首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Analysis of Beta-cell Function Using Single-cell Resolution Calcium Imaging in Zebrafish Islets
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Analysis of Beta-cell Function Using Single-cell Resolution Calcium Imaging in Zebrafish Islets

机译:使用单细胞分辨率钙成像在斑马鱼岛中的β细胞功能分析。

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摘要

Pancreatic beta-cells respond to increasing blood glucose concentrations by secreting the hormone insulin. The dysfunction of beta-cells leads to hyperglycemia and severe, life-threatening consequences. Understanding how the beta-cells operate under physiological conditions and what genetic and environmental factors might cause their dysfunction could lead to better treatment options for diabetic patients. The ability to measure calcium levels in beta-cells serves as an important indicator of beta-cell function, as the influx of calcium ions triggers insulin release. Here we describe a protocol for monitoring the glucose-stimulated calcium influx in zebrafish beta-cells by using GCaMP6s, a genetically encoded sensor of calcium. The method allows monitoring the intracellular calcium dynamics with single-cell resolution in ex vivo mounted islets. The glucose-responsiveness of beta-cells within the same islet can be captured simultaneously under different glucose concentrations, which suggests the presence of functional heterogeneity among zebrafish beta-cells. Furthermore, the technique provides high temporal and spatial resolution, which reveals the oscillatory nature of the calcium influx upon glucose stimulation. Our approach opens the doors to use the zebrafish as a model to investigate the contribution of genetic and environmental factors to beta-cell function and dysfunction.
机译:胰岛β细胞通过分泌激素胰岛素来应对不断增加的血糖浓度。 β细胞功能异常会导致高血糖症以及严重的威胁生命的后果。了解β细胞在生理条件下如何运作以及哪些遗传和环境因素可能导致其功能障碍,可以为糖尿病患者带来更好的治疗选择。测量钙离子细胞中钙水平的能力是钙离子细胞功能的重要指标,因为钙离子的流入会触发胰岛素释放。在这里,我们描述了一种协议,该协议通过使用遗传编码的钙传感器GCaMP6s来监测斑马鱼β细胞中葡萄糖刺激的钙内流。该方法允许在离体安装的胰岛中以单细胞分辨率监测细胞内钙动力学。可以在不同的葡萄糖浓度下同时捕获同一胰岛内β细胞的葡萄糖反应性,这表明斑马鱼β细胞之间存在功能异质性。此外,该技术提供了高的时间和空间分辨率,揭示了葡萄糖刺激后钙内流的振荡性质。我们的方法为使用斑马鱼作为模型来研究遗传和环境因素对β细胞功能和功能障碍的贡献打开了大门。

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