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Progressive glucose stimulation of islet beta cells reveals a transition from segregated to integrated modular functional connectivity patterns

机译:胰岛β细胞的逐步葡萄糖刺激揭示了从分离的模块化功能连接模式到集成模块化功能连接模式的转变

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摘要

Collective beta cell activity in islets of Langerhans is critical for the supply of insulin within an organism. Even though individual beta cells are intrinsically heterogeneous, the presence of intercellular coupling mechanisms ensures coordinated activity and a well-regulated exocytosis of insulin. In order to get a detailed insight into the functional organization of the syncytium, we applied advanced analytical tools from the realm of complex network theory to uncover the functional connectivity pattern among cells composing the intact islet. The procedure is based on the determination of correlations between long temporal traces obtained from confocal functional multicellular calcium imaging of beta cells stimulated in a stepwise manner with a range of physiological glucose concentrations. Our results revealed that the extracted connectivity networks are sparse for low glucose concentrations, whereas for higher stimulatory levels they become more densely connected. Most importantly, for all ranges of glucose concentration beta cells within the islets form locally clustered functional sub-compartments, thereby indicating that their collective activity profiles exhibit a modular nature. Moreover, we show that the observed non-linear functional relationship between different network metrics and glucose concentration represents a well-balanced setup that parallels physiological insulin release.
机译:Langerhans胰岛中的集体β细胞活性对于生物体内胰岛素的供应至关重要。即使单个β细胞在本质上是异质的,细胞间偶联机制的存在也确保了协调的活性和良好的胰岛素胞吐作用。为了深入了解合体的功能组织,我们使用了来自复杂网络理论领域的高级分析工具来揭示组成完整胰岛的细胞之间的功能连接模式。该程序基于确定以一定范围的生理性葡萄糖浓度逐步刺激的β细胞的共聚焦功能性多细胞钙成像获得的长时间痕迹之间的相关性。我们的结果表明,对于低葡萄糖浓度,提取的连接网络稀疏,而对于较高的刺激水平,它们的连接更加紧密。最重要的是,对于葡萄糖浓度的所有范围,胰岛内的β细胞形成局部聚集的功能子室,从而表明它们的集体活性谱表现出模块性。此外,我们表明观察到的不同网络指标和葡萄糖浓度之间的非线性功能关系代表了与生理胰岛素释放平行的良好平衡的设置。

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