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Simulated microgravity increases polyploid giant cancer cells and nuclear localization of YAP

机译:模拟微重力增加多倍体巨癌细胞和YAP的核定位

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摘要

Physical cues are vital in determining cellular fate in cancer. In vitro 3D culture do not replicate forces present in vivo. These forces including tumor interstitial fluid pressure and matrix stiffness behave as switches in differentiation and metastasis, which are intricate features of cancer stem cells (CSCs). Gravity determines the effect of these physical factors on cell fate and functions as evident from microgravity experiments on space and ground simulations. Here, we described the role of simulation of microgravity (SMG) using rotary cell culture system (RCCS) in increasing stemness in human colorectal cancer cell HCT116. We observed distinct features of cancer stem cells including CD133/CD44 dual positive cells and migration in SMG which was not altered by autophagy induction or inhibition. 3D and SMG increased autophagy, but the flux was staggered under SMG. Increased unique giant cancer cells housing complete nuclear localization of YAP were observed in SMG. This study highlights the role of microgravity in regulating stemness in CSC and importance of physical factors in determining the same.
机译:物理提示对于确定癌症的细胞命运至关重要。体外3D培养不能复制体内存在的力。这些力,包括肿瘤间质液压力和基质硬度,在分化和转移中起着开关的作用,这是癌症干细胞(CSC)的复杂特征。重力决定了这些物理因素对细胞命运和功能的影响,这在空间和地面模拟的微重力实验中很明显。在这里,我们描述了使用旋转细胞培养系统(RCCS)模拟微重力(SMG)在增加人类结直肠癌细胞HCT116的干度中的作用。我们观察到癌症干细胞的独特特征,包括CD133 / CD44双阳性细胞和SMG中的迁移,这些都不会因自噬诱导或抑制而改变。 3D和SMG增加了自噬,但通量在SMG下错开了。在SMG中观察到容纳YAP完整核定位的独特巨癌细胞增加。这项研究强调了微重力在调节CSC茎干中的作用以及确定物理重力的重要性。

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