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Comparative End-to-End Analysis of Ca2+-Signaling-Based Molecular Communication in Biological Tissues

机译:Ca 2 + -基于信号的生物组织分子通讯的端到端比较分析

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摘要

Calcium (Ca)-signaling-based molecular communication is a short-range communication process that diffuses and propagates ions between the cells of a tissue. The communication process is initiated via stimulation and amplification of the production of Ca ions within a cell; these ions then diffuse through a physical connection between cells called a gap junction. Ca signaling can be found in different classes of cell. In cells, initiation of the Ca-signaling process is accompanied by an electrical component; for cell types, the electrical component is absent; while cells exhibit both behaviors. This paper provides a comparison and analysis of the communication behavior in tissues comprised three specific cell types that utilize Ca signaling: (nonexcitable), (excitable), and (hybrid). The analysis focuses on spatiotemporal Ca concentration dynamics and how they are influenced by the intracellular signaling process, the molecular diffusion delay, the gain and capacity of the communication channel, as well as intracellular signaling interference. This analysis of the communication behavior in the context of tissues provides insights useful for, , the design of nanomachines that are situated within tissues and that use analysis of the communication channel to infer tissue health.
机译:基于钙(Ca)信号的分子通讯是一种短距离通讯过程,可在组织的细胞之间扩散和传播离子。通信过程是通过刺激和放大细胞内Ca离子的产生而启动的;这些离子然后通过称为间隙连接的单元之间的物理连接扩散。 Ca信号传导可以在不同类别的细胞中发现。在细胞中,Ca信号传导过程的开始伴随着电子成分。对于电池类型,不存在电气组件;而细胞同时表现出两种行为。本文提供了对组织中通讯行为的比较和分析,该组织包含三种利用Ca信号传导的特定细胞类型:(非兴奋性),(兴奋性)和(混合性)。分析的重点是时空Ca浓度动态及其如何受细胞内信号传导过程,分子扩散延迟,通讯通道的增益和容量以及细胞内信号传导干扰的影响。对组织环境中的通信行为的这种分析提供了见解,可用于设计位于组织内并使用通信通道的分析来推断组织健康的纳米机器。

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