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Nanomolar Cellular Antisense Activity of Peptide Nucleic Acid (PNA) Cholic Acid ('Umbrella') and Cholesterol Conjugates Delivered by Cationic Lipids

机译:阳离子脂质输送的肽核酸(PNA)胆酸(“伞”)和胆固醇结合物的纳摩尔细胞反义活性

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Limited cellular uptake and low bioavailability of peptide nucleic adds (PNAs) have restricted widespread use of PNAs as antisense/antigene agents for cells in culture and not least for in vivo applications. We now report the synthesis and cellular antisense activity in cultured HeLa pLuc70S cells of cholesterol and cholic acid ("umbrella") derivatives of splice correction antisense PNA oligomers. While the conjugates alone were practically inactive up to 1 μM, their activity was dramatically improved when delivered by a cationic lipidtransfection agent (LipofectAMINE2000). In particular, PNAs, conjugated to cholesterol through an ester hemisuccinate linker or to cholic acid, exhibited low nanomolar activity (EC_(50) ~ 25 nM), Excellent sequence specificity was retained, as mismatch PNA conjugates did not show any significant antisense activity. Furthermore, we show that increasing the transfection volume improved transfection efficiency, suggesting that accumulation (condensation) of the PNA/lipid complex on the cellular surface is part of the uptake mechanism. These results provide a novel, simple method for very efficient cellular delivery of PNA oligomers, especially using PNA-cholic acid conjugates which, in contrast to PNA-cholesterol conjugates, exhibit sufficient water solubility. The results also question the generality of using cholic acid "umbrella" derivatives as a delivery modality for antisense oligomers.
机译:有限的细胞摄取和肽核酸添加物(PNA)的低生物利用度限制了PNA作为培养细胞中反义/抗原试剂的广泛应用,尤其是在体内应用中。我们现在报告胆固醇和胆汁酸反义PNA低聚物的胆酸(“伞”)衍生物在培养的HeLa pLuc70S细胞中的合成和细胞反义活性。尽管单独的缀合物在高达1μM的范围内几乎没有活性,但当通过阳离子脂质转染剂(LipofectAMINE2000)传递时,其活性大大提高。特别地,通过酯半琥珀酸酯连接物缀合至胆固醇或胆酸的PNA表现出较低的纳摩尔活性(EC_(50)〜25 nM),保留了优异的序列特异性,因为错配的PNA缀合物未显示任何显着的反义活性。此外,我们表明,增加转染量可提高转染效率,表明PNA /脂质复合物在细胞表面的积累(浓缩)是摄取机制的一部分。这些结果提供了新颖,简单的方法,用于非常有效地细胞递送PNA低聚物,尤其是使用与PNA-胆固醇共轭物相比具有足够水溶性的PNA-胆酸共轭物。结果还质疑了使用胆酸“伞”衍生物作为反义寡聚体的递送方式的普遍性。

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