Transfection of cells using a violet diode laser for photoporation

B. Agate, L. Paterson, T. Lake, J.E. Morris, A. Carruthers, C. Brown, W. Sibbett, K. Dholakia, M. Comrie, R. Ferguson, P. Bryant, A. Riches, F. Gunn-Moore
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Abstract

The introduction and subsequent expression of foreign DNA inside living mammalian cells (transfection) is achieved by photoporation with a violet diode laser. We direct a compact 405 nm laser diode source into an inverted optical microscope configuration and expose cells to 0.3 mW for 40 ms. The localized optical power density of ~1200 MW/m2 is six orders of magnitude lower than that used in femtosecond photoporation (~104 TW/m2). The tightly focused laser beam (with a localised focal volume of ~10-19 m3 ) perforates the cell plasma membrane to allow uptake of plasmid DNA containing an antibiotic resistant gene as well as the green fluorescent protein (GFP) gene. Successfully transfected cells then expand into clonal groups which are used to create stable cell lines. The use of the violet diode laser offers a new and simple poration technique compatible with standard microscopes and is the simplest method of laser-assisted cell poration reported to date
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用紫色二极管激光转染细胞进行光穿孔
外源DNA的导入和随后的表达在活的哺乳动物细胞(转染)是实现光穿孔与紫色二极管激光。我们将一个紧凑的405 nm激光二极管源置于倒置光学显微镜配置中,并将细胞暴露在0.3 mW下40 ms。局域光功率密度为~ 1200mw /m2,比飞秒光致发光(~ 104tw /m2)低6个数量级。紧密聚焦的激光束(局部聚焦体积约为10-19 m3)穿过细胞质膜,允许摄取含有抗生素抗性基因和绿色荧光蛋白(GFP)基因的质粒DNA。成功转染的细胞然后扩增成克隆群,用于创建稳定的细胞系。紫二极管激光的使用提供了一种新的简单的穿孔技术,与标准显微镜兼容,是迄今为止报道的最简单的激光辅助细胞穿孔方法
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