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A novel strategy for selective gene delivery by using the inhibitory effect of blue light on jetPRIME-mediated transfection

机译:利用蓝光对jetPRIME介导的转染的抑制作用,选择性基因传递的新策略

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Photodynamic control of gene delivery is a new technology with growing applications in gene therapy and basic cell research. Main approaches of light-selective gene delivery rely on the light-dependent enhancement of transfection efficiency. Studies focused on light-stimulated inhibitory regulation of transfection have rarely been reported. Here, we tried to establish a novel procedure of light-dependent inhibition of transfection. Our experiments, conducted with several types of commercial transfection reagents, revealed that jetPRIME-mediated transfection was strongly inhibited by blue light. Although the uptake of reagent-DNA complex was drastically reduced, preliminary exposure of cells or reagent-DNA complex to blue light had no inhibitory effect on the transfection efficiency. The inhibitory effect was wavelength-dependent and mediated by reactive oxygen species. Partial exposure of a culture vessel to blue light resulted in selective gene delivery into cells grown on the unexposed area of the vessel. By using this approach, different types of plasmid DNA were delivered into different areas in the culture vessel. This novel approach to the inhibitory control of transfection provides practical options for research and therapeutics. Biotechnol. Bioeng. 2016;113: 1560-1567. (c) 2015 Wiley Periodicals, Inc.
机译:基因传递的光动力控制是一项新技术,在基因治疗和基础细胞研究中的应用日益广泛。光选择性基因递送的主要方法依赖于光依赖性转染效率的增强。鲜有关于光刺激转染抑制调节的研究报道。在这里,我们试图建立一种光依赖抑制转染的新程序。我们用几种类型的商业转染试剂进行的实验表明,bluePRI强烈抑制了jetPRIME介导的转染。尽管大大降低了试剂-DNA复合物的摄取,但是细胞或试剂-DNA复合物的初步暴露于蓝光对转染效率没有抑制作用。抑制作用是波长依赖性的,并由活性氧介导。将培养容器部分暴露于蓝光导致选择性的基因递送进入在容器未暴露区域生长的细胞中。通过使用这种方法,将不同类型的质粒DNA输送到培养容器的不同区域。这种抑制转染的新颖方法为研究和治疗提供了实用的选择。生物技术。生恩2016; 113:1560-1567。 (c)2015年威利期刊有限公司

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