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首页> 外文期刊>Journal of land use science >Fluid shear stress impacts ovarian cancer cell viability, subcellular organization, and promotes genomic instability
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Fluid shear stress impacts ovarian cancer cell viability, subcellular organization, and promotes genomic instability

机译:流体剪切应力会影响卵巢癌细胞活力,亚细胞组织,促进基因组不稳定性

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Ovarian cancer cells are exposed to physical stress in the peritoneal cavity during both tumor growth and dissemination. Ascites build-up in metastatic ovarian cancer further increases the exposure to fluid shear stress. Here, we used a murine, in vitro ovarian cancer progression model in parallel with immortalized human cells to investigate how ovarian cancer cells of increasing aggressiveness respond to 1 dyne/cm(2)of fluid-induced shear stress. This biophysical stimulus significantly reduced cell viability in all cells exposed, independent of disease stage. Fluid shear stress induced spheroid formation and altered cytoskeleton organization in more tumorigenic cell lines. While benign ovarian cells appeared to survive in higher numbers under the influence of fluid shear stress, they exhibited severe morphological changes and chromosomal instability. These results suggest that exposure of benign cells to low magnitude fluid shear stress can induce phenotypic changes that are associated with transformation and ovarian cancer progression. Moreover, exposure of tumorigenic cells to fluid shear stress enhanced anchorage-independent survival, suggesting a role in promoting invasion and metastasis.
机译:卵巢癌细胞在肿瘤生长和传播期间暴露于腹膜腔中的物理胁迫。腹水在转移性卵巢癌中累积进一步增加了暴露于流体剪切应力。在这里,我们使用了鼠,在体外卵巢癌进展模型与永生化的人体细胞来调查卵巢癌细胞如何增加侵袭性对&流体诱导的剪切应力的1达因/厘米(2)。这种生物物理刺激在暴露的所有细胞中显着降低了细胞活力,与疾病阶段无关。流体剪切应力诱导球状形成和更改变的细胞骨架组织在更多的致瘤细胞系中。虽然良性卵巢细胞在流体剪切应力的影响下似乎在更高的数量中存活,但它们表现出严重的形态变化和染色体不稳定性。这些结果表明,良性细胞暴露于低幅度流体剪切应力可以诱导与转化和卵巢癌进展相关的表型变化。此外,致瘤细胞暴露于流体剪切应力增强的锚固型生存率,表明在促进侵袭和转移方面的作用。

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