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Migration dynamics of breast cancer cells in a tunable 3D interstitial flow chamber

机译:可调3D间隙流室内乳腺癌细胞的迁移动力学

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The migration of cells such as leukocytes, tumor cells, and fibroblasts through 3D matrices is critical for regulating homeostasis and immunity and for driving pathogenesis. Interstitial flow through the extracellular matrix, which can substantially increase during inflammation and in the tumor microenvironment, can influence cell migration in multiple ways. Leukocytes and tumor cells are heterogeneous in their migration responses to flow, yet most 3D migration studies use endpoint measurements representing average characteristics. Here we present a robust new microfluidic device for 3D culture with live imaging under well-controlled flow conditions, along with a comparison of analytical methods for describing the migration behavior of heterogeneous cell populations. We then use the model to provide new insight on how interstitial flow affects MDA-MB-231 breast cancer cell invasion, phenomena that are not seen from averaged or endpoint measurements. Specifically, we find that interstitial flow increases the percentage of cells that become migratory, and increases migrational speed in about 20% of the cells. It also increases the migrational persistence of a subpopulation (5-10% of cells) in the positive or negative flow direction. Cells that migrated upstream moved faster but with less directedness, whereas cells that migrated in the direction of flow moved at slower speeds but with higher directedness. These findings demonstrate how fluid flow in the tumor microenvironment can enhance tumor cell invasion by directing a subpopulation of tumor cells in the flow direction; i.e., towards the draining lymphatic vessels, a major route of metastasis.
机译:白细胞,肿瘤细胞和成纤维细胞等细胞通过3D基质的迁移对于调节稳态和免疫力以及推动发病机理至关重要。通过细胞外基质的间隙流在炎症过程中以及在肿瘤微环境中会显着增加,可以多种方式影响细胞的迁移。白细胞和肿瘤细胞对血流的迁移反应是异质的,但是大多数3D迁移研究都使用代表平均特征的终点测量。在这里,我们介绍了一种强大的新型微流控设备,用于在控制良好的流动条件下进行实时成像的3D培养,以及用于描述异种细胞群体迁移行为的分析方法的比较。然后,我们使用该模型提供关于间隙流量如何影响MDA-MB-231乳腺癌细胞侵袭的新见解,这些现象从平均或终点测量中看不到。具体来说,我们发现间隙流动增加了细胞迁移的百分比,并增加了约20%的细胞的迁移速度。它还增加了正向或负向流动的亚群(占细胞的5-10%)的迁移持久性。向上游迁移的细胞移动较快,但方向性较小,而沿流向迁移的细胞以较慢的速度移动,但方向性较高。这些发现表明,在肿瘤微环境中的流体流动如何通过沿流动方向引导肿瘤细胞亚群来增强肿瘤细胞的侵袭。即朝向淋巴管引流是转移的主要途径。

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