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首页> 外文期刊>Biomaterials Science >Rational design of high performance nanotheranostics for NIR-II fluorescence/magnetic resonance imaging guided enhanced phototherapy
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Rational design of high performance nanotheranostics for NIR-II fluorescence/magnetic resonance imaging guided enhanced phototherapy

机译:高性能纳米移位的理性设计荧光/磁共振成像引导增强光疗法

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摘要

Nanotheranostics, which can provide great insight into cancer therapy, has been deemed as a promising technology to settle the unmet medical needs. The rational design of high performance nanotheranostics with multiple complementary imaging features and satisfactory therapeutic efficacy is particularly valuable. Herein, versatile nanotheranostic agents DPPB-Gd-I NPs were fabricated by using gadolinium-diethylenetriaminepentaacetic acid chelates and an iodine-decorated copolymer as encapsulation matrixes to encapsulate a polymer DPPB through one-step nanoprecipitation. We have demonstrated that such nanoagents are able to efficiently damage tumors under single dose injection and NIR laser illumination conditions due to the enhanced photodynamic therapy and enhanced photothermal therapy (the tumor inhibition rate was as high as 94.5%). Moreover, these nanoagents can be utilized as dual-modal NIR-II fluorescence/magnetic resonance imaging probes for tumor diagnosis with high sensitivity, deep tissue penetration, and excellent spatial resolution. Overall, this work offers a powerful tactic to fabricate high performance nanotheranostics for clinical application.
机译:纳米陶瓷,可以提供良好的患癌症治疗的洞察力,被认为是一个有前途的技术来解决未满足的医疗需求。具有多种互补成像特征和令人满意的治疗效果的高性能纳米移植的合理设计是特别有价值的。在此,通过使用钆 - 二亚乙基四胺戊酸螯合物和碘装饰的共聚物作为包封基质来制造DPPB-GD-I NPS,以通过一步纳米沉淀包封聚合物DPPB。我们已经证明,由于增强的光动力疗法和增强的光热疗,因此这种纳米代理能够在单剂量注射和鼻激光照射条件下有效地损害肿瘤(肿瘤抑制率高达94.5%)。此外,这些纳米代理能够用作肿瘤诊断的双模态NIR-II荧光/磁共振成像探针,具有高灵敏度,深层组织渗透和出色的空间分辨率。总体而言,这项工作提供了强大的策略,为临床应用制造高性能纳米移植术。

著录项

  • 来源
    《Biomaterials Science》 |2021年第9期|共8页
  • 作者单位

    Key Laboratory for Organic Electronics and Information Displays &

    Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts &

    Tel;

    Key Laboratory for Organic Electronics and Information Displays &

    Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts &

    Tel;

    Key Laboratory for Organic Electronics and Information Displays &

    Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts &

    Tel;

    Key Laboratory for Organic Electronics and Information Displays &

    Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts &

    Tel;

    Key Laboratory for Organic Electronics and Information Displays &

    Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts &

    Tel;

    Key Laboratory for Organic Electronics and Information Displays &

    Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts &

    Tel;

    Key Laboratory for Organic Electronics and Information Displays &

    Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts &

    Tel;

    Key Laboratory for Organic Electronics and Information Displays &

    Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts &

    Tel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;
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