vector applied to the apical surface, and (iii) low titers of many retroviral preparations. We found that keratinocyte growth factor (KGF) stimulated proliferation of differentiated human tracheal and bronchial epithelia. Approximately 50% of epithelia divided in response to KGF as assessed by bromodeoxyuridine histochemistry. In airway epithelia stimulated to divide with KGF, high-titer ampho- and xenotropic enveloped vectors preferentially infected cells from the basal side. However, treatment with hypotonic shock or EGTA transiently increased transepithelial permeability, enhancing gene transfer with the vector applied to the mucosal surfaces of KGF-stimulated epithelia. Up to 35% of cells expressed the transgene after gene transfer. By using this approach, cells throughout the epithelial sheet, including basal cells, were targeted. Moreover, the Cl transport defect in differentiated CF airway epithelia was corrected. These findings suggest that barriers to apical infection with MuLV can be overcome.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference55 articles.

1. Tight junctions and the molecular basis for regulation of paracellular permeability;Anderson J. M.;Am. J. Physiol.,1995

2. Demonstration that CFTR is a chloride channel by alteration of its anion selectivity;Anderson M. P.;Science,1991

3. Proliferation and differentiation in mammalian airway epithelium;Ayers M. M.;Eur. Respir. J.,1988

4. High-efficiency gene transfer to primary monkey airway epithelial cells with retrovirus vectors using the gibbon ape leukemia virus receptor;Bayle J.;Hum. Gene Ther.,1993

5. Regulation of tight junction permeability by calcium mediators and cell cytoskeleton in rabbit tracheal epithelium;Bhat M.;Pharm. Res.,1993

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