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Islet architecture controls synchronous β cell response to glucose in the intact mouse pancreas in vivo

Authors :
Adams, Melissa T.
Reissaus, Christopher A.
Szulczewski, Joseph M.
Dwulet, JaeAnn M.
Lyman, Melissa R.
Sdao, Sophia M.
Nimkulrat, Sutichot D.
Ponik, Suzanne M.
Merrins, Matthew J.
Benninger, Richard K.P.
Mirmira, Raghavendra G.
Linnemann, Amelia K.
Blum, Barak
Publication Year :
2019
Publisher :
Cold Spring Harbor Laboratory, 2019.

Abstract

The spatial architecture of the islets of Langerhans is hypothesized to facilitate synchronized insulin secretion between β cells, yet testing this in vivo in the intact pancreas is challenging. Robo βKO mice, in which the genes Robo1 and Robo2 are deleted selectively in β cells, provide a unique model of altered islet architecture without loss of β cell differentiation or islet damage from diabetes. Combining Robo βKO mice with intravital microscopy, we show here that Robo βKO islets lose synchronized intra-islet Ca 2+ oscillations between β cells in vivo. We provide evidence that this loss is not due to a β cell-intrinsic function of Robo, loss of Connexin36 gap junctions, or changes in islet vascularization, suggesting that the islet architecture itself is required for synchronized Ca 2+ oscillations. These results will have implications for understanding structure-function relationships in the islets during progression to diabetes as well as engineering islets from stem cells.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.sharebioRxiv..ecc6e4539304d7316d7cf81fd8eac0d1
Full Text :
https://doi.org/10.1101/2019.12.11.873471