首页> 美国卫生研究院文献>Journal of the Royal Society Interface >Activation of cell migration via morphological changes in focal adhesions depends on shear stress in MYCN-amplified neuroblastoma cells
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Activation of cell migration via morphological changes in focal adhesions depends on shear stress in MYCN-amplified neuroblastoma cells

机译:通过粘着斑的形态变化激活细胞迁移取决于MYCN扩增的神经母细胞瘤细胞的剪切应力

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摘要

Neuroblastoma is the most common solid tumour of childhood, and it metastasizes to distant organs. However, the mechanism of metastasis, which generally depends on the cell motility of the neuroblastoma, remains unclear. In many solid tumours, it has been reported that shear stress promotes metastasis. Here, we investigated the relationship between shear stress and cell motility in the MYCN-amplified human neuroblastoma cell line IMR32, using a microfluidic device. We confirmed that most of the cells migrated downstream, and cell motility increased dramatically when the cells were exposed to a shear stress of 0.4 Pa, equivalent to that expected in vivo. We observed that the morphological features of focal adhesion were changed under a shear stress of 0.4 Pa. We also investigated the relationship between malignancy and the motility of IMR32 cells under shear stress. Decreasing the expression of MYCN in IMR32 cells via siRNA transfection inhibited cell motility by a shear stress of 0.4 Pa. These results suggest that MYCN-amplified neuroblastoma cells under high shear stress migrate to distant organs due to high cell motility, allowing cell migration to lymphatic vessels and venules.
机译:神经母细胞瘤是儿童期最常见的实体瘤,并转移到远处的器官。但是,转移的机制通常取决于神经母细胞瘤的细胞运动性,目前尚不清楚。据报道,在许多实体瘤中,切应力促进转移。在这里,我们使用微流控装置研究了MYCN扩增的人成神经细胞瘤细胞系IMR32中剪切应力与细胞运动之间的关系。我们证实,大多数细胞向下游迁移,当细胞暴露于0.4 Pa的剪应力下时,其细胞活力急剧增加,这与体内预期的相等。我们观察到粘着斑的形态特征在0.4 Pa的剪切应力下发生了变化。我们还研究了在剪切应力下恶性与IMR32细胞运动之间的关系。通过siRNA转染降低IMR32细胞中MYCN的表达,可通过0.4 Pa的剪应力抑制细胞运动。这些结果表明,在高剪切应力下,MYCN扩增的神经母细胞瘤细胞由于高细胞运动性而迁移至远处器官,从而使细胞迁移至淋巴管血管和小静脉。

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