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Adhesion and Migration Response to Radiation Therapy of Mammary Epithelial and Adenocarcinoma Cells Interacting with Different Stiffness Substrates

机译:与刚性基质相互作用的乳腺上皮和腺癌细胞对放射治疗的粘附和迁移反应

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摘要

The structural and mechanical properties of the microenvironmental context have a profound impact on cancer cell motility, tumor invasion, and metastasis formation. In fact, cells react to their mechanical environment modulating their adhesion, cytoskeleton organization, changes of shape, and, consequently, the dynamics of their motility. In order to elucidate the role of extracellular matrix stiffness as a driving force in cancer cell motility/invasion and the effects of ionizing radiations on these processes, we evaluated adhesion and migration as biophysical properties of two different mammary cell lines, over a range of pathophysiological stiffness (1–13 kPa) in a control condition and after the exposure to two different X-ray doses (2 and 10 Gy, photon beams). We concluded that the microenvironment mimicking the normal mechanics of healthy tissue has a radioprotective role on both cell lines, preventing cell motility and invasion. Supraphysiological extracellular matrix stiffness promoted tumor cell motility instead, but also had a normalizing effect on the response to radiation of tumor cells, lowering their migratory capability. This work lays the foundation for exploiting the extracellular matrix-mediated mechanism underlying the response of healthy and tumor cells to radiation treatments and opens new frontiers in the diagnostic and therapeutic use of radiotherapy.
机译:微环境环境的结构和机械特性对癌细胞的运动性,肿瘤的侵袭和转移的形成有深远的影响。实际上,细胞会对其机械环境做出反应,从而调节其粘附力,细胞骨架组织,形状变化,进而改变其运动动力。为了阐明细胞外基质刚度在癌细胞运动/侵袭中的驱动力作用以及电离辐射对这些过程的影响,我们在一系列病理生理学范围内评估了粘附和迁移是两种不同乳腺细胞系的生物物理特性。在控制条件下以及在暴露于两种不同的X射线剂量(2和10 Gy,光子束)后,其刚度(1-13 kPa)。我们得出的结论是,模仿健康组织正常力学的微环境对两种细胞系均具有放射防护作用,可防止细胞运动和侵袭。超生理学上的细胞外基质刚度反而促进了肿瘤细胞的运动,但也对肿瘤细胞辐射的反应具有正常化作用,降低了其迁移能力。这项工作为开发利用细胞外基质介导的健康和肿瘤细胞对放射治疗反应的基础奠定了基础,并为放射治疗的诊断和治疗应用开辟了新的领域。

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