Modelling of dysregulated glucagon secretion in type 2 diabetes by considering mitochondrial alterations in pancreatic α-cells

Author:

Grubelnik Vladimir1,Markovič Rene12,Lipovšek Saška2345,Leitinger Gerd5,Gosak Marko23,Dolenšek Jurij23,Valladolid-Acebes Ismael6,Berggren Per-Olof6,Stožer Andraž3,Perc Matjaž278,Marhl Marko239

Affiliation:

1. Faculty of Electrical Engineering and Computer Science, University of Maribor, 2000 Maribor, Slovenia

2. Faculty of Natural Sciences and Mathematics, University of Maribor, 2000 Maribor, Slovenia

3. Faculty of Medicine, University of Maribor, 2000 Maribor, Slovenia

4. Faculty of Chemistry and Chemical Engineering, University of Maribor, 2000 Maribor, Slovenia

5. Division of Cell Biology, Histology and Embryology, Gottfried Schatz Research Center for Cell Signaling, Metabolism and Aging, Medical University of Graz, Neue Stiftingtalstrasse 6, 8010 Graz, Austria

6. The Rolf Luft Research Center for Diabetes and Endocrinology, Karolinska Institutet, Karolinska University Hospital L1, 171 76 Stockholm, Sweden

7. Department of Medical Research, China Medical University Hospital, China Medical University, Taichung, Taiwan

8. Complexity Science Hub Vienna, 1080 Vienna, Austria

9. Faculty of Education, University of Maribor, 2000 Maribor, Slovenia

Abstract

Type 2 diabetes mellitus (T2DM) has been associated with insulin resistance and the failure of β-cells to produce and secrete enough insulin as the disease progresses. However, clinical treatments based solely on insulin secretion and action have had limited success. The focus is therefore shifting towards α-cells, in particular to the dysregulated secretion of glucagon. Our qualitative electron-microscopy-based observations gave an indication that mitochondria in α-cells are altered in Western-diet-induced T2DM. In particular, α-cells extracted from mouse pancreatic tissue showed a lower density of mitochondria, a less expressed matrix and a lower number of cristae. These deformities in mitochondrial ultrastructure imply a decreased efficiency in mitochondrial ATP production, which prompted us to theoretically explore and clarify one of the most challenging problems associated with T2DM, namely the lack of glucagon secretion in hypoglycaemia and its oversecretion at high blood glucose concentrations. To this purpose, we constructed a novel computational model that links α-cell metabolism with their electrical activity and glucagon secretion. Our results show that defective mitochondrial metabolism in α-cells can account for dysregulated glucagon secretion in T2DM, thus improving our understanding of T2DM pathophysiology and indicating possibilities for new clinical treatments.

Publisher

The Royal Society

Subject

Multidisciplinary

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