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Molecularly Engineered Theranostic Nanoparticles for Thrombosed Vessels: H2O2-Activatable Contrast-Enhanced Photoacoustic Imaging and Antithrombotic Therapy

机译:用于血栓形成血管的分子工程化纳米颗粒:H 2 O 2 -activatable对比度增强的光声成像和抗血栓疗法

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摘要

A thrombus (blood clot), composed mainly of activated platelets and fibrin, obstructs arteries or veins, leading to various life-threatening diseases. Inspired by the distinctive physicochemical characteristics of thrombi such as abundant fibrin and an elevated level of hydrogen peroxide (H_(2)O_(2)), we developed thrombus-specific theranostic (T-FBM) nanoparticles that could provide H_(2)O_(2)-triggered photoacoustic signal amplification and serve as an antithrombotic nanomedicine. T-FBM nanoparticles were designed to target fibrin-rich thrombi and be activated by H_(2)O_(2) to generate CO_(2) bubbles to amplify the photoacoustic signal. In the phantom studies, T-FBM nanoparticles showed significant amplification of ultrasound/photoacoustic signals in a H_(2)O_(2)-triggered manner. T-FBM nanoparticles also exerted H_(2)O_(2)-activatable antioxidant, anti-inflammatory, and antiplatelet activities on endothelial cells. In mouse models of carotid arterial injury, T-FBM nanoparticles significantly enhanced the photoacoustic contrast specifically in thrombosed vessels and significantly suppressed thrombus formation. We anticipate that T-FBM nanoparticles hold great translational potential as nanotheranostics for H_(2)O_(2)-associated cardiovascular diseases.
机译:主要由活性血小板和纤维蛋白组成的血栓(血凝凝块)阻塞动脉或静脉,导致各种危及生命的疾病。灵感来自血栓的血栓的独特物理化学特征,例如丰富的纤维蛋白和升高的过氧化氢水平(H_(2)O_(2)),我们开发了可以提供H_(2)O_的血栓特异性治疗(T-FBM)纳米颗粒(2) - 触发光声信号放大并用作抗血栓形成纳米胺。 T-FBM纳米颗粒设计成靶向富纤维蛋白的血栓,并通过H_(2)O_(2)激活以产生CO_(2)气泡以扩增光声信号。在幻像研究中,T-FBM纳米颗粒在H_(2)O_(2) - 触发的方式中显示出超声/光声信号的显着放大。 T-FBM纳米颗粒还施加H_(2)O_(2) - 内皮细胞的抗炎症,抗炎和抗血小板活性。在颈动脉损伤的小鼠模型中,T-FBM纳米粒子显着增强了血栓形成血管中的光声对比,并且显着抑制了血栓形成。我们预期T-FBM纳米粒子占H_(2)O_(2)-A1(2)-oxocated心血管疾病的纳米移植物的巨大平移潜力。

著录项

  • 来源
    《ACS nano》 |2018年第1期|共10页
  • 作者单位

    Department of BIN Convergence Technology Chonbuk National University Baekjedaero 567 Jeonju Chonbuk 54896 Republic of Korea;

    Department of BIN Convergence Technology Chonbuk National University Baekjedaero 567 Jeonju Chonbuk 54896 Republic of Korea;

    Department of BIN Convergence Technology Chonbuk National University Baekjedaero 567 Jeonju Chonbuk 54896 Republic of Korea;

    Department of BIN Convergence Technology Chonbuk National University Baekjedaero 567 Jeonju Chonbuk 54896 Republic of Korea;

    Department of Nuclear Medicine Seoul National University Seoul 03083 Republic of Korea;

    Department of Nuclear Medicine Seoul National University Seoul 03083 Republic of Korea;

    Department of Polymer Engineering Sunchon National University Sunchon Chonnam 57922 Republic of Korea;

    Division of Nano &

    Energy Convergence Research Daegu Gyeongbuk Institute of Science and Technology Daegu 42988 Republic of Korea;

    Department of Electronic Engineering Chonbuk National University Baekjedaero 567 Jeonju Chonbuk 54896 Republic of Korea;

    Department of BIN Convergence Technology Chonbuk National University Baekjedaero 567 Jeonju Chonbuk 54896 Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    antithrombotic; nanoparticles; photoacoustic imaging; theranostic; thrombus;

    机译:抗血栓形成;纳米粒子;光声成像;Theranostic;血栓;

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