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Single Cell Transfection through Precise Microinjection with Quantitatively Controlled Injection Volumes

机译:通过精确显微注射定量控制注射体积的单细胞转染

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摘要

Cell transfection is a technique wherein foreign genetic molecules are delivered into cells. To elucidate distinct responses during cell genetic modification, methods to achieve transfection at the single-cell level are of great value. Herein, we developed an automated micropipette-based quantitative microinjection technology that can deliver precise amounts of materials into cells. The developed microinjection system achieved precise single-cell microinjection by pre-patterning cells in an array and controlling the amount of substance delivered based on injection pressure and time. The precision of the proposed injection technique was examined by comparing the fluorescence intensities of fluorescent dye droplets with a standard concentration and water droplets with a known injection amount of the dye in oil. Injection of synthetic modified mRNA (modRNA) encoding green fluorescence proteins or a cocktail of plasmids encoding green and red fluorescence proteins into human foreskin fibroblast cells demonstrated that the resulting green fluorescence intensity or green/red fluorescence intensity ratio were well correlated with the amount of genetic material injected into the cells. Single-cell transfection via the developed microinjection technique will be of particular use in cases where cell transfection is challenging and genetically modified of selected cells are desired
机译:细胞转染是其中外来遗传分子被递送到细胞中的技术。为了阐明细胞遗传修饰过程中的不同反应,在单细胞水平实现转染的方法具有重要价值。本文中,我们开发了一种基于微量移液器的自动化定量显微注射技术,该技术可以将精确量的材料输送到细胞中。通过在阵列中对细胞进行预构图并根据注射压力和时间控制所输送的物质量,开发的显微注射系统实现了精确的单细胞显微注射。通过比较标准浓度的荧光染料滴的荧光强度和已知油中染料注入量的水滴与标准浓度的荧光强度,可以检验所提出的注射技术的精度。向人包皮成纤维细胞中注射编码绿色荧光蛋白的合成修饰mRNA(modRNA)或编码绿色和红色荧光蛋白的质粒混合物,证明所产生的绿色荧光强度或绿色/红色荧光强度比与遗传量密切相关材料注入细胞。通过开发的显微注射技术进行单细胞转染将在细胞转染具有挑战性且需要对选定细胞进行基因修饰的情况下特别有用

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