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Visualizing the kinetics of tumor-cell clearance in living animals

机译:可视化活体动物清除肿瘤细胞的动力学

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Evaluation of potential antineoplastic therapies would be enhanced by noninvasive detection of tumor cells in living animals. Because light is transmitted through mammalian tissues, it was possible to use bioluminescence to monitor (both externally and quantitatively) growth and regression of labeled human cervicalcarcinoma (HeLa) cells engrafted into immunodeficient mice. The efficacy of both chemotherapy and immunotherapeutic treatment with ex vivo expanded human T cell-derived effector cells was evaluated. In the absence of therapy, animals showed progressive increases in signal intensity over time. Animals treated with cisplatin had marked reductions in tumor signal; 5'-fluorouracil was less effective, and cyclophosphamide was ineffective. Immunotherapy dramatically reduced signals at high effector-to-target cell ratios, and significant decreases were observed with lower ratios. This model system allowed sensitive, quantitative, real-time spatiotemporal analyses of the dynamics of neoplastic cell growth and facilitated rapid optimization of effective treatment regiments.
机译:通过对动物体内肿瘤细胞进行无创检测,可以增强对潜在抗肿瘤治疗的评价。由于光是通过哺乳动物组织传输的,因此有可能使用生物发光来(外部和定量地)监测移植到免疫缺陷小鼠中的标记人宫颈癌(HeLa)细胞的生长和消退。评价了离体扩增的人类T细胞来源的效应细胞的化学疗法和免疫疗法的疗效。在没有治疗的情况下,动物显示信号强度随时间逐渐增加。顺铂治疗的动物的肿瘤信号明显减少; 5'-氟尿嘧啶无效,而环磷酰胺无效。免疫疗法在高效应细胞与靶细胞比例下可显着降低信号,在较低比例下可观察到显着降低。该模型系统允许对肿瘤细胞生长的动力学进行敏感,定量,实时的时空分析,并有助于快速优化有效的治疗方案。

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