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使用扰流产生装置揭示剪切应力下癌细胞的细胞分裂前阻滞。

Uncovering pre-cytokinetic block in cancer cells under shear stress using a disturbed flow-generating device.

作者信息

Beresova Lucie, Vitecek Jan, Protivánková Iva, Dudka Michal, Chroma Katarina, Skrott Zdenek, Buchtova Tereza, Poláková Kamila, Novotny Jan, Novakova Ludmila, Bartek Jiri, Mistrik Martin

机构信息

Laboratory of Genome Integrity, Faculty of Medicine and Dentistry, Institute of Molecular and Translational Medicine, Palacky University, Olomouc, Czech Republic.

Department of Biophysics of Immune System, Institute of Biophysics of the Czech Academy of Sciences, Kralovopolska 135, Brno, Czech Republic.

出版信息

Sci Rep. 2025 Feb 22;15(1):6457. doi: 10.1038/s41598-024-83058-3.

Abstract

During metastasis, cancer cells navigate through harsh conditions, including various mechanical forces in the bloodstream, highlighting the need to understand the impact of mechanical and shear stresses on cancer cells. To overcome the current methodological limitations of such research, here we present a new device that replicates similar conditions by applying shear stress on cultured cells. The device provides a less complex, easily accessible alternative to traditional fluidics while generating fluid shear stress values comparable to those in human veins and capillaries. The device allows analyses of large cell numbers in standard cell culture flasks and incubators. Using this device to explore the shear stress-induced responses of various human cell lines, we discovered a previously unknown, reversible pre-cytokinetic block occurring in cells that lose anchorage during mitosis and are kept under constant shear stress. Notably, some cancer cell lines appear to bypass this unorthodox cell-cycle block, suggesting its role as a safety checkpoint to restrict the proliferation of cancer cells in the bloodstream and their overall spreading potential. These findings provide new insights into the diverse responses of normal and cancer cells to shear stress and highlight the potential of our technology for research on circulating tumor cells and metastatic spread.

摘要

在转移过程中,癌细胞要在恶劣条件下穿行,包括血流中的各种机械力,这凸显了了解机械应力和剪切应力对癌细胞影响的必要性。为克服此类研究当前的方法局限性,我们在此展示一种新装置,该装置通过对培养细胞施加剪切应力来复制类似条件。该装置提供了一种比传统流体学更简单、更易操作的替代方案,同时能产生与人体静脉和毛细血管相当的流体剪切应力值。该装置可在标准细胞培养瓶和培养箱中对大量细胞进行分析。利用此装置探究各种人类细胞系对剪切应力的诱导反应时,我们发现,在有丝分裂期间失去锚定并处于持续剪切应力下的细胞中会出现一种此前未知的、可逆的细胞分裂前阻滞。值得注意的是,一些癌细胞系似乎能绕过这种非正统的细胞周期阻滞,这表明它作为一种安全检查点,可限制癌细胞在血流中的增殖及其整体扩散潜能。这些发现为正常细胞和癌细胞对剪切应力的不同反应提供了新见解,并凸显了我们的技术在循环肿瘤细胞和转移扩散研究方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/548c/11846833/76d37eaa903a/41598_2024_83058_Fig1_HTML.jpg

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