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Image-based analysis of lipid nanoparticle-mediated siRNA delivery, intracellular trafficking and endosomal escape

机译:基于图像的脂质纳米颗粒介导的siRNA传递,细胞内运输和内体逃逸的分析

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Delivery of short interfering RNAs (siRNAs) remains a key challenge in the development of RNA interference (RNAi) therapeutics. A better understanding of the mechanisms of siRNA cellular uptake, intracellular transport and endosomal release could critically contribute to the improvement of delivery methods. Here we monitored the uptake of lipid nanoparticles (LNPs) loaded with traceable siRNAs in different cell types in vitro and in mouse liver by quantitative fluorescence imaging and electron microscopy. We found that LNPs enter cells by both constitutive and inducible pathways in a cell type-specific manner using clathrin-mediated endocytosis as well as macropinocytosis. By directly detecting colloidal-gold particles conjugated to siRNAs, we estimated that escape of siRNAs from endosomes into the cytosol occurs at low efficiency (1-2%) and only during a limited window of time when the LNPs reside in a specific compartment sharing early and late endosomal characteristics. Our results provide insights into LNP-mediated siRNA delivery that can guide development of the next generation of delivery systems for RNAi therapeutics.
机译:短干扰RNA(siRNA)的传递仍然是RNA干扰(RNAi)治疗剂开发中的关键挑战。更好地了解siRNA细胞摄取,细胞内运输和内体释放的机制可能对改善递送方法至关重要。在这里,我们通过定量荧光成像和电子显微镜监测了在体外和小鼠肝脏中不同细胞类型中负载有可追踪siRNA的脂质纳米颗粒(LNP)的摄取。我们发现LNPs通过网格蛋白介导的内吞作用以及巨胞饮作用以细胞类型特异性方式通过组成型途径和诱导型途径进入细胞。通过直接检测与siRNA缀合的胶体金颗粒,我们估计siRNA从内体逃逸到细胞质中的效率很低(1-2%),并且仅在有限的时间范围内(当LNP位于早期共享的特定区室中时)和晚期内体特征。我们的结果提供了对LNP介导的siRNA传递的见解,可指导下一代RNAi治疗剂传递系统的开发。

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