HIF-1α inhibitor PX-478 preserves pancreatic β cell function in diabetes

Author:

Ilegems Erwin1ORCID,Bryzgalova Galyna1ORCID,Correia Jorge2ORCID,Yesildag Burcak3ORCID,Berra Edurne4ORCID,Ruas Jorge L.2ORCID,Pereira Teresa S.12ORCID,Berggren Per-Olof1567ORCID

Affiliation:

1. The Rolf Luft Research Center for Diabetes and Endocrinology, Karolinska Institutet, SE-171 76 Stockholm, Sweden.

2. Department of Physiology and Pharmacology, Molecular and Cellular Exercise Physiology, Karolinska Institutet, SE-171 77 Stockholm, Sweden.

3. InSphero AG, Wagistrasse 27a, 8952 Schlieren, Switzerland.

4. Centro de Investigación Cooperativa en Biociencias CIC bioGUNE, 48160 Derio, Spain.

5. Diabetes Research Institute, Miller School of Medicine, University of Miami, Miami, FL 33136, USA.

6. Lee Kong Chian School of Medicine, Nanyang Technological University, Novena Campus, 308232 Singapore, Singapore.

7. School of Biomedical Sciences, Ulster University, BT52 1SA Coleraine, Northern Ireland, UK.

Abstract

During progression of type 2 diabetes, pancreatic β cells are subjected to sustained metabolic overload. We postulated that this state mediates a hypoxic phenotype driven by hypoxia-inducible factor–1α (HIF-1α) and that treatment with the HIF-1α inhibitor PX-478 would improve β cell function. Our studies showed that the HIF-1α protein was present in pancreatic β cells of diabetic mouse models. In mouse islets with high glucose metabolism, the emergence of intracellular Ca2+oscillations at low glucose concentration and the abnormally high basal release of insulin were suppressed by treatment with the HIF-1α inhibitor PX-478, indicating improvement of β cell function. Treatment of db/db mice with PX-478 prevented the rise of glycemia and diabetes progression by maintenance of elevated plasma insulin concentration. In streptozotocin-induced diabetic mice, PX-478 improved the recovery of glucose homeostasis. Islets isolated from these mice showed hallmarks of improved β cell function including elevation of insulin content, increased expression of genes involved in β cell function and maturity, inhibition of dedifferentiation markers, and formation of mature insulin granules. In response to PX-478 treatment, human islet organoids chronically exposed to high glucose presented improved stimulation index of glucose-induced insulin secretion. These results suggest that the HIF-1α inhibitor PX-478 has the potential to act as an antidiabetic therapeutic agent that preserves β cell function under metabolic overload.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine

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