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Antimalarial antisense activity of hexitol nucleic acids.

机译:己糖醇核酸的抗疟反义活性。

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Antisense oligonucleotides and ribozymes have shown promise both as antimalarial agents and as tools for identifying genes vital for parasite survival. This task is urgent due to the ineffectiveness of current drug regimes on the most virulent human malarial parasite, Plasmodium falciparum. The development of new ways to modify and/or protect conventional phosphodiester oligonucleotides to improve nuclease resistance is also important. We assessed the effect of antisense oligonucleotides containing phosphorylated anhydrohexitols in suppressing the growth of P. falciparum in culture. The modified oligonucleotides were able to inhibit parasite growth in a sequence-specific manner, but not as well as the phosphorothioated antisense oligonucleotides, which are effective antimalarials at submicromolar concentrations. Two reasons are suggested: the absence of RNase H activation and differences in membrane transport.
机译:反义寡核苷酸和核酶已显示出作为抗疟药和鉴定对寄生虫存活至关重要的基因的工具的前景。由于当前的药物治疗方案对最致命的人类疟疾寄生虫恶性疟原虫无效,因此这项任务非常紧急。开发修饰和/或保护常规磷酸二酯寡核苷酸以改善核酸酶抗性的新方法也很重要。我们评估了含有磷酸化脱水己糖醇的反义寡核苷酸在抑制培养物中恶性疟原虫生长方面的作用。修饰的寡核苷酸能够以序列特异性的方式抑制寄生虫的生长,但不及硫代磷酸化的反义寡核苷酸,后者在亚微摩尔浓度下是有效的抗疟疾药物。提出两个原因:不存在RNase H活化和膜转运差异。

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