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Plasmid Transfection in Mammalian Cells Spatiotemporally Tracked by a Gold Nanoparticle

机译:金纳米粒子时空跟踪的哺乳动物细胞中的质粒转染。

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Recent advances in cell transfection have suggested that delivery of a gene on a gold nanoparticle (AuNP) can enhance transfection efficiency. The mechanism of transfection is poorly understood, particularly when the gene is appended to a AuNP, as expression of the desired exogenous protein is dependent not only on the efficiency of the gene being taken into the cell but also on efficient endosomal escape and cellular processing of the nucleic acid. Design of a multicolor surface energy transfer (McSET) molecular beacon by independently dye labeling a linearized plasmid and short duplex DNA (sdDNA) appended to a AuNP allows spatiotemporal profiling of the transfection events, providing insight into package uptake, disassembly, and final plasmid expression. Delivery of the AuNP construct encapsulated in Lipofectamine2000 is monitored in Chinese hamster ovary cells using live-cell confocal microscopy. The McSET beacon signals the location and timing of the AuNP release and endosomal escape events for the plasmid and the sdDNA discretely, which are correlated with plasmid transcription by fluorescent protein expression within the cell. It is observed that delivery of the construct leads to endosomal release of the plasmid and sdDNA from the AuNP surface at different rates, prior to endosomal escape. Slow cytosolic diffusion of the nucleic acids is believed to be the limiting step for transfection, impacting the time-dependent expression of protein. The overall protein expression yield is enhanced when delivered on a AuNP, possibly due to better endosomal escape or lower degradation prior to endosomal escape.
机译:细胞转染的最新进展表明,在金纳米颗粒(AuNP)上传递基因可以提高转染效率。对转染的机制了解甚少,尤其是当基因附加到AuNP上时,因为所需外源蛋白的表达不仅取决于将基因导入细胞的效率,还取决于有效的内体逃逸和细胞内加工过程。核酸。通过独立地染料标记线性化质粒和附在AuNP上的短双链DNA(sdDNA)来设计多色表面能转移(McSET)分子信标,可以对转染事件进行时空分析,从而洞察包装的吸收,拆卸和最终质粒表达。使用活细胞共聚焦显微镜在中国仓鼠卵巢细胞中监测封装在Lipofectamine2000中的AuNP构建体的递送。 McSET信标离散地发出质粒和sdDNA的AuNP释放和内体逸出事件的位置和时间信号,这与细胞内荧光蛋白表达引起的质粒转录相关。观察到,在内体逸出之前,构建体的递送导致以不同的速率从AuNP表面内体释放质粒和sdDNA。核酸的缓慢胞质扩散被认为是转染的限制步骤,影响了蛋白质的时间依赖性表达。当递送到AuNP上时,总蛋白表达产量提高,这可能是由于更好的内体逸出或内体逸出之前的较低降解。

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