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首页> 外文期刊>Angewandte Chemie >Biocompatible Infinite-Coordination-Polymer Nanoparticle-Nucleic-Acid Conjugates for Antisense Gene Regulation
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Biocompatible Infinite-Coordination-Polymer Nanoparticle-Nucleic-Acid Conjugates for Antisense Gene Regulation

机译:生物相容性无限配位聚合物纳米粒子-核酸结合反义基因调控。

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摘要

Herein, we report the synthesis of DNA-functionalized infinite-coordination-polymer (ICP) nanoparticles as biocompatible gene-regulation agents. ICP nanoparticles were synthesized from ferric nitrate and a ditopic 3-hydroxy-4-pyridinone (HOPO) ligand bearing a pendant azide. Addition of Fe-III to a solution of the ligand produced nanoparticles, which were colloidally unstable in the presence of salts. Conjugation of DNA to the Fe-III-HOPO ICP particles by copper-free click chemistry afforded colloidally stable nucleic-acid nanoconstructs. The DNA-ICP particles, when cross-linked through sequence-specific hybridization, exhibited narrow, highly cooperative melting transitions consistent with dense DNA surface loading. The ability of the DNA-ICP particles to enter cells and alter protein expression was also evaluated. Our results indicate that these novel particles carry nucleic acids into mammalian cells without the need for transfection agents and are capable of efficient gene knockdown.
机译:在此,我们报告了作为生物相容性基因调节剂的DNA功能化无限配位聚合物(ICP)纳米颗粒的合成。 ICP纳米颗粒由硝酸铁和带有叠氮化物侧基的二位3-羟基-4-吡啶酮(HOPO)配体合成。将Fe-III添加到配体溶液中产生纳米颗粒,其在盐的存在下是胶体不稳定的。通过无铜点击化学将DNA缀合到Fe-III-HOPO ICP颗粒上,得到了胶体稳定的核酸纳米结构。当通过序列特异性杂交交联时,DNA-ICP颗粒表现出与致密的DNA表面负载一致的窄的,高度协同的融解转变。还评估了DNA-ICP颗粒进入细胞和改变蛋白质表达的能力。我们的结果表明,这些新颖的粒子无需转染剂即可将核酸携带到哺乳动物细胞中,并且能够有效地进行基因敲低。

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