分散性
微流控
体内
小干扰RNA
基因沉默
RNA干扰
化学
纳米颗粒
生物物理学
材料科学
纳米技术
核糖核酸
生物
生物化学
基因
生物技术
有机化学
作者
Nathan M. Belliveau,Jens Huft,Paulo J.C. Lin,Sam Chen,Alex K. K. Leung,Timothy Leaver,Andre Wild,Justin B. Lee,Robert Taylor,Ying K. Tam,Carl L. Hansen,Pieter R. Cullis
摘要
Lipid nanoparticles (LNP) are the leading systems for in vivo delivery of small interfering RNA (siRNA) for therapeutic applications. Formulation of LNP siRNA systems requires rapid mixing of solutions containing cationic lipid with solutions containing siRNA. Current formulation procedures employ macroscopic mixing processes to produce systems 70-nm diameter or larger that have variable siRNA encapsulation efficiency, homogeneity, and reproducibility. Here, we show that microfluidic mixing techniques, which permit millisecond mixing at the nanoliter scale, can reproducibly generate limit size LNP siRNA systems 20 nm and larger with essentially complete encapsulation of siRNA over a wide range of conditions with polydispersity indexes as low as 0.02. Optimized LNP siRNA systems produced by microfluidic mixing achieved 50% target gene silencing in hepatocytes at a dose level of 10 µg/kg siRNA in mice. We anticipate that microfluidic mixing, a precisely controlled and readily scalable technique, will become the preferred method for formulation of LNP siRNA delivery systems.
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