The targeted delivery of multicomponent cargos to cancer cells by nanoporous particle-supported lipid bilayers

原细胞 纳米载体 脂质体 纳米技术 药物输送 纳米孔 靶向给药 脂质双层 癌细胞 材料科学 纳米医学 纳米颗粒 生物物理学 化学 癌症 生物 生物化学 遗传学
作者
Carlee E. Ashley,Eric C. Carnes,Genevieve K Phillips,David P. Padilla,Paul N. Durfee,Page A. Brown,Tracey N. Hanna,Juewen Liu,Brandy Phillips,Mark B. Carter,Nick J. Carroll,Xingmao Jiang,Darren R. Dunphy,Cheryl L. Willman,Dimiter N. Petsev,Deborah G. Evans,Atul N. Parikh,Bryce Chackerian,Walker Wharton,David S. Peabody
出处
期刊:Nature Materials [Nature Portfolio]
卷期号:10 (5): 389-397 被引量:1029
标识
DOI:10.1038/nmat2992
摘要

Encapsulation of drugs within nanocarriers that selectively target malignant cells promises to mitigate side effects of conventional chemotherapy and to enable delivery of the unique drug combinations needed for personalized medicine. To realize this potential, however, targeted nanocarriers must simultaneously overcome multiple challenges, including specificity, stability and a high capacity for disparate cargos. Here we report porous nanoparticle-supported lipid bilayers (protocells) that synergistically combine properties of liposomes and nanoporous particles. Protocells modified with a targeting peptide that binds to human hepatocellular carcinoma exhibit a 10,000-fold greater affinity for human hepatocellular carcinoma than for hepatocytes, endothelial cells or immune cells. Furthermore, protocells can be loaded with combinations of therapeutic (drugs, small interfering RNA and toxins) and diagnostic (quantum dots) agents and modified to promote endosomal escape and nuclear accumulation of selected cargos. The enormous capacity of the high-surface-area nanoporous core combined with the enhanced targeting efficacy enabled by the fluid supported lipid bilayer enable a single protocell loaded with a drug cocktail to kill a drug-resistant human hepatocellular carcinoma cell, representing a 106-fold improvement over comparable liposomes. A nanocarrier—synthesized by the fusion of liposomes to spherical, nanoporous silica particles and subsequent modification of the lipid bilayer with targeting peptides and fusogenic peptides—shows the targeted delivery and controlled release of chemically diverse multicomponent cargos within the cytosol of certain cancer cells.
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