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Comparison of Computed Tomography- and Optical Image-Based Assessment of Liposome Distribution

机译:基于计算机断层扫描和基于光学图像的脂质体分布评估的比较

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摘要

The use of multimodal imaging as a tool to assess the in vivo pharmacokinetics and biodistribution of nanocarriers is important in understanding the nature of their in vivo transport. The current study reports the development of a nano-sized liposomal computed tomographic (CT)/optical imaging probe carrying iohexol and Cy5.5 and its use in micro-CT and optical imaging to quantitatively assess the whole-body (macroscopic), intratumoral, and microscopic distribution over a period of 8 days. These multimodal liposomes have a vascular half-life of 30.3 ± 8.9 hours in mice bearing subcutaneous H520 non-small cell lung cancer tumors, with the maximum liposome accumulation in tumor achieved 48 hours postinjection. The in vivo liposome distribution and stability were quantitatively assessed using both micro-CT and fluorescence molecular tomography. The combination of CT and optical imaging enables visualization of the liposomes at the whole-body, tumor, and cellular scales with high sensitivity. Such noninvasive tracking of therapeutic vehicles at the macro- and microscale is important for informed and rational development of novel nanocarrier systems.
机译:使用多峰成像作为评估纳米载体的体内药代动力学和生物分布的工具,对于理解其体内运输的性质非常重要。当前的研究报道了带有碘海醇和Cy5.5的纳米脂质体计算机断层扫描(CT)/光学成像探针的开发及其在微CT和光学成像中的应用,以定量评估全身(宏观),肿瘤内,并在8天内观察到微观分布。这些多峰脂质体在带有皮下H520非小细胞肺癌肿瘤的小鼠中的血管半衰期为30.3±8.9小时,注射后48小时达到了最大脂质体在肿瘤中的蓄积。使用微CT和荧光分子层析成像技术定量评估体内脂质体的分布和稳定性。 CT和光学成像的结合可以高灵敏度地在全身,肿瘤和细胞范围内可视化脂质体。这种在宏观和微观上对治疗性载体的无创跟踪对于新型纳米载体系统的知情和合理开发很重要。

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  • 来源
    《Molecular imaging》 |2013年第3期|148-160|共13页
  • 作者单位

    From the Leslie Dan Faculty of Pharmacy, Departments of Medical Biophysics and Radiation Oncology, and Institute of Biomaterials and Biomedical Engineering, University of Toronto, and STTARR Innovation Centre and Techna and Ontario Cancer Institutes, Radiation Medicine Program, Princess Margaret Hospital, University Health Network, Toronto, ON.Address reprint requests to: David Jaffray, PhD, Department of Radiation Physics, Radiation Medicine Program, Princess Margaret Hospital,University Health Network, Room 5-631, 610 University Avenue,Toronto, ON M5G 2M9;

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