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Approach to a multiparametric sensor-chip-based tumor chemosensitivity assay.

机译:一种基于多参数传感器芯片的肿瘤化学敏感性测定方法。

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Although not widely practiced by oncologists, in vitro tumor chemosensitivity assays (TCA) have proved to increase the lifetime of tumor patients in prospective clinical trials. By individualizing cancer therapy, they can support the clinician's decision which is usually based on empirically retrieved data and thereby prevent inadequate chemotherapy. We present the first results of a new sensor-chip-based technology which might be useful for a multiparametric TCA. In particular, the aspect of dynamic on-line data generation on intact cellular specimens is a major difference to alternative assays. A series of experiments has been performed on cell lines and human tumor explants. Cell cultures and tumor tissue explants were placed on miniaturized silicon and glass sensor chips. The sensor data currently analyze metabolic profiles (rates of extracellular acidification and cellular oxygen consumption) and changes in cell morphology (monitoring of electric impedance). With the cell lines, drug-associated cellular signals have been detected with all three parameters, while primary explants so far caused metabolic responses only. In particular, cellular respiration or mitochondrial activity seems to be a most sensitive indicator of acute cytotoxic effects. The experimental results were achieved using different test versions. Besides giving a status report, the theoretical potential and current problems of sensor chip technology in TCA is discussed.
机译:尽管尚未被肿瘤学家广泛采用,但在前瞻性临床试验中,体外肿瘤化学敏感性测定(TCA)已被证明可以延长肿瘤患者的寿命。通过个体化癌症治疗,他们可以支持临床医生的决定(通常基于经验检索的数据),从而防止化疗不充分。我们介绍了一种新的基于传感器芯片的技术的初步结果,该技术可能对多参数TCA有用。特别是,完整细胞标本上动态在线数据生成的方面是替代检测的主要区别。已经对细胞系和人肿瘤外植体进行了一系列实验。将细胞培养物和肿瘤组织外植体置于小型化的硅和玻璃传感器芯片上。传感器数据当前分析代谢曲线(细胞外酸化率和细胞耗氧率)和细胞形态变化(电阻抗监测)。对于细胞系,已经通过所有三个参数检测到了与药物相关的细胞信号,而到目前为止,主要外植体仅引起代谢反应。特别地,细胞呼吸或线粒体活性似乎是急性细胞毒性作用的最敏感指标。使用不同的测试版本获得了实验结果。除了给出状态报告之外,还讨论了TCA中传感器芯片技术的理论潜力和当前问题。

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