Non-viral methods of gene transfer to airway epithelium

P. Davis, A. Ziady
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引用次数: 4

Abstract

The airway epithelium has been an important target for gene therapy in the last decade. This route of administration is readily accessible and the airway is affected by a number of disorders for which gene therapy may be useful. Viral vectors were first used to transfer genes to the airway of cystic fibrosis patients a decade ago. However, in vivo results have been disappointing, with substantial inflammation and toxicity occurring at doses that do not produce significant gene transfer. More recently researchers have used plasmid DNA based technologies as an alternative. DNA alone can transfect cells in culture and in vivo, though it is inefficient. Complexing DNA with cationic molecules improves efficiency. Nonviral gene transfer with lipid-DNA complexes has showed promise in cell culture and animals, but is much less efficacious in humans, and inflammation occurs at doses below those required for therapeutic effect. Trans-nuclear membrane delivery appears to be the limiting factor of current liposome-DNA complex efficiency in vivo. DNA compacted with polycations has also been used with good success in animal models, with minimal toxicity and is currently being tested in human trials. In this review, we will discuss the advances and limitations of these nonviral vectors in gene delivery, particularly to airway epithelial cells.
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气道上皮基因转移的非病毒方法
近十年来,气道上皮一直是基因治疗的重要靶点。这种给药途径很容易获得,并且气道受到许多基因治疗可能有用的疾病的影响。十年前,病毒载体首次被用于将基因转移到囊性纤维化患者的气道中。然而,体内实验结果令人失望,在不产生显著基因转移的剂量下,会发生严重的炎症和毒性。最近,研究人员使用了基于质粒DNA的技术作为替代方案。单独的DNA可以在培养和体内转染细胞,尽管它是低效的。用阳离子分子络合DNA可以提高效率。脂质- dna复合物的非病毒基因转移在细胞培养和动物中显示出了希望,但对人类的效果要差得多,并且在低于治疗效果所需的剂量时发生炎症。跨核膜递送似乎是目前脂质体- dna复合物体内效率的限制因素。聚合聚合的DNA在动物模型中也取得了很好的成功,毒性很小,目前正在进行人体试验。在这篇综述中,我们将讨论这些非病毒载体在基因传递方面的进展和局限性,特别是气道上皮细胞。
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