Department of Biological Sciences, University of Delaware, Wolf Hall, Newark, DE, 19716, USA.
Cytotechnology. 2006 May;51(1):7-19. doi: 10.1007/s10616-006-9006-7. Epub 2006 Aug 8.
We describe a novel fully automated high-throughput time-lapse microscopy system and evaluate its performance for precisely tracking the motility of several glioma and osteoblastic cell lines. Use of this system revealed cell motility behavior not discernable with conventional techniques by collecting data (1) from closely spaced time points (minutes), (2) over long periods (hours to days), (3) from multiple areas of interest, (4) in parallel under several different experimental conditions. Quantitation of true individual and average cell velocity and path length was obtained with high spatial and temporal resolution in "scratch" or "wound healing" assays. This revealed unique motility dynamics of drug-treated and adhesion molecule-transfected cells and, thus, this is a considerable improvement over current methods of measurement and analysis. Several fluorescent vital labeling methods commonly used for end-point analyses (GFP expression, DiO lipophilic dye, and Qtracker nanocrystals) were found to be useful for time-lapse studies under specific conditions that are described. To illustrate one application, fluorescently labeled tumor cells were seeded onto cell monolayers expressing ectopic adhesion molecules, and this resulted in consistently reduced tumor cell migration velocities. These highly quantitative time-lapse analysis methods will promote the creation of new cell motility assays and increase the resolution and accuracy of existing assays.
我们描述了一种新颖的全自动高通量延时显微镜系统,并评估了其精确跟踪几种神经胶质瘤和成骨细胞系运动的性能。通过该系统收集数据(1)来自紧密间隔的时间点(分钟),(2)长时间(数小时至数天),(3)来自多个感兴趣区域,(4)在几种不同的实验条件下并行,可以揭示常规技术无法察觉的细胞运动行为。在“划痕”或“伤口愈合”测定中,以高空间和时间分辨率获得真实的单个和平均细胞速度和路径长度的定量。这揭示了药物处理和粘附分子转染细胞的独特运动动力学,因此,这是对当前测量和分析方法的重大改进。发现几种常用于终点分析的荧光活体标记方法(GFP 表达、DiO 亲脂染料和 Qtracker 纳米晶体)在描述的特定条件下对延时研究有用。为了说明一个应用,将荧光标记的肿瘤细胞接种到表达异位粘附分子的细胞单层上,这导致肿瘤细胞迁移速度始终降低。这些高度定量的延时分析方法将促进新的细胞运动测定的创建,并提高现有测定的分辨率和准确性。