首页> 美国卫生研究院文献>Nucleic Acids Research >Intracellular availability of unmodified phosphorothioated and liposomally encapsulated oligodeoxynucleotides for antisense activity.
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Intracellular availability of unmodified phosphorothioated and liposomally encapsulated oligodeoxynucleotides for antisense activity.

机译:细胞内可利用的未修饰硫代磷酸化和脂质体包裹的寡脱氧核苷酸用于反义活性。

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摘要

We have studied factors which may effect the intracellular availability of oligonucleotides to achieve antisense activity. 15-20 mer unmodified, phosphorothioate modified and liposomally encapsulated oligodeoxynucleotides have been tested in leukemia MOLT-3 cells. Phosphorothioate analogs penetrated and accumulated intact in cells in contrast to unmodified oligomers, which showed a high instability in cell culture medium. A slow decrease of intracellular concentration of undegraded phosphorothioate oligodeoxynucleotides was observed after cell treatment and could be predominantly explained by a significant efflux transport. Using laser-assisted confocal microscopy we have observed that fluorescein 5-end-labeled phosphorothioate derivatives predominantly distributed in intracytoplasmic endocytic vesicles following cell treatment. The end-capped version of phosphorothioate oligodeoxynucleotides exhibited greater cellular uptake than fully modified analogues while exhibiting similar biological stability. Liposome encapsulation made possible oligomer protection in serum-containing medium and substantially improved cellular accumulation. Furthermore, the efflux rate of oligomer initially introduced within liposomes is 2-fold lower than that observed in cells which have been incubated with free oligonucleotides. Liposomal preparations of oligodeoxynucleotides facilitate release from endocytic vesicles, and thus, cytoplasmic and nuclear localization are observed following cell treatment. Furthermore, intracellular distribution studies demonstrate that intracellular transport of unmodified oligomers is effectively achieved using the liposomal carrier.
机译:我们研究了可能影响寡核苷酸实现反义活性的细胞内可用性的因素。已经在白血病MOLT-3细胞中测试了15-20mer未修饰的,硫代磷酸酯修饰的和脂质体包裹的寡脱氧核苷酸。与未修饰的低聚物相反,硫代磷酸酯类似物在细胞中完整渗透并积累,未修饰的低聚物在细胞培养基中显示出高度的不稳定性。细胞处理后,观察到未降解的硫代磷酸酯寡脱氧核苷酸的细胞内浓度缓慢降低,这可能主要是由于大量的外排转运所致。使用激光辅助共聚焦显微镜,我们已经观察到荧光素5末端标记的硫代磷酸酯衍生物在细胞处理后主要分布在胞质内吞囊泡中。与完全修饰的类似物相比,硫代磷酸酯寡脱氧核苷酸的封端版本显示出更大的细胞摄取,同时表现出相似的生物学稳定性。脂质体的包囊使得在含血清的培养基中保护寡聚物成为可能,并显着改善了细胞蓄积。此外,最初引入脂质体中的寡聚物的流出速率比已经与游离寡核苷酸孵育的细胞中观察到的低2倍。寡脱氧核苷酸的脂质体制剂促进从内吞小泡的释放,因此在细胞处理后观察到细胞质和核定位。此外,细胞内分布研究表明,使用脂质体载体可有效实现未修饰寡聚物的细胞内运输。

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