Published April 1, 2016 | Version v1
Journal article Open

Design Principles of Pancreatic Islets: Glucose-Dependent Coordination of Hormone Pulses

  • 1. Quang Binh University
  • 2. University of Chicago
  • 3. Pohang University of Science and Technology

Description

Pancreatic islets are functional units involved in glucose homeostasis. The multicellular system comprises three main cell types; β and α cells reciprocally decrease and increase blood glucose by producing insulin and glucagon pulses, while the role of δ cells is less clear. Although their spatial organization and the paracrine/autocrine interactions between them have been extensively studied, the functional implications of the design principles are still lacking. In this study, we formulated a mathematical model that integrates the pulsatility of hormone secretion and the interactions and organization of islet cells and examined the effects of different cellular compositions and organizations in mouse and human islets. A common feature of both species was that islet cells produced synchronous hormone pulses under low- and high-glucose conditions, while they produced asynchronous hormone pulses under normal glucose conditions. However, the synchronous coordination of insulin and glucagon pulses at low glucose was more pronounced in human islets that had more α cells. When β cells were selectively removed to mimic diabetic conditions, the anti-synchronicity of insulin and glucagon pulses was deteriorated at high glucose, but it could be partially recovered when the re-aggregation of remaining cells was considered. Finally, the third cell type, δ cells, which introduced additional complexity in the multicellular system, prevented the excessive synchronization of hormone pulses. Our computational study suggests that controllable synchronization is a design principle of pancreatic islets.

Data availability

Islet structure data are from our previous study (PLoS ONE, 9:e110384, 2014). All other relevant data are within the paper and its Supporting Information files.

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journal.pone.0152446.pdf

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Additional details

Identifiers

DOI
10.1371/journal.pone.0152446
Other
oai:uchicago.tind.io:7335

Funding

Ministry of Science, ICT & Future Planning
2013R1A1A1006655
Max Planck Society
Korea Ministry of Education, Science and Technology
Gyeongsangbuk-Do
Pohang City
Unknown funder
DK-020595
Unknown funder
DK-072473
Unknown funder
AG-042151
Kovler Family Foundation

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Medicine