Smith Ryan P, Riordan Jesse D, Feddersen Charlotte R, Dupuy Adam J
Department of Anatomy and Cell Biology, Roy J. & Lucille A. Carver College of Medicine, University of Iowa , Iowa City, IA 52242.
Hum Gene Ther. 2015 Jun;26(6):377-85. doi: 10.1089/hum.2014.123.
Much research has gone into the development of hybrid gene delivery systems that combine the broad tropism and efficient transduction of adenoviral vectors with the ability to achieve stable expression of cargo genes. In addition to gene therapy applications, such a system has considerable advantages for studies of gene function in vivo, permitting fine-tuned genetic manipulation with higher throughput than can be achieved using standard transgenic and DNA targeting techniques. Existing strategies are limited, however, by low integration efficiencies, small cargo capacity, and/or a dependence on target cell division. The utility of this approach could be enhanced by a system that provides all of the following: (1) efficient delivery, (2) stable expression in a high percentage of target cells (whether mitotic or not), (3) large cargo capacity, (4) flexibility to use with a wide range of additional experimental conditions, and (5) simple experimental technique. Here we report the initial characterization of a hybrid system that meets these criteria by utilizing piggyBac (PB) transposition to achieve genomic integration from adenoviral vectors. We demonstrate stable expression of an adenovirus (Ad)-PB-delivered reporter gene in ∼20-40% of hepatocytes following standard tail vein injection. Its high efficiency and flexibility relative to existing hybrid adenoviral gene delivery approaches indicate a considerable potential utility of the Ad-PB system for therapeutic gene delivery and in vivo studies of gene function.
许多研究致力于开发杂交基因递送系统,该系统将腺病毒载体的广泛嗜性和高效转导能力与实现货物基因稳定表达的能力相结合。除了基因治疗应用外,这样的系统对于体内基因功能研究具有相当大的优势,允许进行比使用标准转基因和DNA靶向技术所能实现的更高通量的精细基因操作。然而,现有的策略受到低整合效率、小货物容量和/或对靶细胞分裂的依赖性的限制。通过提供以下所有条件的系统可以提高这种方法的效用:(1) 高效递送,(2) 在高比例的靶细胞(无论是否有丝分裂)中稳定表达,(3) 大货物容量,(4) 灵活用于广泛的其他实验条件,以及(5) 简单的实验技术。在这里,我们报告了一种杂交系统的初步表征,该系统通过利用piggyBac (PB) 转座从腺病毒载体实现基因组整合来满足这些标准。我们证明,在标准尾静脉注射后,腺病毒 (Ad)-PB 递送的报告基因在约20-40% 的肝细胞中稳定表达。相对于现有的杂交腺病毒基因递送方法,其高效率和灵活性表明Ad-PB系统在治疗性基因递送和基因功能的体内研究中具有相当大的潜在效用。