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MR and optical imaging of early micrometastases in lymph nodes: triple labeling with nano-sized agents yielding distinct signals

机译:淋巴结中早期微转移的MR和光学成像:用纳米尺寸试剂的三重标记产生明显的信号

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摘要

Few imaging methods are available for depicting in vivo cancer cell migration within the lymphatic system. Detection of such early micrometastases requires extremely high target to background. In this study, we dual-labeled human breast cancer cells (MDA-MB468) with a small particle of iron oxide (SPIO) and a quantum dot (QD), and tracked these cells in the lymphatic system in mice using in vivo MRI and optical imaging. A generation-6 gadolinium-dendrimer-based MRI contrast agent (Gd-G6) was employed for visualizing regional lymphatic channels and nodes. Since Gd-G6 shortened T1 leading to high signal, whereas SPIO-labeled cancer cells greatly lowered signal, a small number of cells were simultaneously visualized within the draining lymphatic basins. One million dual-labeled cancer cells were subcutaneously injected into the paws of mice 24h prior to imaging. Then whole body images were acquired pre- and post-intracutaneous injection of Gd-G6 with 3D-T1w-FFE and balanced-FFE sequences for cancer cell tracking and MR lymphangiography. In vivo MRI clearly visualized labeled cancer cells migrating from the paw to the axillary lymph nodes using draining lymphatics. In vivo optical imaging using a fluorescence surgical microscope demonstrated tiny cancer cell clusters in the axillary lymph node with high spatial resolution. Thus, using a combination of MRI and optical imaging, it is possible to depict macro- and early micrometastases within the lymphatic system. This platform offers a versatile research tool for investigating and treating lymphatic metastases in animal models.
机译:很少有成像方法可用于描绘淋巴系统内的体内癌细胞迁移。检测此类早期微转移需要极高的目标。在本研究中,我们用小氧化铁(SPIO)和量子点(QD)的双标记的人乳腺癌细胞(MDA-MB468),并在小鼠中使用体内MRI跟踪这些细胞中的这些细胞光学成像。用于可视化区域淋巴管和节点的基于型-6种基于钆 - 树突式的MRI造影剂(GD-G6)。由于GD-G6缩短了T1导致高信号,而Spio标记的癌细胞信号大大降低,则在排出淋巴细胞盆地内同时可视化少量细胞。在成像之前将100万双标记的癌细胞皮下注射到小鼠的爪子中。然后在具有3D-T1W-FFE和癌细胞跟踪和MR淋巴图术后的3D-T1W-FFE和平衡FFE序列进行全身图像的GD-G6。在体内MRI清楚地可视化标记的癌细胞,使用排水淋巴管迁移到腋窝淋巴结的腋窝淋巴结。在使用荧光外科显微镜的体内光学成像中,在具有高空间分辨率的腋窝淋巴结中展示了微小的癌细胞簇。因此,使用MRI和光学成像的组合,可以描绘淋巴系统内的宏观和早期微量酶。该平台提供了一种用于调查和治疗动物模型的淋巴转移的多功能研究工具。

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