Emil Kostovski, Elena Frigato, Mladen Savikj, Anders Dahm, Per Morten Sandset, Marie-Christine Mowinckel, Grethe Skretting, Bjarne Østerud, Cristiano Bertolucci, Per Ole Iversen
Journal: Spinal cord 2019;56(11):1076-1083
PMID: 29985456
STUDY DESIGN
Crossover double blind, randomized placebo-controlled trial.
OBJECTIVES
Circadian oscillators are located both in the brain and in peripheral organs. Melatonin, the main brain-derived hormone governing circadian variations, is highly associated with daylight patterns. However, in subjects with tetraplegia the melatonin levels are blunted. Here we studied peripheral oscillators in peripheral blood mononuclear cells (PBMCs) in males with tetraplegia by examining how exogenous melatonin may influence the expression of clock gene mRNAs.
SETTING
Sunnaas Rehabilitation Hospital, Nesoddtangen, Norway.
METHODS
Six males with tetraplegia received 2 mg of melatonin or placebo 4 days before the study period. We also included six able-bodied men sleeping or kept awake during the night. Plasma samples were collected four times during a 24-h period. The mRNA expression levels of the clock genes PER1, PER2, BMAL1, and REV-ERBα were quantified in PBMCs using quantitative RT-PCR.
RESULTS
The mRNA expression levels of PER-1 and -2 and REV-ERBα were increased at 04:00 h compared with the able-bodied controls (p < 0.05). Melatonin supplementation changed mRNA peak-time toward the time of supplementation.
CONCLUSIONS
Several peripheral clock genes displayed distorted expression levels in tetraplegia. Supplementation with melatonin changed the mRNA expression levels of these genes toward those observed among able-bodied.
SPONSORSHIP
Financial support was provided from the Throne Holst Foundation, Sunnaas Rehabilitation hospital and the University of Ferrara (FAR2016).
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