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CRISPR-Cas9 directed knock-out of a constitutively expressed gene using lance array nanoinjection

机译:使用喷枪阵列纳米注射技术将CRISPR-Cas9定向敲除组成型表达基因

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摘要

BackgroundCRISPR-Cas9 genome editing and labeling has emerged as an important tool in biologic research, particularly in regards to potential transgenic and gene therapy applications. Delivery of CRISPR-Cas9 plasmids to target cells is typically done by non-viral methods (chemical, physical, and/or electrical), which are limited by low transfection efficiencies or with viral vectors, which are limited by safety and restricted volume size. In this work, a non-viral transfection technology, named lance array nanoinjection (LAN), utilizes a microfabricated silicon chip to physically and electrically deliver genetic material to large numbers of target cells. To demonstrate its utility, we used the CRISPR-Cas9 system to edit the genome of isogenic cells. Two variables related to the LAN process were tested which include the magnitude of current used during plasmid attraction to the silicon lance array (1.5, 4.5, or 6.0 mA) and the number of times cells were injected (one or three times).
机译:背景CRISPR-Cas9基因组编辑和标记已成为生物学研究中的重要工具,特别是在潜在的转基因和基因治疗应用方面。 CRISPR-Cas9质粒向靶细胞的递送通常通过非病毒方法(化学,物理和/或电)完成,这受转染效率低或病毒载体的限制,而病毒载体受安全性和体积限制。在这项工作中,一种名为兰斯阵列纳米注射(LAN)的非病毒转染技术,利用微制造的硅芯片将遗传物质物理和电传递到大量靶细胞。为了证明其实用性,我们使用了CRISPR-Cas9系统来编辑等基因细胞的基因组。测试了与LAN过程相关的两个变量,包括质粒吸引到硅喷枪阵列时使用的电流大小(1.5、4.5或6.0mA)和注入细胞的次数(一或三次)。

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