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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Quantitative Evaluation of Cancer Cell Adhesion to Self-Assembled Monolayer-Patterned Substrates by Reflection Interference Contrast Microscopy
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Quantitative Evaluation of Cancer Cell Adhesion to Self-Assembled Monolayer-Patterned Substrates by Reflection Interference Contrast Microscopy

机译:反射干涉对比显微镜定量评价癌细胞对自组装单层图案基底的粘附力

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摘要

Adhesion of cancer cells with different metastatic potential and anticancer drug resistance has been quantitatively evaluated by using self-assembled monolayer (SAM)-patterned substrates and reflection interference contrast microscopy (RICM). Cell-adhesive SAM spots with optimized diameter could prevent cell cell adhesion and thus allowed the systematic evaluation of statistically reliable numbers of contact area between single cancer cells and substrates by RICM. The statistical image analysis revealed that highly metastatic mouse melanoma cells showed larger contact area than lowly metastatic cells. We also found that both cancer cell types exhibited distinct transition from the "strong" to "weak" adhesion states with increase in the concentration of (-)-epigallo-catechin gallate (EGCG), which is known to exhibit cancer preventive activity. Mathematical analysis of the adhesion transition revealed that adhesion of the highly metastatic mouse melanoma cells showed more EGCG tolerance than that of lowly metastatic cells. Moreover, time-lapse RICM observation revealed that EGCG weakened cancer cell adhesion in a stepwise manner, probably via focal adhesion complex. These results clearly indicate that contact area can be used as a quantitative measure for the determination of cancer phenotypes and their drug resistance, which will provide physical insights into the mechanism of cancer metastasis and cancer prevention.
机译:已经通过使用自组装单层(SAM)图案化的基质和反射干涉对比显微镜(RICM)定量评估了具有不同转移潜力和抗癌药耐药性的癌细胞的粘附力。具有最佳直径的细胞粘附性SAM斑点可以防止细胞粘附,因此可以通过RICM系统评估单个癌细胞与基质之间的接触面积的统计可靠数量。统计图像分析显示,高转移性小鼠黑色素瘤细胞比低转移性细胞具有更大的接触面积。我们还发现,随着(-)-表没食子儿茶素没食子酸酯(EGCG)浓度的增加,两种癌细胞类型均显示出从“强”到“弱”粘附状态的明显转变,已知其具有预防癌症的活性。对粘附转变的数学分析表明,高度转移的小鼠黑色素瘤细胞的粘附表现出比低转移的黑色素瘤细胞更高的EGCG耐受性。此外,延时RICM观察显示EGCG可能通过局部粘附复合物逐步减弱了癌细胞的粘附。这些结果清楚地表明,接触面积可以用作确定癌症表型及其耐药性的定量方法,这将为癌症转移和癌症预防的机理提供物理见解。

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