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细胞单层中的信息传递:一项数值研究。

Information transmission in a cell monolayer: A numerical study.

作者信息

Nałęcz-Jawecki Paweł, Szyc Przemysław, Grabowski Frederic, Kochańczyk Marek, Lipniacki Tomasz

机构信息

Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw, Poland.

Faculty of Physics, University of Warsaw, Warsaw, Poland.

出版信息

PLoS Comput Biol. 2025 Feb 21;21(2):e1012846. doi: 10.1371/journal.pcbi.1012846. eCollection 2025 Feb.

Abstract

Motivated by the spatiotemporal waves of MAPK/ERK activity, crucial for long-range communication in regenerating tissues, we investigated stochastic homoclinic fronts propagating through channels formed by directly interacting cells. We evaluated the efficiency of long-range communication in these channels by examining the rate of information transmission. Our study identified the stochastic phenomena that reduce this rate: front propagation failure, new front spawning, and variability in the front velocity. We found that a trade-off between the frequencies of propagation failures and new front spawning determines the optimal channel width (which geometrically determines the front length). The optimal frequency of initiating new waves is determined by a trade-off between the input information rate (higher with more frequent initiation) and the fidelity of information transmission (lower with more frequent initiation). Our analysis provides insight into the relative timescales of intra- and intercellular processes necessary for successful wave propagation.

摘要

受丝裂原活化蛋白激酶/细胞外信号调节激酶(MAPK/ERK)活性的时空波的驱动,这对于再生组织中的长距离通讯至关重要,我们研究了通过直接相互作用的细胞形成的通道传播的随机同宿前沿。我们通过检查信息传输速率来评估这些通道中长距离通讯的效率。我们的研究确定了降低该速率的随机现象:前沿传播失败、新前沿产生以及前沿速度的变化。我们发现传播失败频率和新前沿产生频率之间的权衡决定了最佳通道宽度(从几何角度决定前沿长度)。启动新波的最佳频率由输入信息速率(启动越频繁越高)和信息传输保真度(启动越频繁越低)之间的权衡决定。我们的分析深入了解了成功波传播所需的细胞内和细胞间过程的相对时间尺度。

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