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首页> 外文期刊>Journal of the Royal Society Interface >Cell-type-specific modelling of intracellular calcium signalling: a urothelial cell model
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Cell-type-specific modelling of intracellular calcium signalling: a urothelial cell model

机译:细胞内钙信号传导的细胞类型特异性建模:尿路上皮细胞模型

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摘要

Calcium signalling plays a central role in regulating a wide variety of cell processes. A number of calcium signalling models exist in the literature that are capable of reproducing a variety of experimentally observed calcium transients. These models have been used to examine in more detail the mechanisms underlying calcium transients, but very rarely has a model been directly linked to a particular cell type and experimentally verified. It is important to show that this can be achieved within the general theoretical framework adopted by these models. Here, we develop a framework designed specifically for modelling cytosolic calcium transients in urothelial cells. Where possible, we draw upon existing calcium signalling models, integrating descriptions of components known to be important in this cell type from a number of studies in the literature. We then add descriptions of several additional pathways that play a specific role in urothelial cell signalling, including an explicit ionic influx term and an active pumping mechanism that drives the cytosolic calcium concentration to a target equilibrium. The resulting one-pool model of endoplasmic reticulum (ER)-dependent calcium signalling relates the cytosolic, extracellular and ER calcium concentrations and can generate a wide range of calcium transients, including spikes, bursts, oscillations and sustained elevations in the cytosolic calcium concentration. Using single-variate robustness and multivariate sensitivity analyses, we quantify how varying each of the parameters of the model leads to changes in key features of the calcium transient, such as initial peak amplitude and the frequency of bursting or spiking, and in the transitions between bursting- and plateau-dominated modes. We also show that, novel to our urothelial cell model, the ionic and purinergic P2Y pathways make distinct contributions to the calcium transient. We then validate the model using human bladder epithelial cells grown in monolayer cell culture and show that the model robustly captures the key features of the experimental data in a way that is not possible using more generic calcium models from the literature.
机译:钙信号传导在调节多种细胞过程中起着核心作用。文献中存在许多钙信号传导模型,其能够再现各种实验观察到的钙瞬变。这些模型已被用来更详细地检查钙瞬变的机制,但是很少有模型直接与特定细胞类型相关联并经过实验验证。重要的是要表明可以在这些模型采用的一般理论框架内实现这一目标。在这里,我们开发了一个专门设计用于建模尿路上皮细胞中胞质钙瞬变的框架。在可能的情况下,我们利用现有的钙信号传导模型,并结合许多文献研究中已知对该细胞类型重要的成分的描述。然后,我们添加对在尿路上皮细胞信号传导中起特定作用的几种其他途径的描述,包括明确的离子流入术语和将胞浆钙浓度驱动至目标平衡的主动泵送机制。生成的内质网(ER)依赖性钙信号传导的单池模型与胞浆,细胞外和ER钙浓度有关,并且可以产生广泛的钙瞬变,包括尖峰,爆发,振荡和胞浆钙浓度的持续升高。使用单变量鲁棒性和多元敏感性分析,我们可以量化模型中每个参数的变化如何导致钙瞬变的关键特征(例如初始峰值幅度和爆发或尖峰的频率)以及之间的过渡之间的变化。突发模式和高原模式。我们还表明,对于我们的尿道上皮细胞模型而言,新颖的离子和嘌呤P2Y途径对钙瞬变做出了独特的贡献。然后,我们使用在单层细胞培养物中生长的人膀胱上皮细胞验证了该模型,并显示了该模型以一种无法使用文献中更为通用的钙模型所无法实现的方式,稳健地捕获了实验数据的关键特征。

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