外体
微泡
小干扰RNA
内化
化学
全身给药
基因敲除
药物输送
转染
体外
核糖核酸
RNA干扰
癌症研究
细胞生物学
生物化学
细胞
生物
体内
细胞凋亡
基因
小RNA
生物技术
有机化学
作者
Zhefeng Li,Hongzhi Wang,Hongran Yin,Chad E. Bennett,Huang‐Ge Zhang,Peixuan Guo
标识
DOI:10.1038/s41598-018-32953-7
摘要
Abstract Exosomes have shown increasing potential as delivery vesicles for therapy, but challenges like cost/yield, drug payload, and targeting specificity still exist. Plant derived exosome-like nanoparticles have been reported as a promising substitution and exhibit biocompatibility through oral, intranasal administration; however, systemic delivery of siRNA by exosome-like nanoparticles directly isolated from plants has not been reported. Recently, we reported the control of RNA orientation to decorate human derived exosome with cell targeting ligands for specific delivery of siRNA to tumors. Here, we expand to the application of arrowtail RNA nanoparticles for displaying ligands on ginger derived exosome-like nanovesicles (GDENs) for siRNA delivery and tumor inhibition through IV administration. Cushion ultracentrifugation coupled with equilibrium density gradient ultracentrifugation were used for purifying GDENs that displayed size, density, and morphology similar to human derived exosomes. Folic acid (FA), as a ligand, was displayed on the surface of GDENs for targeted delivery of survivin siRNA to KB cancer models. In vitro gene knockdown efficacy by FA-3WJ/GDENs/siRNA complex was comparable to transfection. We observed inhibition of tumor growth on a xenograft model by intravenous administration, which reveals the potential of GDENs as an economic delivery system for siRNA.
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