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A Highlights from MBoC Selection: Regulation of ATP utilization during metastatic cell migration by collagen architecture

机译:MBoC选择的亮点:通过胶原蛋白结构调节转移性细胞迁移过程中ATP的利用

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摘要

Cell migration in a three-dimensional matrix requires that cells either remodel the surrounding matrix fibers and/or squeeze between the fibers to move. Matrix degradation, matrix remodeling, and changes in cell shape each require cells to expend energy. While significant research has been performed to understand the cellular and molecular mechanisms guiding metastatic migration, less is known about cellular energy regulation and utilization during three-dimensional cancer cell migration. Here we introduce the use of the genetically encoded fluorescent biomarkers, PercevalHR and pHRed, to quantitatively assess ATP, ADP, and pH levels in MDA-MB-231 metastatic cancer cells as a function of the local collagen microenvironment. We find that the use of the probe is an effective tool for exploring the thermodynamics of cancer cell migration and invasion. Specifically, we find that the ATP:ADP ratio increases in cells in denser matrices, where migration is impaired, and it decreases in cells in aligned collagen matrices, where migration is facilitated. When migration is pharmacologically inhibited, the ATP:ADP ratio decreases. Together, our data indicate that matrix architecture alters cellular energetics and that intracellular ATP:ADP ratio is related to the ability of cancer cells to effectively migrate.
机译:三维基质中的细胞迁移需要细胞重塑周围的基质纤维和/或在纤维之间挤压以移动。基质降解,基质重塑和细胞形状变化均需要细胞消耗能量。尽管已经进行了大量研究来理解指导转移迁移的细胞和分子机制,但对三维癌细胞迁移过程中细胞能量调节和利用的了解却很少。在这里,我们介绍了遗传编码的荧光生物标记物PercevalHR和pHRed的使用,以定量评估MDA-MB-231转移性癌细胞中ATP,ADP和pH的水平,这是局部胶原微环境的函数。我们发现探针的使用是探索癌细胞迁移和侵袭的热力学的有效工具。具体而言,我们发现,ATP:ADP比在致密基质中的细胞中迁移增加,而迁移受到阻碍,而在对齐的胶原基质中的细胞中ATP:ADP比率降低,从而促进迁移。当迁移在药理学上受到抑制时,ATP:ADP比率降低。总之,我们的数据表明,基质结构改变了细胞的能量,细胞内ATP:ADP的比例与癌细胞有效迁移的能力有关。

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