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Lévy-like movement patterns of metastatic cancer cells revealed in microfabricated systems and implicated in vivo

机译:在微细加工系统中揭示并在体内牵涉转移细胞的Lévy样运动模式

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摘要

Metastatic cancer cells differ from their non-metastatic counterparts not only in terms of molecular composition and genetics, but also by the very strategy they employ for locomotion. Here, we analyzed large-scale statistics for cells migrating on linear microtracks to show that metastatic cancer cells follow a qualitatively different movement strategy than their non-invasive counterparts. The trajectories of metastatic cells display clusters of small steps that are interspersed with long “flights”. Such movements are characterized by heavy-tailed, truncated power law distributions of persistence times and are consistent with the Lévy walks that are also often employed by animal predators searching for scarce prey or food sources. In contrast, non-metastatic cancerous cells perform simple diffusive movements. These findings are supported by preliminary experiments with cancer cells migrating away from primary tumors in vivo. The use of chemical inhibitors targeting actin-binding proteins allows for “reprogramming” the Lévy walks into either diffusive or ballistic movements.
机译:转移性癌细胞与非转移性癌细胞的不同之处不仅在于分子组成和遗传学,还在于它们用于运动的策略。在这里,我们分析了在线性微轨道上迁移的细胞的大规模统计数据,显示出转移性癌细胞与非侵袭性癌细胞相比在质性上遵循不同的运动策略。转移细胞的轨迹显示出散布着小步的簇,点缀着长长的“飞行”。这种运动的特征是持续时间的重尾,截尾幂律分布,并且与Lévy步道相一致,Lévy步道也经常被动物捕食者用来寻找稀缺猎物或食物来源。相反,非转移性癌细胞执行简单的扩散运动。这些发现得到了癌细胞在体内从原发性肿瘤中迁移出来的初步实验的支持。使用针对肌动蛋白结合蛋白的化学抑制剂可以使列维步道“重新编程”为扩散运动或弹道运动。

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