活跃控制收缩性的细胞-菌株-能量成本
Josephine Solowiej-Wedderburn1, Carina M Dunlop1
1School of Mathematics and Physics, University of Surrey, Guildford GU2 7XH, United Kingdom.
细胞收缩性适应基质的刚性,而无需高能耗. 一个理论模型显示,维持应变能量驱动了收缩率上调和粘附聚类,优化了细胞行为.
科学领域:
- 细胞生物学 细胞生物学
- 生物物理学的生物物理.
- 理论生物学的理论生物学.
背景情况:
- 细胞机械感知调节各种细胞行为.
- 细胞骨收缩性对于机械感知至关重要.
- 细胞通过改变收缩性和细胞骨组织来响应基质刚性.
研究的目的:
- 为了研究细胞收缩性变化对基质刚性的反应的能量成本.
- 为了建模控制活跃细胞收缩性的反机制.
- 了解粘附和收缩分布如何影响细胞反应.
主要方法:
- 积极细胞收缩性的理论模型的开发.
- 分析应变能量维护作为反机制.
- 考虑基质应变能量和活跃工作.
主要成果:
- 收缩率上调不一定是能源昂贵的,特别是随着粘附和收缩分布的改变.
- 应变能量维护需要在大多数基板上增加收缩压力.
- 基板应变能量有利于在更硬的基板上聚合粘附,从而有效地使表面变软.
- 收缩性局部化显著影响内部工作.
结论:
- 通过优化收缩性和粘附,细胞对基质刚性的反应在能量上是可行的.
- 应变能量反提供了一个适应性细胞行为的机制.
- 粘附聚类和收缩局部化是细胞用来管理机械力的关键策略.
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