在长距离的限制下,表皮集体的延迟干扰诱导的振荡迁移模式
S Lohmann1, F M Pramotton1,2,3, A Taloni4
1Laboratory of Thermodynamics in Emerging Technologies, DMAVT, ETH Zürich, Sonneggstr 3, 8092, Zürich, Switzerland.
概括
在狭窄的几何形状中,细胞干扰的动力学会影响集体细胞运动和波浪形成. 延迟干扰可以在更大的区域内协调运动和波浪生成,从而影响生物过程.
科学领域:
- 细胞和分子生物学 细胞和分子生物学
- 生物物理学的生物物理.
- 系统生物学 系统生物学
背景情况:
- 狭窄的几何结构中的集体细胞动力学对于迁移和分化等生物过程至关重要.
- 了解细胞行为如何在类似流体的状态和类似固体的状态 (干扰) 之间过渡,是解读集体运动的关键.
研究的目的:
- 在有限的几何形状下研究上皮层的振荡运动.
- 为了将单层成熟诱导的干扰与波形形成联系起来.
- 探索几何限制和微电网对集体细胞迁移的联合影响.
主要方法:
- 结合实验数据与自行驶的沃罗诺伊模拟.
- 研究了具有不同阻塞特性的上皮细胞群.
- 研究了几何限制和微电网对细胞行为的影响.
主要成果:
- 延迟干扰的上皮细胞群体在更大的封闭区域表现出协调的运动和波浪形成.
- 在大规模限制下,集体迁移振荡取决于细胞单层的阻塞状态.
- 模拟准确地重现了早期的动态状态,揭示了波形和节点振荡动态.
结论:
- 干扰动力学在监禁下调节集体细胞迁移和波浪形成方面发挥着关键作用.
- 延迟干扰为细胞提供了一个协调运动的窗口,导致出现波浪现象.
- 开发的模型成功地描述了局限细胞系统中的波形和振荡动态.
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