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Dynamic manipulation and patterning of breast cancer cells in biosolution

机译:生物溶液中乳腺癌细胞的动态操纵与图案化

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This paper reports the first experimental exploration of non-invasive and fast manipulation of breast cancer cells by harnessing multimode micromechanical resonators operating in biosolution. We demonstrate, for the first time, that groups of breast cancer cells are spatially manipulated into controlled microscale patterns, facilitated by the spatially abundant and diverse multimode resonances of vibrating thin micro-diaphragms. We further show that these cell patterns can be dynamically switched within 30s via programmed excitation frequencies, exhibiting a cell manipulation speed at ~4μm/s. The results demonstrate a versatile platform for cell manipulation and patterning at microscale, which may facilitate breast cancer related studies at cellular level.
机译:本文通过利用在生物凝变中运行的多模微机械谐振器来报告对乳腺癌细胞无侵入性和快速操作的第一次实验探索。我们首次证明乳腺癌细胞组被空间地操纵到受控的微观图案中,通过振动薄微隔膜的空间丰富和多样化的多模谐振促进。我们进一步表明,这些单元格图案可以通过编程的激励频率在30S内动态切换,在〜4μm/ s处表现出细胞操纵速度。结果证明了用于细胞操纵和在微观尺寸的细胞操纵和图案化的通用平台,这可以促进细胞水平的乳腺癌相关研究。

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