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环糊精介导的多孔RNA纳米球的形成及其在肝细胞癌协同靶向治疗中的应用。

Cyclodextrin-mediated formation of porous RNA nanospheres and their application in synergistic targeted therapeutics of hepatocellular carcinoma.

作者信息

Chen Xiaoxia, Chen Tianshu, Zhang Lili, Wang Zhenyu, Zhou Qingqing, Huang Tingting, Ge Chao, Xu Huili, Zhu Miaoxin, Zhao Fangyu, Yao Ming, Tian Hua, Li Hong, Zhu Xiaoli, Li Jinjun

机构信息

State Key Laboratory of Oncogenes and Related Genes, Shanghai Cancer Institute, Renji Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, 200032, PR China; School of Biomedical Engineering & Med-X Research Institute, Shanghai Jiao Tong University, Shanghai, 200030, PR China.

Center for Molecular Recognition and Biosensing, School of Life Sciences, Shanghai University, Shanghai, 200444, PR China.

出版信息

Biomaterials. 2020 Dec;261:120304. doi: 10.1016/j.biomaterials.2020.120304. Epub 2020 Aug 7.

Abstract

Spherical and porous nanoparticles are ideal nanostructures for drug delivery. But currently they are mainly composed of non-degradable inorganic materials, which hinder clinical applications. Here, biological porous nanospheres using RNA as the building blocks and cyclodextrin as the adhesive were synthesized. The RNA contained the aptamer of EpCAM for targeting delivery and siRNA for gene silencing of EpCAM, while cyclodextrin could load insoluble sorafenib, the core drug of targeted therapy for hepatocellular carcinoma (HCC), through its hydrophobic cavity. After being internalized into targeted HCC cells under the assistance of the aptamer, the porous nanospheres could be degraded by the cytoplasmic Dicer enzymes, releasing siRNA and sorafenib for synergistic therapy. The synergistic efficacy of the porous RNA nanospheres has been validated at in vitro function assay, subcutaneous tumor bearing mice, and orthotopic tumor bearing mice in vivo models. In view of the broad prospects of synergy of gene therapy with chemotherapy, and the fact that RNA and cyclodextrin of the porous nanospheres can be extended to load various types of siRNA and small molecule drugs, respectively, this form of biological porous nanospheres offers opportunities for targeted delivery of suitable drugs for treatment of specific tumors.

摘要

球形和多孔纳米颗粒是药物递送的理想纳米结构。但目前它们主要由不可降解的无机材料组成,这阻碍了其临床应用。在此,合成了以RNA为构建单元、环糊精为粘合剂的生物多孔纳米球。RNA包含用于靶向递送的EpCAM适配体和用于沉默EpCAM基因的siRNA,而环糊精可通过其疏水腔装载不溶性索拉非尼,这是肝细胞癌(HCC)靶向治疗的核心药物。在适配体的协助下被内化到靶向的HCC细胞后,多孔纳米球可被细胞质中的Dicer酶降解,释放出siRNA和索拉非尼用于协同治疗。多孔RNA纳米球的协同疗效已在体外功能测定、皮下荷瘤小鼠和原位荷瘤小鼠体内模型中得到验证。鉴于基因治疗与化疗协同作用的广阔前景,以及多孔纳米球的RNA和环糊精可分别扩展以装载各种类型的siRNA和小分子药物这一事实,这种生物多孔纳米球形式为靶向递送适合治疗特定肿瘤的药物提供了机会。

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