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Membrane shrinkage and cortex remodelling are predicted to work in harmony to retract blebs

机译:膜收缩和皮层重塑预计将协调工作以收回气泡

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Numerous cell types undergo an oscillatory form of dynamics known as blebbing, whereby pressure-driven spherical protrusions of membrane (known as blebs) expand and contract over the cell's surface. Depending on the cell line, blebs play important roles in many different phenomena including mitosis and locomotion. The expansion phase of cellular blebbing has been mathematically modelled in detail. However, the active processes occurring during the retraction phase are not so well characterized. It is thought that blebs retract because a cortex reforms inside, and adheres to, the bleb membrane. This cortex is retracted into the cell and the attached bleb membrane follows. Using a computational model of a cell's membrane, cortex and interconnecting adhesions, we demonstrate that cortex retraction alone cannot account for bleb retraction and suggest that the mechanism works in tandem with membrane shrinking. Further, an emergent hysteresis loop is observed in the intracellular pressure, which suggests a potential mechanism through which a secondary bleb can be initiated as a primary bleb contracts.
机译:许多细胞类型经历了一种称为“起泡”的动力学振荡形式,从而压力驱动的球形球形突起(称为“起泡”)在细胞表面上膨胀和收缩。取决于细胞系,气泡在许多不同的现象(包括有丝分裂和运动)中起着重要的作用。细胞起泡的扩展阶段已在数学上进行了详细建模。但是,回缩阶段中发生的活动过程的特征并不太好。可以认为,由于皮质在内部重整并粘附在气泡膜上,气泡会缩回。该皮层缩回细胞中,随后附着的气泡膜。使用细胞膜,皮质和相互连接的粘附力的计算模型,我们证明仅皮质的收缩不能解决小泡的收缩,并提示该机制与膜的收缩协同作用。此外,在细胞内压力中观察到出现的滞后回线,这暗示了潜在的机制,通过该机制,次级泡可以随着初级泡的收缩而引发。

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