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Depth-Resolved Enhanced Spectral-Domain OCT Imaging of Live Mammalian Embryos Using Gold Nanoparticles as Contrast Agent

机译:深度分辨增强型光谱域OCT成像用金纳米颗粒作为造影剂的活哺乳动物胚胎成像

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摘要

High-resolution and real-time visualization of the morphological changes during embryonic development are critical for studying congenital anomalies. Optical coherence tomography (OCT) has been used to investigate the process of embryogenesis. However, the structural visibility of the embryo is decreased with the depth due to signal roll-off and high light scattering. To overcome these obstacles, in this study, combined is a spectral-domain OCT (SD-OCT) with gold nanorods (GNRs) for 2D/3D imaging of live mouse embryos. Inductively coupled plasma mass spectrometry is used to confirm that GNRs can be effectively delivered to the embryos during ex vivo culture. OCT signal, image contrast, and penetration depth are all enhanced on the embryos with GNRs. These results show that after GNR treatment, more accurate spatial localization and better contrasting of the borders among organs can be observed on E9.5 and E10.5 mouse embryos. Furthermore, the strong optical absorbance of GNRs results in much clearer 3D images of the embryos, which can be used for calculating the heart areas and volumes of E9.5 and E10.5 embryos. These findings provide a promising strategy for monitoring organ development and detecting congenital structural abnormalities in mice.
机译:胚胎发育过程中的高分辨率和实时可视化对于研究先天性异常至关重要。光学相干断层扫描(OCT)已被用于研究胚胎发生的过程。然而,由于信号滚降和高光散射,胚胎的结构可视性随着深度而降低。为了克服这些障碍,在该研究中,组合是一种光谱结构域OCT(SD-OCT),具有用于活小鼠胚胎的2D / 3D成像的金纳米棒(GNR)。电感耦合等离子体质谱法用于确认在离体培养过程中可以有效地将GNR有效地递送至胚胎。 OCT信号,图像对比度和穿透深度全部在胚胎上增强了GNR。这些结果表明,在GNR处理后,在E9.5和E10.5小鼠胚胎上可以观察到在器官中更准确的空间定位和邻近边界的对比度。此外,GNRS的强光学吸光度导致胚胎的更清晰的3D图像,其可用于计算E9.5和E10.5胚胎的心脏区域和体积。这些发现提供了监测器官发展和检测小鼠先天性结构异常的有希望的策略。

著录项

  • 来源
    《Small》 |2019年第35期|共13页
  • 作者单位

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    Department of Pathology Affiliated Chenggong Hospital Xiamen University Xiamen 361000 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    Research-Educational Institute of Optics and Biophotonics Saratov State University Saratov 410012 Russia;

    College of Life Information Science and Instrument Engineering Hangzhou Dianzi University Hangzhou 310018 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics Organ Transplantation Institute Center for Molecular Imaging and Translational Medicine School of Medicine School of Public Health Xiamen University Xiamen 361102 China;

    Laboratory of Molecular Imaging and Nanomedicine National Institute of Biomedical Imaging and Bioengineering (NIBIB) National Institutes of Health (NIH) Bethesda MD 20892 USA;

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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

    contrast agents; embryonic heart volume; gold nanoparticles; live mouse embryos; optical coherence tomography;

    机译:造影剂;胚胎心脏体积;金纳米颗粒;活小鼠胚胎;光学相干断层扫描;

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