English

The effects of beta-cell mass and function, intercellular coupling, and islet synchrony on $\textrm{Ca}^{2+}$ dynamics

Biological Physics 2021-05-04 v2 Soft Condensed Matter Cell Behavior

Abstract

Type 2 diabetes (T2D) is a challenging metabolic disorder characterized by a substantial loss of β\beta-cell mass and alteration of β\beta-cell function in the islets of Langerhans, disrupting insulin secretion and glucose homeostasis. The mechanisms for deficiency in β\beta-cell mass and function during the hyperglycemia development and T2D pathogenesis are complex. To study the relative contribution of β\beta-cell mass to β\beta-cell function in T2D, we make use of a comprehensive electrophysiological model of human β\beta-cell clusters. We find that defect in β\beta-cell mass causes a functional decline in single β\beta-cell, impairment in intra-islet synchrony, and changes in the form of oscillatory patterns of membrane potential and intracellular Ca2+\textrm{Ca}^{2+} concentration, which can lead to changes in insulin secretion dynamics and in insulin levels. The model demonstrates a good correspondence between suppression of synchronizing electrical activity and published experimental measurements. We then compare the role of gap junction-mediated electrical coupling with both β\beta-cell synchronization and metabolic coupling in the behavior of Ca2+\textrm{Ca}^{2+} concentration dynamics within human islets. Our results indicate that inter-β\beta-cellular electrical coupling depicts a more important factor in shaping the physiological regulation of islet function and in human T2D. We further predict that varying the whole-cell conductance of delayed rectifier K+\textrm{K}^{+} channels modifies oscillatory activity patterns of β\beta-cell population lacking intercellular coupling, which significantly affect Ca2+\textrm{Ca}^{2+} concentration and insulin secretion.

Cite

@article{arxiv.2012.10699,
  title  = {The effects of beta-cell mass and function, intercellular coupling, and islet synchrony on $\textrm{Ca}^{2+}$ dynamics},
  author = {Maryam Saadati and Yousef Jamali},
  journal= {arXiv preprint arXiv:2012.10699},
  year   = {2021}
}
R2 v1 2026-06-23T21:05:51.448Z