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首页> 外文期刊>Advanced Functional Materials >Engineering Inorganic Nanoemulsions/Nanoliposomes by Fluoride-Silica Chemistry for Efficient Delivery/Co-Delivery of Hydrophobic Agents
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Engineering Inorganic Nanoemulsions/Nanoliposomes by Fluoride-Silica Chemistry for Efficient Delivery/Co-Delivery of Hydrophobic Agents

机译:通过氟化物-二氧化硅化学工程化无机纳米乳剂/纳米脂质体以有效地递送/共同递送疏水剂

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摘要

A novel drug-formulation protocol is developed to solve the delivery problem of hydrophobic drug molecules by using inorganic mesoporous silica nano capsules (IMNCs) as an alternative to traditional organic emulsions and lipo somes while preserving the advantages of inorganic materials. The unique structures of IMNCs are engineered by a novel fluoride-silica chemistry based on a structural difference-based selective etching strategy. The prepared IMNCs combine the functions of organic nanoemulsions or nanoliposomes with the properties of inorganic materials. Various spherical nanostructures can be fabricated simply by varying the synthetic parameters. The drug loading amount of a typical highly hydrophobic anticancer drug-camptothecin (CPT) in IMNCs reaches as high as 35.1 wt%. The intracellular release of CPT from carriers is demonstrated in situ. In addition, IMNCs can play the role of organic nanoliposome (multivesicular liposome) in co-encapsulating and co-delivering hydrophobic (CPT) and hydrophilic (doxorubicin, DOX) anticancer drugs simultaneously. The co-delivery of multi-drugs in the same carrier and the intracellular release of the drug combinations enables a drug delivery system with efficient enhanced chemotherapeutic effect for DOX-resistant MCF-7/ADR cancer cells. The special IMNCs-based "inorganic nanoemul-sion", as a proof-of-concept, can also be employed successfully to encapsulate and deliver biocompatible hydrophobic perfluorohexane (PFH) molecules for high intensity focused ultrasound (HIFU) synergistic therapy ex vivo and in vivo. Based on this novel design strategy, a wide range of inorganic material systems with similar "inorganic nanoemulsion or nanoliposome" functions will be developed to satisfy varied clinical requirements.
机译:通过使用无机介孔二氧化硅纳米胶囊(IMNC)作为传统有机乳液和脂质体的替代品,同时保留了无机材料的优势,开发了一种新颖的药物配方方案来解决疏水性药物分子的输送问题。 IMNC的独特结构是基于一种基于结构差异的选择性蚀刻策略,通过一种新颖的氟化物-二氧化硅化学方法进行工程设计的。所制备的IMNC将有机纳米乳剂或纳米脂质体的功能与无机材料的特性相结合。可以通过改变合成参数来简单地制造各种球形纳米结构。 IMNC中典型的高疏水性抗癌药物喜树碱(CPT)的载药量高达35.1 wt%。 CPT从载体的细胞内释放被原位证实。此外,IMNCs可以在同时包裹和共同递送疏水性(CPT)和亲水性(阿霉素,DOX)抗癌药物中发挥有机纳米脂质体(多囊脂质体)的作用。在同一载体中多种药物的共同递送以及药物组合的细胞内释放使药物递送系统对耐DOX的MCF-7 / ADR癌细胞具有有效增强的化学治疗作用。作为概念验证,基于IMNCs的特殊“无机纳米乳液”也可以成功地用于封装和递送生物相容性疏水全氟己烷(PFH)分子,用于离体和离体高强度聚焦超声(HIFU)协同治疗。体内。基于这种新颖的设计策略,将开发具有类似“无机纳米乳液或纳米脂质体”功能的多种无机材料系统,以满足各种临床需求。

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  • 来源
    《Advanced Functional Materials 》 |2012年第8期| p.1586-1597| 共12页
  • 作者单位

    State Key Laboratory of High Performance Ceramic and Superfine Microstructures Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai, 200050, P. R. China;

    Shanghai Institute of Materia Medica Chinese Academy of Sciences Shanghai, 201203, P. R.China;

    State Key Laboratory of High Performance Ceramic and Superfine Microstructures Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai, 200050, P. R. China;

    State Key Laboratory of Ultrasound Engineering in Medicine Co-founded by Chongqing and the Ministry of Science and Technology Chongqing Key Laboratory of Ultrasound in Medicine and Engineering College of Biomedical Engineering Chongqing Medical University Chongqing, 400016, P. R. China;

    Shanghai Institute of Materia Medica Chinese Academy of Sciences Shanghai, 201203, P. R.China;

    Second Affiliated Hospital of Chongqing Medical University Chongqing, 400010, P. R. China;

    State Key Laboratory of Ultrasound Engineering in Medicine Co-founded by Chongqing and the Ministry of Science and Technology Chongqing Key Laboratory of Ultrasound in Medicine and Engineering College of Biomedical Engineering Chongqing Medical University Chongqing, 400016, P. R. China;

    Shanghai Institute of Materia Medica Chinese Academy of Sciences Shanghai, 201203, P. R.China;

    State Key Laboratory of High Performance Ceramic and Superfine Microstructures Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai, 200050, P. R. China;

    State Key Laboratory of High Performance Ceramic and Superfine Microstructures Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai, 200050, P. R. China;

    State Key Laboratory of High Performance Ceramic and Superfine Microstructures Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai, 200050, P. R. China;

    State Key Laboratory of High Performance Ceramic and Superfine Microstructures Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai, 200050, P. R. China;

    State Key Laboratory of High Performance Ceramic and Superfine Microstructures Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai, 200050, P. R. China;

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