核变形和移动细胞的动态在3D封闭中揭示了拉力和推力力的适应
Stefan Stöberl1, Johannes Flommersfeld2,3, Maximilian M Kreft1
1Faculty of Physics and Center for NanoScience, Ludwig-Maximilians-University, Geschwister-Scholl-Platz 1, D-80539 Munich, Germany.
癌细胞核在狭窄的空间中变形并改变迁移动态. 它们的速度和转变频率取决于通道宽度,物理模型解释了这些核形状和力变化.
科学领域:
- 细胞生物学 细胞生物学
- 生物物理学的生物物理.
- 癌症研究 癌症研究
背景情况:
- 细胞可以变形它们的形状和细胞骨,通过比它们的核小的收缩迁移.
- 核变形和被关押下的迁移动态之间的关系尚未得到充分理解.
研究的目的:
- 通过封闭的3D水凝通道迁移期间研究介质癌细胞核的机制和动力学.
- 阐明核变形,力和在封闭环境中的迁移速度之间的关系.
主要方法:
- 混焦成像用于可视化核变形.
- 水凝珠位移测试测量在受限迁移期间测量力量.
- 开发一个物理模型来解释观察到的现象.
主要成果:
- 细胞迁移速度和过渡频率表现出对通道宽度的双相依赖,在与核直径相似的宽度处达到峰值.
- 核可逆地变形,在被关押期间体积减少.
- 核的形状随着通道宽度的减少而两相变化,与迁移动态相关.
结论:
- 细胞骨力量产生适应从基于拉动到基于拉动和推动的机制,因为核限制增加.
- 一个物理模型成功地解释了在受限迁移期间的核形状和过渡动态.
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