학술논문

Characterization of pancreatic NMDA receptors as possible drug targets for diabetes treatment
Document Type
Report
Source
Nature Medicine. April 1, 2015, p363, 14 p.
Subject
Medical research
Medicine, Experimental
Methyl aspartate -- Research
Diabetes therapy -- Research
Diabetes -- Drug therapy
Drug targeting -- Research
Type 2 diabetes -- Research
Biological sciences
Health
Language
English
ISSN
1078-8956
Abstract
In the nervous system, NMDA receptors (NMDARs) participate in neurotransmission and modulate the viability of neurons. In contrast, little is known about the role of NMDARs in pancreatic islets and the insulin-secreting beta cells whose functional impairment contributes to diabetes mellitus. Here we found that inhibition of NMDARs in mouse and human islets enhanced their glucose-stimulated insulin secretion (GSIS) and survival of islet cells. Further, NMDAR inhibition prolonged the amount of time that glucose-stimulated beta cells spent in a depolarized state with high cytosolic [Ca.sup.2+] concentrations. We also noticed that, in vivo, the NMDAR antagonist dextromethorphan (DXM) enhanced glucose tolerance in mice, and that in vitro dextrorphan, the main metabolite of DXM, amplified the stimulatory effect of exendin-4 on GSIS. In a mouse model of type 2 diabetes mellitus (T2DM), long-term treatment with DXM improved islet insulin content, islet cell mass and blood glucose control. Further, in a small clinical trial we found that individuals with T2DM treated with DXM showed enhanced serum insulin concentrations and glucose tolerance. Our data highlight the possibility that antagonists of NMDARs may provide a useful adjunct treatment for diabetes.
Type 2 diabetes mellitus (T2DM) is the most common metabolic disease worldwide, affecting more than 350 million people, and both its incidence and prevalence have been increasing globally (1). Peripheral [...]