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High content analysis platform for optimization of lipid mediated CRISPR-Cas9 delivery strategies in human cells

机译:高含量分析平台用于优化人细胞中脂质介导的CRISPR-Cas9递送策略

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摘要

Non-viral gene-editing of human cells using the CRISPR-Cas9 system requires optimized delivery of multiple components. Both the Cas9 endonuclease and a single guide RNA, that defines the genomic target, need to be present and co-localized within the nucleus for efficient gene-editing to occur. This work describes a new high-throughput screening platform for the optimization of CRISPR-Cas9 delivery strategies. By exploiting high content image analysis and microcontact printed plates, multi-parametric gene-editing outcome data from hundreds to thousands of isolated cell populations can be screened simultaneously. Employing this platform, we systematically screened four commercially available cationic lipid transfection materials with a range of RNAs encoding the CRISPR-Cas9 system. Analysis of Cas9 expression and editing of a fluorescent mCherry reporter transgene within human embryonic kidney cells was monitored over several days after transfection. Design of experiments analysis enabled rigorous evaluation of delivery materials and RNA concentration conditions. The results of this analysis indicated that the concentration and identity of transfection material have significantly greater effect on gene-editing than ratio or total amount of RNA. Cell subpopulation analysis on microcontact printed plates, further revealed that low cell number and high Cas9 expression, 24 hours after CRISPR-Cas9 delivery, were strong predictors of gene-editing outcomes. These results suggest design principles for the development of materials and transfection strategies with lipid-based materials. This platform could be applied to rapidly optimize materials for gene-editing in a variety of cell/tissue types in order to advance genomic medicine, regenerative biology and drug discovery.
机译:使用CRISPR-Cas9系统对人类细胞进行非病毒基因编辑需要优化递送多种成分。 Cas9核酸内切酶和定义基因组靶标的单个指导RNA都需要存在并共定位在细胞核内,以便进行有效的基因编辑。这项工作描述了一种用于优化CRISPR-Cas9递送策略的新型高通量筛选平台。通过利用高内涵图像分析和微接触印版,可以同时筛选数百到数千个分离细胞群体的多参数基因编辑结果数据。利用该平台,我们系统地筛选了四种可商购的阳离子脂质转染材料,这些材料具有一系列编码CRISPR-Cas9系统的RNA。转染后几天,监测了Cas9表达的分析和人类胚胎肾细胞内荧光mCherry报告基因转基因的编辑。实验分析的设计可以对传递材料和RNA浓度条件进行严格评估。该分析的结果表明,转染材料的浓度和同一性对基因编辑的影响明显大于RNA的比例或总量。微接触印刷板上的细胞亚群分析进一步揭示,CRISPR-Cas9递送后24小时,低细胞数和高Cas9表达是基因编辑结果的有力预测指标。这些结果提示了开发材料的设计原则以及基于脂质的材料的转染策略。该平台可用于快速优化各种细胞/组织类型中用于基因编辑的材料,以促进基因组医学,再生生物学和药物发现。

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