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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Real-time fluorescence detection of multiple microscale cell culture analog devices In situ
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Real-time fluorescence detection of multiple microscale cell culture analog devices In situ

机译:多种微型细胞培养类似物设备的实时荧光检测

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We investigated multiple microscale cell culture analog (mu CCA) assays in situ with a high-throughput imaging system that provides quantitative, nondestructive, and real-time data on cell viability. Since samples do not move between measurements, captured images allow accurate time-course measurements of cell population response and tracking the fate of each cell type on a quantitative basis. The optical system was evaluated by measuring the short-term response to ethanol exposure and long-term growth of drug-resistant tumor cell lines with simultaneous samples. The optical system based on epi-fluorescent excitation consists of an LED and a CCD as well as discrete optical components for imaging a large number of cells simultaneously. HepG2/C3A and MESSA cell lines were cultured in two mu CCA systems for continuous cell status monitoring in cell death experiments with ethanol and long-term cell growth. The experiment that tested ethanol uptake showed that ethanol immediately caused cell death. The system was applied to extracting dynamic constants in the uptake process. In the long-term cell growth experiment, growth of MESSA cells was followed by a stationary phase and eventual cell death attributed to nutrient and oxygen depletion and a change in the pH because of the accumulation of wastes by cell metabolism. HepG2/C3A cells were sub ject to contact inhibition and cell number did not change significantly over time. Issues related to long-term assays are also discussed. The quantitative results have been consistent with qualitative images and confirm the applicability of the portable optical system, and potential application to high-throughput analysis of cell-based assays to measure long-term dynamics. 0 2007 International Society for Analytical Cytology
机译:我们使用高通量成像系统在原位研究了多种微型细胞培养类似物(mu CCA)分析,该系统可提供有关细胞生存力的定量,无损和实时数据。由于样品不会在两次测量之间移动,因此捕获的图像可对细胞群响应进行精确的时程测量,并在定量的基础上跟踪每种细胞类型的命运。通过测量同时暴露于样品的对乙醇暴露的短期反应和耐药性肿瘤细胞系的长期生长来评估光学系统。基于落射荧光激发的光学系统由LED和CCD以及用于同时成像大量细胞的分立光学组件组成。 HepG2 / C3A和MESSA细胞系在两个mu CCA系统中培养,可在乙醇和长期细胞生长的细胞死亡实验中连续监测细胞状态。测试乙醇吸收的实验表明,乙醇立即引起细胞死亡。该系统用于提取吸收过程中的动态常数。在长期的细胞生长实验中,MESSA细胞的生长之后是静止期,由于营养和氧气的消耗以及由于细胞代谢产生的废物的积累,pH值的变化最终导致细胞死亡。 HepG2 / C3A细胞受到接触抑制作用,并且细胞数量不会随时间明显变化。还讨论了与长期测定有关的问题。定量结果与定性图像一致,证实了便携式光学系统的适用性,并且潜在地应用于基于细胞的测定法的高通量分析以测量长期动力学。 0 2007国际分析细胞学学会

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