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Bioluminescence technology for imaging cell proliferation

机译:生物发光技术对细胞增殖进行成像

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As continuous cell proliferation caused by genetic alterations leads to cancer, monitoring abnormal cell proliferation in sporadic tumor models is important in the context of tumor generation, development and response to therapy. Bioluminescence imaging technology, which visualizes the conversion of chemical energy into visible light by luciferase enzymes, is an established method to measure cell numbers in grafted tumors in vivo, but has not been used to monitor cell proliferation per se. To measure cell proliferation noninvasively, transgenic mice have been developed that express the luciferase gene under the control of the E2F1 promoter. When these reporter mice are crossed with genetically defined mouse models of human cancer, the proliferative activity of the tumor cells can be monitored with proportional light production. These technologies support more detailed preclinical trials and could enable other biological pathways to be monitored in living cells.
机译:由于遗传改变引起的连续细胞增殖导致癌症,因此在散发性肿瘤模型中监测异常细胞增殖对于肿瘤的产生,发展和对治疗的反应非常重要。生物发光成像技术可以可视化荧光素酶将化学能转化为可见光,是一种在体内测量移植肿瘤中细胞数量的成熟方法,但尚未用于监测细胞本身的增殖。为了无创地测量细胞增殖,已经开发了在E2F1启动子控制下表达荧光素酶基因的转基因小鼠。当这些记者小鼠与人类癌症的遗传定义的小鼠模型杂交时,可以用成比例的光产生来监测肿瘤细胞的增殖活性。这些技术支持更详细的临床前试验,并可能使活细胞中的其他生物学途径得以监测。

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