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Multimodal Precision Imaging of Pulmonary Nanoparticle Delivery in Mice: Dynamics of Application, Spatial Distribution, and Dosimetry

机译:小鼠肺纳米粒子递送的多峰精密成像:应用,空间分布和剂量测量

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摘要

Targeted delivery of nanomedicine/nanoparticles (NM/NPs) to the site of disease (e.g., the tumor or lung injury) is of vital importance for improved therapeutic efficacy. Multimodal imaging platforms provide powerful tools for monitoring delivery and tissue distribution of drugs and NM/NPs. This study introduces a preclinical imaging platform combining X-ray (two modes) and fluorescence imaging (three modes) techniques for timeresolved in vivo and spatially resolved ex vivo visualization of mouse lungs during pulmonary NP delivery. Liquid mixtures of iodine (contrast agent for X-ray) and/or (nano)particles (X-ray absorbing and/or fluorescent) are delivered to different regions of the lung via intratracheal instillation, nasal aspiration, and ventilator-assisted aerosol inhalation. It is demonstrated that in vivo propagation-based phase-contrast X-ray imaging elucidates the dynamic process of pulmonary NP delivery, while ex vivo fluorescence imaging (e.g., tissue-cleared light sheet fluorescence microscopy) reveals the quantitative 3D drug/particle distribution throughout the entire lung with cellular resolution. The novel and complementary information from this imaging platform unveils the dynamics and mechanisms of pulmonary NM/NP delivery and deposition for each of the delivery routes, which provides guidance on optimizing pulmonary delivery techniques and noveldesigned NM for targeting and efficacy.
机译:纳米胺/纳米颗粒(NM / NPS)的靶向递送至疾病部位(例如,肿瘤或肺损伤)对于改善治疗疗效至关重要。多模式成像平台提供了强大的工具,用于监测药物和NM / NPS的递送和组织分布。本研究介绍了一种突出的X射线(两种模式)和荧光成像(三种模式)技术的临床前成像平台,用于在肺部NP递送期间小鼠肺的空间分解的小鼠肺的空间分解的exvivo可视化。碘的液体混合物(X射线的造影剂)和/或(纳米)颗粒(X射线吸收和/或荧光)通过腹腔内滴注,鼻吸汗和呼吸机辅助气溶胶吸入递送到肺的不同区域。结果证明,在基于体内传播的相位对比度X射线成像中,阐明了肺部NP递送的动态过程,而离体荧光成像(例如,组织清除的光片荧光显微镜)揭示了整个定量的3D药物/粒子分布整个肺细胞分辨率。来自该成像平台的新颖和互补信息推出了每个递送路线的肺部NM / NP递送和沉积的动态和机制,这提供了有关优化肺递送技术和NovelDesigned NM以靶向和功效的指导。

著录项

  • 来源
    《Small》 |2019年第49期|共16页
  • 作者单位

    Comprehensive Pneumology Center (CPC-M) Member of the German Center for Lung Research (DZL) Munich 81377 Germany;

    Chair of Biomedical Physics Department of Physics Technical University of Munich Garching 85748 Germany;

    Chair of Biomedical Physics Department of Physics Technical University of Munich Garching 85748 Germany;

    Comprehensive Pneumology Center (CPC-M) Member of the German Center for Lung Research (DZL) Munich 81377 Germany;

    Comprehensive Pneumology Center (CPC-M) Member of the German Center for Lung Research (DZL) Munich 81377 Germany;

    Research Unit Analytical Pathology Helmholtz Zentrum München Neuherberg 85764 Germany;

    Chair of Biomedical Physics Department of Physics Technical University of Munich Garching 85748 Germany;

    Robinson Research Institute and Adelaide Medical School University of Adelaide Adelaide 5000 Australia;

    Chair of Biomedical Physics Department of Physics Technical University of Munich Garching 85748 Germany;

    Chair of Biomedical Physics Department of Physics Technical University of Munich Garching 85748 Germany;

    Research Unit Analytical Pathology Helmholtz Zentrum München Neuherberg 85764 Germany;

    Comprehensive Pneumology Center (CPC-M) Member of the German Center for Lung Research (DZL) Munich 81377 Germany;

    Faculty of Medicine Technical University of Munich Munich 80333 Germany;

    Chair of Biomedical Physics Department of Physics Technical University of Munich Garching 85748 Germany;

    Chair of Biomedical Physics Department of Physics Technical University of Munich Garching 85748 Germany;

    Comprehensive Pneumology Center (CPC-M) Member of the German Center for Lung Research (DZL) Munich 81377 Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    aerosol inhalation therapy; lung fluorescence imaging; optical tissue clearing; pulmonary delivery; X-ray imaging;

    机译:气溶胶吸入疗法;肺荧光成像;光学组织清除;肺递送;X射线成像;

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