## Abstract ## Background The interaction of polyethylenimine (PEI) polyplexes with proteins in cystic fibrosis (CF) airway secretions poses a significant hurdle to this nonviral delivery system. The aim of this study was to evaluate whether albumin may increase the efficiency of PEI complexes in
Gene delivery to respiratory epithelial cells by magnetofection
β Scribed by Soeren W. Gersting; Ulrike Schillinger; James Lausier; Petra Nicklaus; Carsten Rudolph; Christian Plank; Dietrich Reinhardt; Joseph Rosenecker
- Publisher
- John Wiley and Sons
- Year
- 2004
- Tongue
- English
- Weight
- 250 KB
- Volume
- 6
- Category
- Article
- ISSN
- 1099-498X
- DOI
- 10.1002/jgm.569
No coin nor oath required. For personal study only.
β¦ Synopsis
Abstract
Background
For the topical application of DNA vector complexes to the airways, specific extracellular barriers play a major role. In particular, short contact time of complexes with the cell surface caused by the mucociliary clearance hinders cellular uptake of complexes. The aim of this study was to evaluate the ability of magnetofection, a technique based on the principle of magnetic drug targeting, to overcome these barriers in comparison with conventional nonviral gene transfer methods such as lipofection and polyfection.
Methods
Experiments were carried out on permanent (16HBE14oβ) and primary airway epithelial cells (porcine and human), and native porcine airway epithelium ex vivo. Transfection efficiency and doseβresponse relationship of magnetofection were examined by luciferase reporter gene expression. Sedimentation patterns and uptake of gene transfer complexes were characterized by fluorescence and electron microscopy, respectively.
Results
We show that (i) application of a magnetic field allows the magnetofectins to sediment and to enrich at the cell surface within a few minutes, (ii) magnetofection bears an improved doseβresponse relationship, (iii) magnetofection enhances transfection efficiency in both, permanent and primary airway epithelial cells, and (iv) magnetofection leads to significant transgene expression at very short incubation times in an ex vivo airway epithelium organ model.
Conclusions
Magnetofection provides a potential novel method, which may overcome fundamental limitations of nonviral gene transfer to the airways. Due to the accelerated enrichment at the cell surface it may be of major interest for in vivo applications, where longβterm incubation times at the target tissue are hardly achievable. Copyright Β© 2004 John Wiley & Sons, Ltd.
π SIMILAR VOLUMES
## Background: Current liposome-based delivery methods for cystic fibrosis (cf) gene therapy are limited by their poor efficiencies. one way to improve this is to use a receptor/ligand interaction to increase binding of the transfection complex with the target cell. ## Methods and results: We hav
## Abstract Since the establishment of embryonic stem (ES) cells and the identification of tissueβspecific stem cells, researchers have made great strides in the analysis of the natural biology of such stem cells for the development of therapeutic applications. Specifically, ES cells are capable of
Biodegradable polymeric nanoparticles are currently being explored as a nonviral gene delivery system; however, many obstacles impede the translation of these nanomaterials. For example, nanoparticles delivered systemically are inherently prone to adsorbing serum proteins and agglomerating as a resu