Dept. of Biomedical Engineering, Rutgers University, 599 Taylor Road, Piscataway, NJ 08854, USA.
Biotechnol Prog. 2010 Nov-Dec;26(6):1714-23. doi: 10.1002/btpr.472.
Control of genetic expression is a critical issue in the field of stem cell biology, where determining a cell fate or reprogramming adult somatic cells into pluripotent cells has become a common experimental practice. In turn, for these cells to have therapeutic clinical potential, techniques for controlling gene expression are needed that minimizes or eliminates the risk of oncogenesis and mutagenesis. Possible routes for achieving this outcome could come in the form of a transient nonviral gene delivery system. In this study, we improved the efficiency of transient gene delivery to differentiating murine embryonic stem (ES) cells via serum starvation for 3 days before transfection. The transient expression of a constitutively-controlled plasmid increased from ∼50% (replated control) to ∼83% when transfected after 3 days of serum starvation but decreased to ∼28% when transfected after 3 days in normal high serum-containing media. When probed with a liver-specific reporter, Cyp7A1, expression increased from ∼1.4% (replated control) to ∼3.7% when transfected after 3 days of serum starvation but decreased to ∼0.7% when transfected after 3 days in high serum-containing media. Cy3-tagged oligonucleotides were used to rapidly quantify DNA uptake and predict ultimate transfection efficiency. This study suggests that modifications in media serum levels before transfection can have a profound effect on improving nonviral gene delivery.
基因表达的控制是干细胞生物学领域的一个关键问题,在该领域,确定细胞命运或将成年体体细胞重编程为多能细胞已成为一种常见的实验实践。反过来,为了使这些细胞具有治疗临床潜力,需要控制基因表达的技术,最大限度地降低或消除致癌和致突变的风险。实现这一结果的可能途径可以采用瞬时非病毒基因传递系统。在这项研究中,我们通过在转染前对分化的小鼠胚胎干细胞进行 3 天血清饥饿处理,提高了瞬时基因传递的效率。在血清饥饿 3 天后进行转染时,持续控制质粒的瞬时表达从约 50%(重铺对照)增加到约 83%,但在正常高血清含量培养基中进行转染时降至约 28%。当用肝特异性报告基因 Cyp7A1 进行探测时,在血清饥饿 3 天后进行转染时,表达从约 1.4%(重铺对照)增加到约 3.7%,但在高血清含量培养基中进行转染 3 天后降至约 0.7%。Cy3 标记的寡核苷酸被用于快速定量 DNA 摄取并预测最终的转染效率。本研究表明,转染前培养基中血清水平的改变可以对提高非病毒基因传递产生深远的影响。