Clements Mark O, Godfrey Andrew, Crossley Joanne, Wilson Sam J, Takeuchi Yasu, Boshoff Chris
Wolfson Institute of Biomedical Research, University College, London, United Kingdom.
Tissue Eng. 2006 Jul;12(7):1741-51. doi: 10.1089/ten.2006.12.1741.
Human stem cells could revolutionize the field of medicine by providing a diverse range of cell types for tissue replacement therapies and drug discovery. To achieve this goal, genetic tools need to be optimized and developed for controlling and manipulating stem cells ex vivo. Here we describe a lentiviral delivery system capable of high infection rates in human mesenchymal and embryonic stem cells. The lentiviral backbone was modified to express mono- and bi-cistronic transgenes and was also used to deliver short hairpin ribonucleic acid for specific silencing of gene expression in human stem cells. We show that lentiviral transduction can be used to alter gene expression without altering the genes' ability to differentiate in vitro. These vectors will enable rapid analysis of gene function in stem cells and permit the generation of knock-in / knock-out models of human disease in the rapidly developing field of gene therapy.
人类干细胞可为组织替代疗法和药物研发提供多种细胞类型,从而彻底改变医学领域。为实现这一目标,需要优化和开发用于在体外控制和操纵干细胞的基因工具。在此,我们描述了一种在人间充质干细胞和胚胎干细胞中具有高感染率的慢病毒递送系统。对慢病毒骨架进行了修饰,以表达单顺反子和双顺反子转基因,还用于递送短发夹核糖核酸,以特异性沉默人类干细胞中的基因表达。我们表明,慢病毒转导可用于改变基因表达,而不会改变基因在体外分化的能力。这些载体将能够快速分析干细胞中的基因功能,并在快速发展的基因治疗领域中生成人类疾病的基因敲入/敲除模型。