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首页> 外文期刊>Nanoscale >Microfluidic-assisted biomineralization of CRISPR/Cas9 in near-infrared responsive metal–organic frameworks for programmable gene-editing
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Microfluidic-assisted biomineralization of CRISPR/Cas9 in near-infrared responsive metal–organic frameworks for programmable gene-editing

机译:微流控辅助 CRISPR/Cas9 在近红外响应金属有机框架中的生物矿化,用于可编程基因编辑

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摘要

Ribonucleoprotein (RNP) based CRISPR/Cas9 gene-editing system shows great potential in biomedical applications. However, due to the large size, charged surface and high biological sensitivity of RNP, its efficient delivery with precise control remains highly challenging. Herein, a microfluidic-assisted metal–organic framework (MOF) based biomineralization strategy is designed and utilized for the efficient delivery and remote regulation of CRISPR/Cas9 RNP gene editing. The strategy is realized by biomimetic growing of thermo-responsive EuMOFs onto photothermal template Prussian blue (PB). The RNP is loaded during MOFs crystallization in microfluidic channels. By adjusting different microfluidic parameters, well-defined and comparable RNP encapsulated nanocarrier (PB@RNP-EuMOFs) are obtained with high loading efficiency (60%), remarkable RNP protection and NIR-stimulated release capacity. Upon laser exposure, the nanocarrier induces effective endosomal escape (4 h) and precise gene knockout of green fluorescent protein by 40% over 2 days. Moreover, the gene-editing activity can be programmed by tuning exposure times (42% for three times and 47% for four times), proving more controllable and inducible editing modality compared to control group without laser irradiation. This novel microfluidic-assisted MOFs biomineralization strategy thus offers an attractive route to optimize delivery systems and reduce off-target side effects by NIR-triggered remote control of CRISPR/Cas9 RNP, improving the potential for its highly efficient and precise therapeutic application.
机译:基于核糖核蛋白(RNP) CRISPR / Cas9基因编辑系统中显示了巨大的潜力生物医学应用。大尺寸,带电表面和高生物RNP的敏感性,其高效的交付精确控制仍高度挑战性。在此,microfluidic-assisted有机配合基于框架(MOF)的生物矿化策略设计和利用有效吗交付和远程监管CRISPR / Cas9 RNP基因编辑。仿生种植thermo-responsive EuMOFs在光热光谱分析模板普鲁士蓝(PB)。RNP mof结晶中加载微流体通道。微流体参数,定义良好的和可比RNP封装nanocarrier(PB@RNP-EuMOFs)是获得高加载效率(60%)、RNP保护和显著NIR-stimulated释放能力。曝光,nanocarrier诱发有效endosomal逃避(4 h)和精确的基因敲除绿色荧光蛋白的40% / 2天。此外,基因编辑活动程序通过调整曝光时间(为42%三次和四次为47%),证明更多可控和可诱导的编辑方法而对照组无激光辐照。因此提供了一个财政部生物矿化策略有吸引力的路线优化系统和交付减少NIR-triggered不相干的副作用远程控制CRISPR / Cas9 RNP,改善潜在的高效和精确治疗应用。

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