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Synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains

Pulsatile insulin secretion into the portal vein from the many pancreatic islets of Langerhans is critical for efficient glucose homeostasis. The islets are themselves endogenous oscillators, but since they are not physically coupled it is not obvious how their oscillations are synchronized across t...

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Autores principales: Adablah, Joel E., Vinson, Ryan, Roper, Michael G., Bertram, Richard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6364940/
https://www.ncbi.nlm.nih.gov/pubmed/30726280
http://dx.doi.org/10.1371/journal.pone.0211832
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author Adablah, Joel E.
Vinson, Ryan
Roper, Michael G.
Bertram, Richard
author_facet Adablah, Joel E.
Vinson, Ryan
Roper, Michael G.
Bertram, Richard
author_sort Adablah, Joel E.
collection PubMed
description Pulsatile insulin secretion into the portal vein from the many pancreatic islets of Langerhans is critical for efficient glucose homeostasis. The islets are themselves endogenous oscillators, but since they are not physically coupled it is not obvious how their oscillations are synchronized across the pancreas. It has been proposed that synchronization of islets is achieved through periodic activity of intrapancreatic ganglia, and indeed there are data supporting this proposal. Postganglionic nerves are cholinergic, and their product, acetylcholine, can influence islet β-cells through actions on M(3) muscarinic receptors which are coupled to G(q) type G-proteins. In addition, the neurons secrete several peptide hormones that act on β-cell receptors. The data supporting synchronization via intrapancreatic ganglia are, however, limited. In particular, it has not been shown that trains of muscarinic pulses are effective at synchronizing islets in vitro. Also, if as has been suggested, there is a ganglionic pacemaker driving islets to a preferred frequency, no neural circuitry for this pacemaker has been identified. In this study, both points are addressed using a microfluidic system that allows for the pulsed application of the muscarinic agonist carbachol. We find that murine islets are entrained and synchronized over a wide range of frequencies when the carbachol pulsing is periodic, adding support to the hypothesis that ganglia can synchronize islets in vivo. We also find that islet synchronization is very effective even if the carbachol pulses are applied at random times. This suggests that a neural pacemaker is not needed; all that is required is that islets receive occasional coordinated input from postganglionic neurons. The endogenous rhythmic activity of the islets then sets the frequency of the islet population rhythm, while the input from ganglia acts only to keep the islet oscillators in phase.
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spelling pubmed-63649402019-02-22 Synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains Adablah, Joel E. Vinson, Ryan Roper, Michael G. Bertram, Richard PLoS One Research Article Pulsatile insulin secretion into the portal vein from the many pancreatic islets of Langerhans is critical for efficient glucose homeostasis. The islets are themselves endogenous oscillators, but since they are not physically coupled it is not obvious how their oscillations are synchronized across the pancreas. It has been proposed that synchronization of islets is achieved through periodic activity of intrapancreatic ganglia, and indeed there are data supporting this proposal. Postganglionic nerves are cholinergic, and their product, acetylcholine, can influence islet β-cells through actions on M(3) muscarinic receptors which are coupled to G(q) type G-proteins. In addition, the neurons secrete several peptide hormones that act on β-cell receptors. The data supporting synchronization via intrapancreatic ganglia are, however, limited. In particular, it has not been shown that trains of muscarinic pulses are effective at synchronizing islets in vitro. Also, if as has been suggested, there is a ganglionic pacemaker driving islets to a preferred frequency, no neural circuitry for this pacemaker has been identified. In this study, both points are addressed using a microfluidic system that allows for the pulsed application of the muscarinic agonist carbachol. We find that murine islets are entrained and synchronized over a wide range of frequencies when the carbachol pulsing is periodic, adding support to the hypothesis that ganglia can synchronize islets in vivo. We also find that islet synchronization is very effective even if the carbachol pulses are applied at random times. This suggests that a neural pacemaker is not needed; all that is required is that islets receive occasional coordinated input from postganglionic neurons. The endogenous rhythmic activity of the islets then sets the frequency of the islet population rhythm, while the input from ganglia acts only to keep the islet oscillators in phase. Public Library of Science 2019-02-06 /pmc/articles/PMC6364940/ /pubmed/30726280 http://dx.doi.org/10.1371/journal.pone.0211832 Text en © 2019 Adablah et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Adablah, Joel E.
Vinson, Ryan
Roper, Michael G.
Bertram, Richard
Synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains
title Synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains
title_full Synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains
title_fullStr Synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains
title_full_unstemmed Synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains
title_short Synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains
title_sort synchronization of pancreatic islets by periodic or non-periodic muscarinic agonist pulse trains
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6364940/
https://www.ncbi.nlm.nih.gov/pubmed/30726280
http://dx.doi.org/10.1371/journal.pone.0211832
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