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首页> 外文期刊>Biomaterials >FRET-enabled monitoring of the thermosensitive nanoscale assembly of polymeric micelles into macroscale hydrogel and sequential cognate micelles release
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FRET-enabled monitoring of the thermosensitive nanoscale assembly of polymeric micelles into macroscale hydrogel and sequential cognate micelles release

机译:将聚合物胶束的热敏纳米级组装的荧光性监测到Macroscale水凝胶和顺序同源胶束释放

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摘要

Thermosensitive "micellar hydrogel" is prepared based on poly(epsilon-caprolactone-co-1,4,8-trioxa[4.6]spiro-9-undecanone)-b-poly(ethylene glycol)- b-poly(epsilon-caprolactone- co-1,4,8-trioxa[4.6]spiro-9-undecanone) (PELT) triblock copolymer. Fluorescence resonance energy transfer (FRET) is adopted to explore its assembly (formation) and disassembly (degradation) mechanism within the range of 10 nm. Results prove that the thermosensitive non-covalent aggregation of micelles facilitates the hydrogel formation and the sustained shedding of cognate micelles induces the hydrogel degradation, during which polymers are steadily incorporated in micelles without any micelle disassembly or reassembly. It is confirmed that using multiple-tags based imaging technology, such as FRET imaging, the fate of macro biodegradable materials in vitro and in vivo can be followed at a precise nano even molecular level. Such an unique hydrogel composed of nothing more than PECT micelles can act as not only an injectable nanomedicine reservoir by subcutaneous or pert-tissue administration, but also an advanced "combo" macroscale platform for co-delivery of multi-modal therapeutic agents. Our findings also indicate that biological stimuli (e.g., temperature, enzymes)-induced non-covalent micelle self-assembly may provide us an effective strategy to prepare a macroscale device from nanoscale subunits. (C) 2017 Elsevier Ltd. All rights reserved.
机译:热敏“胶束水凝胶”是基于聚(ε-己内酮-CO-1,4,8-TrioxA [4.6]螺旋-9-过癸砜)-B-聚(乙二醇) - B-聚(epsilon-己内酯 - CO-1,4,8-Trioxa [4.6]螺旋-9-未甲烷酮)(PELT)三嵌段共聚物。采用荧光共振能量转移(FRET)探索其组装(形成)和拆卸(降解)机制在10nm的范围内。结果证明胶束的热敏非共价聚集有利于水凝胶形成,并且通过胶束稳定地掺入胶束中的水凝胶形成和持续的脱落,在没有任何胶束拆卸或重组的胶束中稳定地掺入。证实,使用基于多标签的成像技术,例如FRET成像,在体外和体内宏观生物降解材料的命运可以在精确的纳米偶数分子水平下遵循。这种独特的水凝胶仅由Pect Micelles组成,不能仅通过皮下或植物组织给药的可注射的纳米胺储层,而是一种用于共同递送多模态治疗剂的先进的“组合”宏观平台。我们的研究结果还表明,生物刺激(例如,温度,酶)诱导的非共价胶束自身组装可以为我们提供一种从纳米级亚基制备宏观装置的有效策略。 (c)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Biomaterials》 |2017年第2017期|共11页
  • 作者单位

    Chinese Acad Med Sci Tianjin Key Lab Biomat Res Inst Biomed Engn Tianjin 300192 Peoples R China;

    Chinese Acad Med Sci Tianjin Key Lab Biomat Res Inst Biomed Engn Tianjin 300192 Peoples R China;

    Peking Union Med Coll Tianjin 300192 Peoples R China;

    Peking Union Med Coll Tianjin 300192 Peoples R China;

    Stanford Univ Canary Ctr Stanford Canc Early Detect Mol Imaging Program Stanford Stanford CA;

    Natl Ctr Nanosci &

    Technol China CAS Key Lab Biomed Effects Nanomat &

    Nanosafety Beijing 100190;

    Chinese Acad Med Sci Tianjin Key Lab Biomat Res Inst Biomed Engn Tianjin 300192 Peoples R China;

    Chinese Acad Med Sci Tianjin Key Lab Biomat Res Inst Biomed Engn Tianjin 300192 Peoples R China;

    Peking Union Med Coll Tianjin 300192 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    Micellar hydrogel; Nanoscale assembly; Disassembly; FRET imaging; Drug delivery;

    机译:胶束水凝胶;纳米级组件;拆卸;烦恼成像;药物递送;

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