Center for Integrative Protein Science, Department of Chemistry, Ludwig-Maximilians University München, Butenandtstrasse 5-13, 81377 Munich (Germany) http://www.carellgroup.de.
Angew Chem Int Ed Engl. 2015 Feb 2;54(6):1946-9. doi: 10.1002/anie.201409803. Epub 2014 Dec 17.
We report the development of dendritic siRNA nanostructures that are able to penetrate even difficult to transfect cells such as neurons with the help of a special receptor ligand. The nanoparticles elicit strong siRNA responses, despite the dendritic structure. An siRNA dendrimer directed against the crucial rabies virus (RABV) nucleoprotein (N protein) and phosphoprotein (P protein) allowed the suppression of the virus titer in neurons below the detection limit. The cell-penetrating siRNA dendrimers, which were assembled using click chemistry, open up new avenues toward finding novel molecules able to cure this deadly disease.
我们报告了树突状 siRNA 纳米结构的开发,这些纳米结构在特殊受体配体的帮助下能够穿透甚至难以转染的细胞,如神经元。尽管存在树突状结构,但这些纳米颗粒仍能引发强烈的 siRNA 反应。一种针对关键的狂犬病病毒(RABV)核蛋白(N 蛋白)和磷蛋白(P 蛋白)的 siRNA 树突状聚合物允许将神经元中的病毒滴度抑制到检测限以下。使用点击化学组装的细胞穿透性 siRNA 树突状聚合物为寻找能够治愈这种致命疾病的新型分子开辟了新途径。