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Acute and 2-week exposure to prednisolone impair different aspects of beta-cell function in healthy men
Daniël H van Raalte1, Valentina Nofrate, Mathijs C Bunck
1Endocrinology Section, Department of Internal Medicine, Diabetes Centre, VU University Medical Centre, De Boelelaan 1117, PO Box 7057, 1007 MB Amsterdam, The Netherlands. d.vanraalte@vumc.nl
Objective:
Glucocorticoids (GCs), such as prednisolone, are associated with adverse metabolic effects, including glucose intolerance and diabetes. In contrast to the well known GC-induced insulin resistance, the effects of GCs on beta-cell function are less well established. We assessed the acute and short-term effects of prednisolone treatment on beta-cell function in healthy men.
Research Design And Methods:
A randomised, double-blind, placebo-controlled trial consisting of two protocols was conducted. In protocol 1 (n=6), placebo and a single dose of 75 mg of prednisolone were administered. In protocol 2 (n=23), participants received 30 mg of prednisolone daily or placebo for 15 days. Both empirical and model-based parameters of beta-cell function were calculated from glucose, insulin and C-peptide concentrations obtained during standardised meal tests before and during prednisolone treatment (protocols 1 and 2), and 1 day after cessation of treatment (protocol 2).
Results:
Seventy-five milligrams of prednisolone acutely increased the area under the postprandial glucose curve (AUC(gluc); P=0.005), and inhibited several parameters of beta-cell function, including AUC(c-pep)/AUC(gluc) ratio (P=0.004), insulinogenic index (P=0.007), glucose sensitivity (P=0.02) and potentiation factor ratio (PFR; P=0.04). A 15-day treatment with prednisolone increased AUC(gluc) (P<0.001), despite augmented C-peptide secretion (P=0.05). beta-cell function parameters were impaired, including the fasting insulin secretory tone (P=0.02) and PFR (P=0.007).
Conclusions:
Acute and short-term exposure to prednisolone impairs different aspects of beta-cell function, which contribute to its diabetogenic effects.
Insights
Prednisolone, a glucocorticoid, impairs beta-cell function acutely and short-term. This study in healthy men reveals how prednisolone affects glucose metabolism and insulin secretion, contributing to its diabetogenic effects.
Area of Science:
- Endocrinology
- Metabolic Research
- Pharmacology
Background:
- Glucocorticoids (GCs) like prednisolone are linked to metabolic issues, including glucose intolerance and diabetes.
- While GC-induced insulin resistance is known, their impact on beta-cell function requires further elucidation.
Purpose of the Study:
- To investigate the acute and short-term effects of prednisolone on beta-cell function in healthy men.
Main Methods:
- A randomized, double-blind, placebo-controlled trial with two protocols.
- Protocol 1: Single 75 mg prednisolone dose. Protocol 2: 30 mg daily for 15 days.
- Beta-cell function parameters were assessed using meal tolerance tests and analyzing glucose, insulin, and C-peptide levels.
Main Results:
- Acute prednisolone administration elevated postprandial glucose and impaired beta-cell function parameters (e.g., insulinogenic index, glucose sensitivity).
- Fifteen-day prednisolone treatment increased postprandial glucose despite higher C-peptide secretion, with impaired fasting insulin secretory tone and potentiation factor ratio (PFR).
Conclusions:
- Both acute and short-term prednisolone exposure negatively impact various aspects of beta-cell function.
- These impairments contribute to the diabetogenic potential of prednisolone.
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