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Optical Gene Transfer by Femtosecond Laser Pulses

机译:由飞秒激光脉冲的光学基因转移

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摘要

Targeted transfection of cells is an important technique for gene therapy and related biomedical applications. We delineate how high-intensity (10~(12) W/cm~2) near-infrared (NIR) 80 MHz nanojoule femtosecond laser pulses can create highly localised membrane perforations within a minute focal volume, enabling non-invasive direct transfection of mammalian cells with DNA. We suspended Chinese hamster ovarian (CHO), rat kangaroo kidney epithelial (PtK2) and rat fibroblast cells in 0.5 ml culture medium in a sterile miniaturised cell chamber (JenLab GmbH, Jena, Germany) containing 0.2 μg plasmid DNA vector pEGFP-N1 (4.7 kb), which codes for green fluorescent protein (GFP). The NIR laser beam was introduced into a femtosecond laser scanning microscope (JenLab GmbH, Jena, Germany) and focussed on the edge of the cell membrane of a target cell for 16 ms. The integration and expression efficiency of EGFP were assessed in situ by two-photon fluorescence-lifetime imaging using time-correlated single photon counting. The unique capability to transfer foreign DNA safely and efficiently into specific cell types (including stem cells), circumventing mechanical, electrical or chemical means, will have many applications, such as targeted gene therapy and DNA vaccination.
机译:靶向转染细胞是基因治疗和相关生物医学应用的重要技术。我们描绘了高强度(10〜(12)W / cm〜2)近红外线(NIR)80 MHz纳米飞秒激光脉冲可以在分钟局灶度内产生高度局部膜穿孔,从而实现哺乳动物的非侵入性直接转染细胞与DNA。我们暂停中国仓鼠卵巢(CHO),鼠袋鼠肾上皮(PTK2)和大鼠成纤维细胞在0.5ml培养基中的无菌小型细胞室(Jenlab GmbH,Jena,德国),含有0.2μg质粒DNA载体PEGFP-N1(4.7 KB),其用于绿色荧光蛋白(GFP)的代码。将NIR激光束引入飞秒激光扫描显微镜(Jenlab GmbH,Jena,德国),并侧重于靶细胞的细胞膜的边缘16ms。通过使用时间相关的单光子计数,通过双光子荧光 - 寿命成像原位评估EGFP的积分和表达效率。将外国DNA安全有效地转移到特定细胞类型(包括干细胞),绕过机械,电气或化学方法的独特能力将具有许多应用,例如靶向基因治疗和DNA疫苗接种。

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