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Intercellular calcium wave propagation in linear and circuit-like bone cell networks

机译:线性和类电路骨细胞网络中细胞间钙波的传播

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摘要

In the present study, the mechanism of intercellular calcium wave propagation in bone cell networks was identified. By using micro-contact printing and self-assembled monolayer technologies, two types of in vitro bone cell networks were constructed: open-ended linear chains and looped hexagonal networks with precisely controlled intercellular distances. Intracellular calcium responses of the cells were recorded and analysed when a single cell in the network was mechanically stimulated by nano-indentation. The looped cell network was shown to be more efficient than the linear pattern in transferring calcium signals from cell to cell. This phenomenon was further examined by pathway-inhibition studies. Intercellular calcium wave propagation was significantly impeded when extracellular adenosine triphosphate (ATP) in the medium was hydrolysed. Chemical uncoupling of gap junctions, however, did not significantly decrease the transferred distance of the calcium wave in the cell networks. Thus, it is extracellular ATP diffusion, rather than molecular transport through gap junctions, that dominantly mediates the transmission of mechanically elicited intercellular calcium waves in bone cells. The inhibition studies also demonstrated that the mechanical stimulation-induced calcium responses required extracellular calcium influx, whereas the ATP-elicited calcium wave relied on calcium release from the calcium store of the endoplasmic reticulum.
机译:在本研究中,确定了骨细胞网络中细胞间钙波传播的机制。通过使用微接触印刷和自组装单层技术,构建了两种类型的体外骨细胞网络:开放式线性链和具有精确控制的细胞间距离的环状六边形网络。当通过纳米压痕机械刺激网络中的单个细胞时,记录并分析细胞的细胞内钙反应。已证明,环状细胞网络比线性模式更有效地将钙信号从一个细胞转移到另一个细胞。通过途径抑制研究进一步检查了这种现象。当介质中的细胞外三磷酸腺苷(ATP)水解时,细胞间钙波的传播受到显着阻碍。然而,间隙连接的化学解偶联并没有显着降低细胞网络中钙波的转移距离。因此,主要是介导骨细胞中机械诱导的细胞间钙波的传输,是细胞外ATP扩散而不是通过间隙连接的分子运输。抑制研究还表明,机械刺激诱导的钙反应需要细胞外钙内流,而ATP诱导的钙波依赖于内质网钙储存中的钙释放。

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