Cell-Specific Delivery of Diverse Cargos by Bacteriophage MS2 Virus-like Particles

类病毒颗粒 衣壳 病毒 细胞穿透肽 噬菌体MS2 细胞生物学 体外 病毒学 分子生物学 化学 生物 生物化学 核糖核酸 重组DNA 基因 外壳蛋白
作者
Carlee E. Ashley,Eric C. Carnes,Genevieve K Phillips,Paul N. Durfee,Mekensey Buley,Christopher A. Lino,David P. Padilla,Brandy Phillips,Mark B. Carter,Cheryl L. Willman,C. Jeffrey Brinker,Jérri do Carmo Caldeira,Bryce Chackerian,Walker Wharton,David S. Peabody
出处
期刊:ACS Nano [American Chemical Society]
卷期号:5 (7): 5729-5745 被引量:327
标识
DOI:10.1021/nn201397z
摘要

Virus-like particles (VLPs) of bacteriophage MS2 possess numerous features that make them well-suited for use in targeted delivery of therapeutic and imaging agents. MS2 VLPs can be rapidly produced in large quantities using in vivo or in vitro synthesis techniques. Their capsids can be modified in precise locations via genetic insertion or chemical conjugation, facilitating the multivalent display of targeting ligands. MS2 VLPs also self-assemble in the presence of nucleic acids to specifically encapsidate siRNA and RNA-modified cargos. Here we report the use of MS2 VLPs to selectively deliver nanoparticles, chemotherapeutic drugs, siRNA cocktails, and protein toxins to human hepatocellular carcinoma (HCC). MS2 VLPs modified with a peptide (SP94) that binds HCC exhibit a 104-fold higher avidity for HCC than for hepatocytes, endothelial cells, monocytes, or lymphocytes and can deliver high concentrations of encapsidated cargo to the cytosol of HCC cells. SP94-targeted VLPs loaded with doxorubicin, cisplatin, and 5-fluorouracil selectively kill the HCC cell line, Hep3B, at drug concentrations <1 nM, while SP94-targeted VLPs that encapsidate a siRNA cocktail, which silences expression of cyclin family members, induce growth arrest and apoptosis of Hep3B at siRNA concentrations <150 pM. Impressively, MS2 VLPs, when loaded with ricin toxin A-chain (RTA) and modified to codisplay the SP94 targeting peptide and a histidine-rich fusogenic peptide (H5WYG) that promotes endosomal escape, kill virtually the entire population of Hep3B cells at an RTA concentration of 100 fM without affecting the viability of control cells. Our results demonstrate that MS2 VLPs, because of their tolerance of multivalent peptide display and their ability to specifically encapsidate a variety of chemically disparate cargos, induce selective cytotoxicity of cancer in vitro and represent a significant improvement in the characteristics of VLP-based delivery systems.
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