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通过递送锁核酸反义寡核苷酸实现高效基因沉默,无需转染试剂辅助。

Efficient gene silencing by delivery of locked nucleic acid antisense oligonucleotides, unassisted by transfection reagents.

机构信息

Albert Einstein-Montefiore Cancer Center, Montefiore Medical Center, Bronx, NY 10467, USA.

出版信息

Nucleic Acids Res. 2010 Jan;38(1):e3. doi: 10.1093/nar/gkp841. Epub 2009 Oct 23.

Abstract

For the past 15-20 years, the intracellular delivery and silencing activity of oligodeoxynucleotides have been essentially completely dependent on the use of a delivery technology (e.g. lipofection). We have developed a method (called 'gymnosis') that does not require the use of any transfection reagent or any additives to serum whatsoever, but rather takes advantage of the normal growth properties of cells in tissue culture in order to promote productive oligonucleotide uptake. This robust method permits the sequence-specific silencing of multiple targets in a large number of cell types in tissue culture, both at the protein and mRNA level, at concentrations in the low micromolar range. Optimum results were obtained with locked nucleic acid (LNA) phosphorothioate gap-mers. By appropriate manipulation of oligonucleotide dosing, this silencing can be continuously maintained with little or no toxicity for >240 days. High levels of oligonucleotide in the cell nucleus are not a requirement for gene silencing, contrary to long accepted dogma. In addition, gymnotic delivery can efficiently deliver oligonucleotides to suspension cells that are known to be very difficult to transfect. Finally, the pattern of gene silencing of in vitro gymnotically delivered oligonucleotides correlates particularly well with in vivo silencing. The establishment of this link is of particular significance to those in the academic research and drug discovery and development communities.

摘要

在过去的 15-20 年中,寡核苷酸的细胞内递呈和沉默活性在很大程度上完全依赖于递呈技术(例如脂质体转染)的使用。我们开发了一种方法(称为“基因运动”),该方法不需要使用任何转染试剂或血清添加剂,而是利用细胞在组织培养中的正常生长特性来促进有效的寡核苷酸摄取。这种强大的方法允许在组织培养中的大量细胞类型中对多个靶标进行序列特异性沉默,包括蛋白质和 mRNA 水平,在低微摩尔浓度范围内。最佳结果是使用锁核酸(LNA)硫代磷酸酯缺口寡聚物获得的。通过适当的寡核苷酸剂量控制,可以在 240 天以上的时间内持续保持低毒性或无毒性的沉默。细胞核中寡核苷酸的高水平不是基因沉默的必要条件,这与长期以来公认的教条相反。此外,基因运动递送可以有效地将寡核苷酸递送至悬浮细胞,这些细胞已知非常难以转染。最后,体外基因运动递送的寡核苷酸的基因沉默模式与体内沉默特别相关。建立这种联系对于学术研究、药物发现和开发社区具有特别重要的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e739/2800216/0f1ca1c05e74/gkp841f1.jpg

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