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首页> 外文期刊>藥學雜誌 >Development of Artificial Nucleic Acids Functionalized for Damaged Gene Diagnosis, Gene Inhibition and Delivery System
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Development of Artificial Nucleic Acids Functionalized for Damaged Gene Diagnosis, Gene Inhibition and Delivery System

机译:可用于受损基因诊断,基因抑制和传递系统的功能化人工核酸的开发

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摘要

Artificial nucleic acids have recently been widely used with their properties optimized for various technologies such as the inhibition of gene expression (antisense/antigene strategies, RNA interference) and genetic diagnosis (single nucleotide polymorphism (SNP), damaged nucleobase). For practical application of nucleic acid therapeutics, establishment of an effective delivery system for oligonucleotides is also required because of their poor permeability into cells. Various useful delivery technologies including lipoplexes formed using cationic lipids and polyplexes made with cationic polymers have been developed; however, there is no crucial tool for oligonucleotide therapeutics at present. If technologies of functional nucleic acids and adequate delivery systems are cooperatively developed, the realization of nucleic acid therapeutics might be effectively accelerated. Based on this concept, we have been cooperatively developing these technologies based on organic synthetic chemistry during the past decade. This paper summarizes our recent results: 1) development of a specific fluorescent probe for 8-oxoguanine; 2) synthesis and evaluation of a prodrug-type small interfering RNA (siRNA) molecule; and 3) targeted intracellular delivery of oligonucleotides via conjugation with receptor-targeted ligands.
机译:人造核酸最近已被广泛使用,其特性针对各种技术进行了优化,例如抑制基因表达(反义/反基因策略,RNA干扰)和遗传诊断(单核苷酸多态性(SNP),受损的核碱基)。对于核酸治疗剂的实际应用,还需要为寡核苷酸建立有效的递送系统,因为它们对细胞的渗透性差。已经开发了各种有用的递送技术,包括使用阳离子脂质形成的脂质复合物和用阳离子聚合物制成的多聚复合物。然而,目前没有用于寡核苷酸治疗的关键工具。如果功能核酸技术和适当的递送系统被共同开发,则可以有效地加速核酸治疗剂的实现。基于这一理念,在过去的十年中,我们一直在合作开发基于有机合成化学的这些技术。本文总结了我们最近的研究结果:1)开发用于8-氧鸟嘌呤的特异性荧光探针; 2)前药型小干扰RNA(siRNA)分子的合成和评估; 3)通过与受体靶向的配体缀合来靶向寡核苷酸的细胞内递送。

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