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首页> 外文期刊>Biomaterials >Biocompatible semiconducting polymer nanoparticles as robust photoacoustic and photothermal agents revealing the effects of chemical structure on high photothermal conversion efficiency
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Biocompatible semiconducting polymer nanoparticles as robust photoacoustic and photothermal agents revealing the effects of chemical structure on high photothermal conversion efficiency

机译:生物相容性半导体聚合物纳米颗粒作为鲁棒光声和光热试剂,揭示了化学结构对高光热转换效率的影响

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摘要

Understanding the relationship between polymer chemical structure and its performance of photoacoustic imaging (PAI) and photothermal therapy (PTT) is important for developing ideal PAI/PTT agents. In this report, four semiconducting polymer nanoparticles (SPNs) with different donor-acceptor architectures are self-assembled for highly effective PAI-guided PTT. In particular, SPN1 with the longest π-conjugation length and the highest mass extinction coefficient which are beneficial for intramolecular charge transfer as well as light harvesting, exhibits the highest photothermal conversion efficiency up to 52.6%. Moreover, the as-prepared SPN1 possess good water-dispersibility, robust size-stability and excellent photothermal properties. Furthermore, the SPN1 not only exhibits a remarkable cancer cell-killing ability but also shows a prominent tumor inhibition capacity. Finally, the as-prepared water-dispersible SPN1 displays good biocompatibility and biosafety, making it a promising candidate for future biomedical applications. Considering the plenty of near-infrared absorbing semiconducting polymer available, our work provides fundamental insights for rational design and preparation of highly efficient SPN-based PAI/PTT agents for cancer theranostics.
机译:了解聚合物化学结构与光声成像(PAI)性能之间的关系,光热疗法(PTT)对于开发理想的PAI / PTT剂是重要的。在本报告中,具有不同供体架构的四种半导体聚合物纳米颗粒(SPN)是用于高效PAI引导PTT的自组装。特别地,具有最长的π-缀合长度和最高质量消光系数的SPN1具有有利于分子内电荷转移以及光收获的最高光热转化效率高达52.6%。此外,制备的SPN1具有良好的水分散性,稳定的尺寸稳定性和优异的光热性能。此外,SPN1不仅表现出显着的癌细胞杀伤能力,而且表明了突出的肿瘤抑制能力。最后,制备的水分散式SPN1显示出良好的生物相容性和生物安全性,使其成为未来生物医学应用的有希望的候选者。考虑到近红外吸收半导体聚合物可用,我们的作品为合理设计提供了根本的见解,并为癌症治疗的高效SPN的PAI / PTT试剂提供了基础见解。

著录项

  • 来源
    《Biomaterials》 |2018年第2018期|共11页
  • 作者单位

    Center of Super-Diamond and Advanced Films (COSDAF) &

    Department of Chemistry City University of;

    Chinese Academy of Sciences (CAS) Center for Excellence in Nanoscience and Laboratory of;

    Key Lab of Advanced Transducers and Intelligent Control System Ministry of Education and Shanxi;

    Chinese Academy of Sciences (CAS) Center for Excellence in Nanoscience and Laboratory of;

    Chinese Academy of Sciences (CAS) Center for Excellence in Nanoscience and Laboratory of;

    Center of Super-Diamond and Advanced Films (COSDAF) &

    Department of Chemistry City University of;

    Center of Super-Diamond and Advanced Films (COSDAF) &

    Department of Chemistry City University of;

    Center of Super-Diamond and Advanced Films (COSDAF) &

    Department of Chemistry City University of;

    Center of Super-Diamond and Advanced Films (COSDAF) &

    Department of Chemistry City University of;

    Chinese Academy of Sciences (CAS) Center for Excellence in Nanoscience and Laboratory of;

    Key Lab of Advanced Transducers and Intelligent Control System Ministry of Education and Shanxi;

    Center of Super-Diamond and Advanced Films (COSDAF) &

    Department of Chemistry City University of;

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

    Semiconducting polymer nanoparticles; High photothermal conversion efficiency; Photoacoustic imaging; Photothermal therapy; Cancer theranostics;

    机译:半导体聚合物纳米颗粒;光热转换效率高;光声成像;光热疗法;癌症治疗;

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