首页> 外文会议>First global congress on nanoengineering for medicine and biology 2010 >MICROPATTERN EFFECT ON BREAST CANCER CELLS BEHAVIOR ON ISOTROPICALLY ETCHED SILICON MICROENVIRONMENTS
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MICROPATTERN EFFECT ON BREAST CANCER CELLS BEHAVIOR ON ISOTROPICALLY ETCHED SILICON MICROENVIRONMENTS

机译:异位刻蚀硅微环境对乳腺癌细胞行为的微影响

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In this paper we are investigating three dimensional (3-D) silicon-based microenvironments as potential platforms for breast cancer diagnostics. We have developed isotropically etched microstructures with a wide range of geometrical patterns for this purpose. Our results indicate that with the etched surface ratio of ~65%, it is possible to capture 80-90% of the cancer cells within each silicon chip. After treatment of the cells with mitomycin C (to block the cell growth) more number of the cells are trapped inside the etched features for longer cultures times (72 h) suggesting that there is a directed motility and attraction of the cells toward the etched cavities and by optimally designing the etched features, the proposed platforms can be potentially used for diagnostics purposes.
机译:在本文中,我们正在研究基于三维(3-D)硅的微环境作为乳腺癌诊断的潜在平台。为此,我们已经开发出具有各式各样的几何图案的各向同性蚀刻微结构。我们的结果表明,在约65%的蚀刻表面比率下,可以捕获每个硅芯片中80-90%的癌细胞。用丝裂霉素C处理细胞(以阻止细胞生长)后,更多的细胞被捕获在蚀刻的特征中,以进行更长的培养时间(72小时),这表明细胞具有定向的运动性,并且朝着蚀刻的腔穴吸引细胞通过优化设计蚀刻特征,可以将所提出的平台潜在地用于诊断目的。

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