bioRxiv · 10.1101/159673
In vivo Imaging β-cell Function Reveals Two Waves of β-cell Maturation
Abstract
The insulin-secreting cells generated from stem cells in vitro are less glucose responsive than primary {beta}-cells. To search for the missing ingredients that are needed for {beta}-cell maturation, we have longitudinally monitored function of every {beta}-cell in Tg (ins:Rcamp1.07) zebrafish embryos with a newly-invented two-photon light-sheet microscope. We have shown that {beta}-cell maturation begins from the islet mantle and propagates to the islet core during the hatching period, coordinated by the islet vascularization. Lower concentration of glucose is optimal to initiate {beta}-cell maturation, while increased glucose delivery to every cell through microcirculation is required for functional boosting of the {beta}-cells. Both the initiation and the boosting of {beta}-cell maturation demands activation of calcineurin/NFAT by glucose. Calcineurin activator combined with glucose promotes mouse neonatal {beta}-cells cultured in vitro to mature to a functional state similar to adult {beta}-cells, suggesting a new strategy for improving stem cell-derived {beta}-like cell function in vitro.
Explore related subjects
Keep this discovery
Zhao, J., Zong, W., Wu, Y., Shen, J., Gou, D., Zhao, Y., Wu, R., Niu, F., Wang, X., Zheng, X., Wang, A., Zhang, Y., Xiong, J.-W., Chen, L., Liu, Y.. 2017-07-05. In vivo Imaging β-cell Function Reveals Two Waves of β-cell Maturation. https://doi.org/10.1101/159673
Cite the original work for its findings. Save a collection to share your selection of sources.