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Surface chemistry for cytosolic gene delivery and photothermal transgene expression by gold nanorods

机译:金纳米棒对细胞溶质基因传递和光热转基因表达的表面化学

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摘要

Light-inducible gene regulation has great potential for remote and noninvasive control of the fate and function of target cells. One method to achieve such control is delivery of heat shock protein (HSP) promoter-driven protein expression vectors and photothermal heaters into the cells, followed by activation by illumination. In this study, we show that gold nanorods (AuNRs) functionalized with two conventional lipids, oleate and 1,2-dioleoyl-3-trimethylammonium-propane (DOTAP), are capable of efficient transfection and quick photoactivation of the HSP promoter. Use of our AuNRs (DOTAP-AuNRs) was comparable to Lipofectamine 2000 in terms of transfection efficiency, while lower in cytotoxicity. Subsequent near-infrared laser (NIR) illumination of the cells transfected by DOTAP-AuNRs for 10 s induced time- and site-specific transgene expression without significant phototoxicity, to a degree similar to that of heating the entire culture dish for 30 min. Our mechanistic studies suggest that efficient transfection and quick photoactivation of the HSP promoter (HSP70b’) are due to the promoted endosomal escape of DOTAP-AuNRs. We propose a novel protocol for NIR-inducible, site-directed gene expression using an unprecedented complex of the three conventional components capable of both transfection and photothermal heating.
机译:光诱导性基因调控在远程和无创控制靶细胞的命运和功能方面具有巨大潜力。实现这种控制的一种方法是将热休克蛋白(HSP)启动子驱动的蛋白表达载体和光热加热器传递到细胞中,然后通过照明激活。在这项研究中,我们表明金纳米棒(AuNRs)的功能与两个常规的脂质,油酸酯和1,2-二油酰基-3-三甲基铵-丙烷(DOTAP),可以高效转染和HSP启动子的快速光活化。就转染效率而言,我们的AuNRs(DOTAP-AuNRs)的使用与Lipofectamine 2000相当,而细胞毒性较低。随后用DOTAP-AuNRs转染细胞的近红外激光(NIR)照射10s诱导的时间和位点特异性转基因表达,而没有明显的光毒性,其程度类似于将整个培养皿加热30min的程度。我们的机理研究表明,HSP启动子(HSP70b')的有效转染和快速光活化归因于DOTAP-AuNRs的内体逃逸的促进。我们提出了一种新的协议,用于NIR诱导的定点基因表达,使用了能够转染和光热加热的三种常规成分的空前复合物。

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