体外和体内siRNA电转移在肿瘤细胞中的追踪。

Aurelie Paganin-Gioanni, Elisabeth Bellard, Bettina Couderc, Justin Teissié, Muriel Golzio
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摘要

RNA干扰介导的基因沉默提供了靶向抑制疾病相关基因的潜力。RNAi试剂的体内递送可以通过多种途径获得。物理递送方式似乎更安全,而且没有副作用。电渗透是在体外和体内成功转移小干扰rna (sirna)的非病毒方法之一。一种很有希望的方法可能是,对介导siRNA转移的基本过程知之甚少。在这项研究中,我们通过直接荧光成像方法研究了涉及sirna电传递的细胞传递途径。将alexa标记的siRNA电转移到稳定表达增强型绿色荧光蛋白(eGFP)靶报告基因的小鼠黑色素瘤细胞中。用延时荧光显微镜定量观察eGFP基因的沉默作用。荧光标记的sirna在电转移48小时后均匀分布在细胞质中,显然是通过扩散。此外,sirna在肿瘤内注射48小时后电渗透在体内呈现均匀分布。组织荧光显微镜显示sirna主要定位于细胞质中。总的来说,本研究表明,无论是在培养细胞中还是在体内,电渗透都促进了siRNA的细胞质分布。这种方法提供了一种潜在的治疗工具,可以促进siRNA直接渗透到实体肿瘤中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Tracking in vitro and in vivo siRNA electrotransfer in tumor cells.

RNA interference-mediated gene silencing offers the potential of targeted inhibition of disease-relevant genes. In vivo delivery of RNAi reagents can be obtained by a variety of approaches. Physical delivery methods appear safer and lack side effects. Electro-permeabilization is one of the non-viral methods successfully used to transfer small interfering RNAs (siRNAs) in vitro and in vivo. A promising approach may be, very little is known about the fundamental processes mediating siRNA transfer. In this study, we have investigated cellular delivery pathways involved in electro-delivery of siRNAs by a direct fluorescence imaging method. An Alexa-labeled siRNA was electro-transferred into murine melanoma cells stably-expressing the enhanced green fluorescent protein (eGFP) target reporter gene. The silencing of eGFP gene expression was quantified by time-lapsed fluorescence microscopy. Fluorescently-labeled siRNAs were found distributed homogeneously in cytoplasm 48 hours after electro-transfer, apparently by diffusion. Furthermore, siRNAs showed homogeneous distribution in vivo 48 hrs after intra-tumoral injection followed by electro- permeabilization. Histological fluorescence microscopy showed that siRNAs were mostly localized in the cytoplasm. Overall, this study shows that electro-permeabilization facilitates cytoplasmic distribution of siRNA, both in cultured cells and in vivo. This method offers a potential therapeutic tool to facilitate direct siRNA penetration into solid tumors.

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Properties and kinetics of microRNA regulation through canonical seed sites. Aptamer-mediated selective delivery of short RNA therapeutics in cancer cells. Enzyme-triggered PEGylated siRNA-nanoparticles for controlled release of siRNA. RNAi2013: RNAi at Oxford. Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer.
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