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Imaging cancer dynamics in vivo at the tumor and cellular level with fluorescent proteins

机译:使用荧光蛋白在肿瘤和细胞水平上体内成像癌症动态

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Whole-body imaging with fluorescent proteins has been shown to be a powerful technology to follow the dynamics of metastatic cancer. Whole-body imaging of fluorescent protein-expressing-cancer cells enables the facile determination of efficacy of candidate anti-tumor and anti-metastatic agents in mouse models. GFP-expressing transgenic mice transplanted with the RFP-expressing cancer cells enable the distinction of cancer and host cells and the efficacy of drugs on each type of cell. This is particularly useful for imaging tumor angiogenesis. Cancer-cell trafficking through the cardiovascular and lymphatic systems is the critical means of spread of cancer. The use of fluorescent proteins to differentially label cancer calls in the nucleus and cytoplasm and high-powered imaging technology are used to visualize the nuclear-cytoplasmic dynamics of cancer-cell trafficking in both blood vessels and lymphatic vessels in the live animal. This technology has furthered our understanding of the spread of cancer at the subcellular level in the live mouse. Fluorescent proteins thus enable both macro and micro imaging technology and thereby provide the basis for the new field of in vivo cell biology.
机译:荧光蛋白的全身成像已被证明是追踪转移性癌症动态的强大技术。荧光蛋白表达癌细胞的全身成像可轻松确定小鼠模型中候选抗肿瘤和抗转移剂的功效。带有表达RFP的癌细胞的GFP表达的转基因小鼠能够区分癌细胞和宿主细胞,以及药物对每种类型细胞的功效。这对于成像肿瘤血管生成特别有用。通过心血管和淋巴系统的癌细胞运输是癌症扩散的关键手段。使用荧光蛋白差异标记细胞核和细胞质中的癌症,高能成像技术用于可视化活体动物血管和淋巴管中癌细胞运输的核质动态。这项技术加深了我们对活小鼠中亚细胞水平癌症扩散的认识。因此,荧光蛋白使宏观和微观成像技术成为可能,从而为体内细胞生物学的新领域提供了基础。

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