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Modeling of the gap junction of pancreatic β-cells and the robustness of insulin secretion

机译:胰腺β细胞间隙连接的建模和胰岛素分泌的稳健性

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Pancreatic β-cells are interconnected by gap junctions, which allow small molecules to pass from cell to cell. In spite of the importance of the gap junctions in cellular communication, modeling studies have been limited by the complexity of the system. Here, we propose a mathematical gap junction model that properly takes into account biological functions, and apply this model to the study of the β-cell cluster. We consider both electrical and metabolic features of the system. Then, we find that when a fraction of the ATP-sensitive K+ channels are damaged, robust insulin secretion can only be achieved by gap junctions. Our finding is consistent with recent experiments conducted by Rocheleau et al. Our study also suggests that the free passage of potassium ions through gap junctions plays an important role in achieving metabolic synchronization between β-cells.
机译:胰岛β细胞通过间隙连接相互连接,间隙连接允许小分子从一个细胞传到另一个细胞。尽管间隙连接在蜂窝通信中很重要,但是建模研究受到系统复杂性的限制。在这里,我们提出了一个数学的间隙连接模型,该模型适当地考虑了生物学功能,并将该模型应用于β细胞簇的研究。我们考虑系统的电学特征和新陈代谢特征。然后,我们发现,当一部分ATP敏感的K + 通道遭到破坏时,只有通过间隙连接才能实现强大的胰岛素分泌。我们的发现与Rocheleau等人最近进行的实验一致。我们的研究还表明,钾离子通过间隙连接的自由通道在实现β细胞之间的代谢同步中起着重要作用。

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