University Hospital Basel
Basel, Canton of Basel-City, 4031, Switzerland
NCT Number: NCT04659915
Supraphysiological doses of glucocorticoids (GCs) are widely prescribed as immunosuppressants and metabolic side effects such as obesity and diabetes are extremely common. Efforts to investigate and prevent these side effects are lacking. The antidiabetic drug metformin was shown in previous studies to prevent deterioration of glucose homeostasis during GC therapy in patients. However, mechanisms of metformin counteracting GC-induced side effects remain poorly understood.
In a randomized, placebo-controlled, cross-over study, 18 healthy volunteers will receive a 7-day course of prednisone with metformin or placebo. Established methods will be used to assess systemic changes in energy homeostasis and novel techniques such as metabolomics will identify underlying pathways. This will advance the understanding of energy homeostasis during GC excess, may prevent thousands of patients from GC-induced side effects and also offers a model for targeting disrupted endogenous GCs secretion.
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Notify Me18 year–40 year
Male
Interventional
Phase 4
Basel, Canton of Basel-City, 4031, Switzerland
Obesity is one of the most serious health problems in the 21st century (1). Currently, more than 700 million people world-wide are obese and face an increased risk of morbidity and a reduced life-expectancy of up to 10 years (1, 2). High energy food and a sedentary lifestyle are driving the current obesity pandemic (3). Sleep deprivation and psychological stress also have been identified as contributing factors (4). Many of these factors activate the hypothalamic-pituitary-adrenal (HPA) axis, the key regulatory pathway of energy homeostasis. Activation of the HPA-axis leads to secretion of glucocorticoids (GCs) from the adrenal glands. GCs control energy homeostasis by mobilizing and redistributing energy substrates (5). In an evolutionary context, GCs are particularly important during periods of stress, especially when food is scarce. In today's environment, where food is abundantly available, GCs potentially can become deleterious by severely disrupting energy homeostasis. Therefore, the GC pathway has gained interest as a potential treatment target for the metabolic syndrome.
Next to their essential role in energy homeostasis, glucocorticoids are the most commonly prescribed immunosuppressant drugs. GCs are used for acute as well as chronic conditions in virtually all medical disciplines (6). It is well known that patients on GC treatment are at high risk for developing numerous side effects. Next to dyslipidaemia, arterial hypertension and cardiovascular disease, up to 80% of patients experience weight gain, while around 40% develop diabetes (7). Currently, no therapies exist to prevent any of these side effects. The only available strategy to prevent GC-induced side effects is to restrain GC use.
The objective of this project is to test in a clinical study in humans whether metformin can counteract the deleterious metabolic effects developed after a short-term glucocorticoid treatment. The primary objective is to test how metformin counteracts metabolic side effects of GCs compared to placebo. Secondary objectives are to detect underlying pathways in blood (metabolomics), adipose tissue (gene expression analysis) and mitochondria (Cytosensor) with metformin in combination with prednisone compared to placebo and prednisone.
This is a double-blind, randomized, placebo-controlled cross-over study. After screening, subjects will be randomized to two crossover 7-day study periods with a washout period of 28 days:
A) Participants will receive prednisone 30 mg/d p.o. and metformin (starting with a dose of 500 mg/d and increasing the dose by 500 mg every other day until 2000 mg/d are achieved).
B) Participants will receive prednisone 30 mg/d p.o. and placebo p.o. (starting with a dose of 500 mg/d and increasing the dose by 500 mg every other day until 2000 mg/d are achieved).
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
During one phase of the study: Metformin 500mg Day 1 1-0-0 Day 2 1-0-0 Day 3 1-0-1 Day 4 1-0-1 Day 5 2-0-1 Day 6 2-0-1 Day 7 4-0-0
In combination with prednisone 20mg: day 1 to day 7 1.5-0-0.
During another phase of the study: identical looking placebo pills starting day 1 500mg 1-0-0, day 2 500mg 1-0-0, day 3 500mg 1-0-1, day 4 500mg 1-0-1, day 5 500mg 2-0-1. day 6 2-0-1, day 7 4-0-0. In combination with prednisone 20mg: day 1 to day 7 1.5-0-0.
Time frame: Two 1-week intervention periods
Change in insulin sensitivity (HOMA-Index) assessed with a mixed meal tolerance test.
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Heart rate variability analysis
Time frame: Two 1-week intervention periods
Assessment of blood pressure with a standard blood pressure monitor.
Time frame: Two 1-week intervention periods
Measurement of weight with a standard scale
Time frame: Two 1-week intervention periods
Basal metabolic rate measured with indirect calorimetry
Time frame: Two 1-week intervention periods
Respiratory quotient assessed with indirect calorimetry
Time frame: Two 1-week intervention periods
Blood sample
Time frame: Two 1-week intervention periods
Metabolomics will be performed in blood plasma
Time frame: Two 1-week intervention periods
Adipose tissue biobsy
Eleonora Seelig
Other
Counteracting Deleterious Metabolic Glucocorticoid Effects With Metformin - A Double-blind, Randomized, Placebo-controlled, Cross-over Study
Acronym: Gluco-Met
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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