作者
Hyukjin Lee, Abigail KR Lytton-Jean, Yi Chen, Kevin T Love, Angela I Park, Emmanouil D Karagiannis, Alfica Sehgal, William Querbes, Christopher S Zurenko, Muthusamy Jayaraman, Chang G Peng, Klaus Charisse, Anna Borodovsky, Muthiah Manoharan, Jessica S Donahoe, Jessica Truelove, Matthias Nahrendorf, Robert Langer, Daniel G Anderson
发表日期
2012/6
期刊
Nature nanotechnology
卷号
7
期号
6
页码范围
389-393
出版商
Nature Publishing Group UK
简介
Nanoparticles are used for delivering therapeutics into cells,. However, size, shape, surface chemistry and the presentation of targeting ligands on the surface of nanoparticles can affect circulation half-life and biodistribution, cell-specific internalization, excretion, toxicity and efficacy,,,,. A variety of materials have been explored for delivering small interfering RNAs (siRNAs)—a therapeutic agent that suppresses the expression of targeted genes,. However, conventional delivery nanoparticles such as liposomes and polymeric systems are heterogeneous in size, composition and surface chemistry, and this can lead to suboptimal performance, a lack of tissue specificity and potential toxicity,,. Here, we show that self-assembled DNA tetrahedral nanoparticles with a well-defined size can deliver siRNAs into cells and silence target genes in tumours. Monodisperse nanoparticles are prepared through the self-assembly of …
引用总数
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