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Common Effects on Cancer Cells Exerted by a Random Positioning Machine and a 2D Clinostat

机译:随机定位仪和二维Clinostat对癌细胞产生的共同影响

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摘要

In this study we focused on gravity-sensitive proteins of two human thyroid cancer cell lines (ML-1; RO82-W-1), which were exposed to a 2D clinostat (CLINO), a random positioning machine (RPM) and to normal 1g-conditions. After a three (3d)- or seven-day-culture (7d) on the two devices, we found both cell types growing three-dimensionally within multicellular spheroids (MCS) and also cells remaining adherent (AD) to the culture flask, while 1g-control cultures only formed adherent monolayers, unless the bottom of the culture dish was covered by agarose. In this case, the cytokines IL-6 and IL-8 facilitated the formation of MCS in both cell lines using the liquid-overlay technique at 1g. ML-1 cells grown on the RPM or the CLINO released amounts of IL-6 and MCP-1 into the supernatant, which were significantly elevated as compared to 1g-controls. Release of IL-4, IL-7, IL-8, IL-17, eotaxin-1 and VEGF increased time-dependently, but was not significantly influenced by the gravity conditions. After 3d on the RPM or the CLINO, an accumulation of F-actin around the cellular membrane was detectable in AD cells of both cell lines. IL-6 and IL-8 stimulation of ML-1 cells for 3d and 7d influenced the protein contents of ß1-integrin, talin-1, Ki-67, and beta-actin dose-dependently in adherent cells. The ß1-integrin content was significantly decreased in AD and MCS samples compared with 1g, while talin-1 was higher expressed in MCS than AD populations. The proliferation marker Ki-67 was elevated in AD samples compared with 1g and MCS samples. The ß-actin content of R082-W-1 cells remained unchanged. ML-1 cells exhibited no change in ß-actin in RPM cultures, but a reduction in CLINO samples. Thus, we concluded that simulated microgravity influences the release of cytokines in follicular thyroid cancer cells, and the production of ß1-integrin and talin-1 and predicts an identical effect under real microgravity conditions.
机译:在这项研究中,我们专注于两种人类甲状腺癌细胞系(ML-1; RO82-W-1)的重力敏感蛋白,这些蛋白暴露于2D clinostat(CLINO),随机定位仪(RPM)和正常1g条件。在两个设备上进行了三(3d)或七天的培养(7d)后,我们发现两种细胞类型均在多细胞球体(MCS)内三维生长,并且细胞仍粘附在培养瓶上(AD),而1g-对照培养物仅形成粘附的单层,除非培养皿的底部被琼脂糖覆盖。在这种情况下,使用液体叠加技术以1g的剂量,细胞因子IL-6和IL-8促进了两种细胞系中MCS的形成。在RPM或CLINO上生长的ML-1细胞向上清液中释放一定量的IL-6和MCP-1,与1g对照相比,这些物质明显升高。 IL-4,IL-7,IL-8,IL-17,eotaxin-1和VEGF的释放时间依赖性增加,但不受重力条件的显着影响。在RPM或CLINO上3天后,在两种细胞系的AD细胞中均可检测到F-肌动蛋白在细胞膜周围的积累。 IL-6和IL-8对ML-1细胞进行3d和7d刺激后,其粘附细胞中ß1-integrin,talin-1,Ki-67和β-actin的蛋白质含量受到剂量依赖性。与1g相比,AD和MCS样品中ß1-integrin含量明显降低,而MCS中的talin-1表达高于AD人群。与1g和MCS样品相比,AD样品中的增殖标记Ki-67升高。 R082-W-1细胞的β-肌动蛋白含量保持不变。 ML-1细胞在RPM培养物中的β-肌动蛋白无变化,但CLINO样品减少。因此,我们得出结论,模拟微重力会影响甲状腺滤泡癌细胞中细胞因子的释放以及ß1-整联蛋白和talin-1的产生,并预测在实际微重力条件下的效果相同。

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