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首页> 外文期刊>ACS nano >Nanoparticle Functionalization with Platelet Membrane Enables Multifactored Biological Targeting and Detection of Atherosclerosis
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Nanoparticle Functionalization with Platelet Membrane Enables Multifactored Biological Targeting and Detection of Atherosclerosis

机译:血小板膜的纳米粒子官能化能够实现多重生物靶向和动脉粥样硬化的检测

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摘要

Cardiovascular disease represents one of the major causes of death across the global population. Atherosclerosis, one of its most common drivers, is characterized by the gradual buildup of arterial plaque over time, which can ultimately lead to life-threatening conditions. Given the impact of the disease on public health, there is a great need for effective and noninvasive imaging modalities that can provide valuable information on its biological underpinnings during development. Here, we leverage the role of platelets in atherogenesis to design nanocarriers capable of targeting multiple biological elements relevant to plaque development. Biomimetic nanoparticles are prepared by coating platelet membrane around a synthetic nanoparticulate core, the product of which is capable of interacting with activated endothelium, foam cells, and collagen. The effects are shown to be exclusive to platelet membrane-coated nanoparticles. These biomimetic nanocarriers are not only capable of efficiently localizing to well-developed atherosclerotic plaque, but can also target subclinical regions of arteries susceptible to plaque formation. Using a commonly employed magnetic resonance imaging contrast agent, live detection is demonstrated using an animal model of atherosclerosis. Ultimately, this strategy may be leveraged to better assess the development of atherosclerosis, offering additional information to help clinicians better manage the disease.
机译:心血管疾病是全球人口中死亡的主要原因之一。一种最常见的驱动器之一的动脉粥样硬化,其特点是随着时间的推移逐渐增加动脉斑块,最终可能导致危及生命的条件。鉴于疾病对公共卫生的影响,很好需要有效和非侵入性的成像方式,可以提供有关其在开发期间的生物学基础的有价值信息。在这里,我们利用血小板在体育血小霉中的作用设计纳米载体,其能够靶向与斑块发育相关的多种生物元素。通过覆盖合成纳米颗粒芯的血小板膜来制备仿真型纳米颗粒,其产品能够与活化的内皮,泡沫细胞和胶原相互作用。该效果显示为血小板膜涂覆的纳米颗粒。这些仿生纳米载体不仅能够有效地定位于发育良好的动脉粥样硬化斑块,而且还可以靶向易受斑块形成的动脉的亚临床区域。使用常用的磁共振成像造影剂,使用动脉粥样硬化的动物模型来证明实时检测。最终,可以利用这种策略来更好地评估动脉粥样硬化的发展,提供更多信息,以帮助临床医生更好地管理疾病。

著录项

  • 来源
    《ACS nano 》 |2018年第1期| 共8页
  • 作者单位

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

    Department of NanoEngineering Department of Bioengineering and Moores Cancer Center University of California San Diego La Jolla California 92093 United States;

  • 收录信息
  • 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

    atherosclerosis; biointerfacing; biomimetic nanoparticle; cardiovascular disease; MRI; platelet;

    机译:动脉粥样硬化;生物筛选;仿生纳米粒子;心血管疾病;MRI;血小板;

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