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Investigation of doxorubicin for multi-drug resistance using a fluorescent cytometric imaging system integrated onto cell culture analog devices

机译:用荧光细胞术成像系统对细胞培养模拟装置进行多药素的多码霉素研究

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An integrated cytometric fluorescent imaging system is developed for characterizing chemical concentration and cellular status in microscale cell culture analog (μCCA) devices. A μCCA is used to evaluate the potential toxicity and efficacy of proposed pharmaceutical treatment of animals or humans. The imaging system, based on discrete optical components, not only provides a robust and compact tool for real-time measurements, but the modularity of the system also offers flexibility to be applicable to various μCCA structures that may be appropriate to various animal or human models. We investigate the dynamics of doxorubicin, a chemotherapeutic agent, on cultured cells in a μCCA using the integrated cytometric fluorescent imaging system. This study incorporates two uteran cancer cell lines representing a sensitive cell type and a multi-drug resistant (MDR) derivative cell line. The ultimate goal is to test the effect of MDR modulators in combination with doxorubicin to kill cancer cells while not causing undue harm to normal cells.
机译:开发了一种集成的细胞计荧光成像系统,用于在微观细胞培养模拟(μCCA)器件中表征化学浓度和细胞状态。 μCCA用于评估所提出的动物或人类药物治疗的潜在毒性和功效。基于离散光学组件的成像系统不仅提供了用于实时测量的稳健和紧凑的工具,而且系统的模块化还提供适用于各种动物或人类模型的各种μCCA结构的灵活性。我们使用集成的细胞荧光成像系统探讨多柔比星,化学治疗剂,培养细胞对μCCA中的培养细胞的动态。该研究包括两个代表敏感细胞类型和多毒性(MDR)衍生物细胞系的两个子宫癌细胞系。最终目标是测试MDR调节剂与多柔比星组合的影响,以杀死癌细胞,同时对正常细胞产生过度危害。

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