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Peptide-substituted oligonucleotide synthesis and non-toxic passive cell delivery

机译:肽取代的寡核苷酸合成和无毒的被动细胞递送

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摘要

Chemically modified oligodeoxynucleotides (ODNs) are known to modulate gene expression by interacting with RNA. An efficient approach for synthesizing amino acid- or peptide-substituted triazolylphosphonate analogs (TP ODNs) has been developed to provide improved stability and cell uptake. The chemistry is quite general, as peptides can be introduced throughout the TP ODN at any preselected internucleotide linkage. These synthetic TP ODNs enter cells through endocytosis in the absence of transfection reagents and localize into perinuclear organelles. The entrapped ODNs are released into the cytoplasm by treatment with endosomal-releasing agents and several are then active as microRNA inhibitors.
机译:已知化学修饰的寡脱氧核苷酸(ODN)通过与RNA相互作用调节基因表达。已经开发了一种合成氨基酸或肽取代的三唑基膦酸酯类似物(TP ODN)的有效方法,以提供改进的稳定性和细胞摄取。化学过程非常普遍,因为可以在任何预先选择的核苷酸间键合处将肽引入整个TP ODN中。这些合成的TP ODNs在不存在转染试剂的情况下通过胞吞作用进入细胞,并定位在核周细胞器中。被包埋的ODN通过用内体释放剂处理而释放到细胞质中,然后一些作为microRNA抑制剂具有活性。

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