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Elucidating mechanical transition effects of invading cancer cells with a subnucleus-scaled microfluidic serial dimensional modulation device

机译:阐明侵入癌细胞与一个亚核缩放微流体串行维调制装置的机械过渡效果

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摘要

Mechanical boundaries that define and regulate biological processes, such as cell-cell junctions and dense extracellular matrix networks, exist throughout the physiological landscape. During metastasis, cancer cells are able to invade across these barriers and spread to distant tissues. While transgressing boundaries is a necessary step for distal colonies to form, little is known about interface effects on cell behavior during invasion. Here we introduce a device and metric to assess cell transition effects across mechanical barriers. Using MDA-MB-231 cells, a highly metastatic breast adenocarcinoma cell line, our results demonstrate that dimensional modulation in confined spaces with mechanical barriers smaller than the cell nucleus can induce distinct invasion phases and elongated morphological states. Further investigations on the impact of microtubule stabilization and drug resistance reveal that taxol-treated cells have reduced ability in invading across tight spaces and lose their super-diffusive migratory state and taxol-resistant cells exhibit asymmetric cell division at barrier interfaces. These results illustrate that subnucleus-scaled confinement modulation can play a distinctive role in inducing behavioral responses in invading cells and can help reveal the mechanical elements of non-proteolytic invasion.
机译:定义和调节生物过程的机械边界,例如细胞间连接和密集的细胞外基质网络,遍布整个生理景观。在转移过程中,癌细胞能够侵入这些屏障并扩散到远处的组织。尽管越界是形成远端菌落的必要步骤,但对于侵入过程中界面对细胞行为的影响知之甚少。在这里,我们介绍了一种评估跨机械障碍的细胞过渡效应的设备和指标。使用MDA-MB-231细胞(一种高度转移性的乳腺癌细胞系),我们的结果表明,密闭空间中的尺寸调制(其机械壁垒小于细胞核)可以诱导明显的浸润阶段和细长的形态学状态。对微管稳定和耐药性影响的进一步研究表明,紫杉醇处理的细胞侵袭狭窄空间的能力降低,丧失了其超扩散迁移状态,而紫杉醇抗性细胞在屏障界面处表现出不对称的细胞分裂。这些结果说明,亚核级限制调节可以在诱导入侵细胞的行为反应中发挥独特作用,并且可以帮助揭示非蛋白水解入侵的机械因素。

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