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Bio-luminescent imaging and characterization of organ-specific metastasis of human cancer in NOD/SCID mice

机译:NOD / SCID小鼠中人类癌症器官特异性转移的生物发光成像和表征

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Many clinical evidences demonstrate that the sites of distant metastasis are not random and certain malignant tumors show a tendency to develop metastases in specific organs (e.g., brain, liver, and lungs). However, an appropriate animal model to characterize the metastatic nature of transplantable human cancer cell lines has not been reported well. Recent advances in bio-luminescent imaging (BLI) technologies have facilitated the quantitative analysis of various cellular processes in vivo. To visualize the fate of tumor progression in the living mice, we are constructing a luciferase-expressing human cancer cell library (including melanoma, colon, breast, and prostate cancer). Herein we demonstrate that the BLI technology in couple with a fine ultrasonic guidance realizes cancer cell-type dependent metastasis to the specific organs. For example, some melanoma cell lines showed frequent metastasis to brain, lungs, and lymph nodes in the mouse model. Notably, reflecting the clinical features of melanoma, breast, and prostate cancer, some of the cell lines showed preferential metastasis to the brain. Moreover, these cellular resources for BLI allow a high throughput screening for potential anti-cancer drugs. Thus, this BLI-mediated additional strategy with the luciferase-expressing cancer cell resources should promote many translational studies for human cancer therapy.
机译:许多临床证据表明远处转移的部位不是随机的,某些恶性肿瘤显示出在特定器官(例如脑,肝和肺)转移的趋势。但是,尚未有合适的动物模型来表征可移植人类癌细胞系的转移特性。生物发光成像(BLI)技术的最新进展促进了体内各种细胞过程的定量分析。为了可视化活体小鼠中肿瘤进展的命运,我们正在构建表达荧光素酶的人类癌细胞库(包括黑色素瘤,结肠癌,乳腺癌和前列腺癌)。本文中,我们证明了BLI技术与良好的超声引导相结合,可以实现癌细胞类型依赖的转移至特定器官。例如,某些黑素瘤细胞系在小鼠模型中显示出频繁转移至脑,肺和淋巴结。值得注意的是,反映了黑素瘤,乳腺癌和前列腺癌的临床特征,一些细胞系显示出向大脑的优先转移。此外,这些用于BLI的细胞资源可对潜在的抗癌药进行高通量筛选。因此,这种具有表达荧光素酶的癌细胞资源的BLI介导的附加策略应促进人类癌症治疗的许多转化研究。

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